955 results on '"WANG, DAOWEN"'
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202. Elevated Plasma Homocysteine Was Associated With Hemorrhagic and Ischemic Stroke, but Methylenetetrahydrofolate Reductase Gene C677T Polymorphism Was a Risk Factor for Thrombotic Stroke: A Multicenter Case-Control Study in China
- Author
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Li, Zhaohui, Sun, Li, Zhang, Hongye, Liao, Yuhua, Wang, Daowen, Zhao, Bingrang, Zhu, Zhiming, Zhao, Jizong, Ma, Aiqun, Han, Yu, Wang, Yibo, Shi, Yi, Ye, Jue, and Hui, Rutai
- Published
- 2003
- Full Text
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203. Pentanucleotide TTTTA Repeat Polymorphism of Apolipoprotein(a) Gene and Plasma Lipoprotein(a) Are Associated With Ischemic and Hemorrhagic Stroke in Chinese: A Multicenter Case-Control Study in China
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Sun, Li, Li, Zhaohui, Zhang, Hongye, Ma, Aiqun, Liao, Yuhua, Wang, Daowen, Zhao, Bingrang, Zhu, Zhiming, Zhao, Jizong, Zhang, Zhen, Wang, Wei, and Hui, Rutai
- Published
- 2003
- Full Text
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204. Long-term cardiac remodeling associated with heart failure following left-ventricular valve replacement surgery: A retrospective study.
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Mengyuan Chen, Xin Yao, Daowen Wang, Chenze Li, Fei Ma, Rui Li, Hong Wang, Sheng Wei, Qiang Zhou, Chen, Mengyuan, Yao, Xin, Wang, Daowen, Li, Chenze, Ma, Fei, Li, Rui, Wang, Hong, Wei, Sheng, and Zhou, Qiang
- Published
- 2021
- Full Text
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205. Outcomes in Newly Diagnosed Atrial Fibrillation and History of Acute Coronary Syndromes: Insights from GARFIELD-AF
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Butler, Amy, Elmersson, Micael, Egilsson, Arnor, Borjesson, Ulf, Svard, Gunnar, Liu, Bo, Lindh, Anders, Olsson, Lars-Bertil, Gustaysson, Mikael, Andersson, Lars, Benson, Lars, Bothin, Claes, Hajimirsadeghi, Ali, Martinsson, Bjorn, Ericsson, Marianne, Ohlsson, Ake, Lindvall, Hakan, Svensson, Peter, Thorne, Katarina, Handel, Hans, Platonov, Pyotr, Bernsten, Fredrik, Timberg, Ingar, Crisby, Milita, Karlsson, Jan-Erik, Andersson, Agneta, Malmqvist, Lennart, Engdahl, Johan, Thulin, Jorgen, Hot-Bjelak, Aida, Jensen, Steen, Debrunner, Johann, Beer, Juerg H., Shah, Dipen, Rudyk, Iurii, Tseluyko, Vira, Karpenko, Oleksandr, Zhurba, Svitlana, Kraiz, Igor, Parkhomenko, Oleksandr, Kupnovytska, Iryna, Seredyuk, Nestor, Mostovoy, Yuriy, Ushakov, Oleksiy, Koval, Olena, Kovalskiy, Igor, Svyshchenko, Yevgeniya, Sychov, Oleg, Stanislavchuk, Mykola, Tykhonova, Susanna, Fushtey, Ivan, Murdoch, Will, Chauhan, Naresh, Goodwin, Daryl, Lumley, Louise, Patel, Ramila, Saunders, Philip, Wong, Bennett, Patel, Niranjan, Jhittay, P., Ross, Andrew, Kainth, M. S., Ladha, Karim, Douglas, Kevin, Pickavance, Gill, McDonnell, Joanna, Handscombe, Laura, Gooding, Trevor, Wagner, Helga, Bradshaw, Colin, Bromham, Catherine, Jones, Kevin, Suryani, Shoeb, Coates, Richard, Sarai, Bhupinder, Willcock, W., Sircar, S., Cairns, John, Gilliand, A., Bilas, Roman, Strieder, E., Hutchinson, Peter, Wakeman, Anne, Stokes, Michael, Kirby, Graham, Vishwanathan, Bhaskhar, Vormann, Reinhold, Mueller, Thomas, Mayer, Peter, Horstmeier, Uwe, Eissing, Volker, Hey, Heinz, Leuchtgens, Heinz, Lilienweiss, Volker, Mueller, Heiner, Schubert, Christian, Lauer, Hellmann, Buchner, Thomas, Brauer, Gunter, Kamin, Susanne, Mueller, Karsten, Baumbach, Sylvia, Abdel-Qader, Muwafeg, Ebert, Hans-Holger, Schwencke, Carsten, Bernhardt, Peter, Karolyi, Laszlo, Sievers, Britta, Haverkamp, Wilhelm, Roehnisch, Jens-Uwe, Vertes, Andras, Szantai, Gabor, Menke, Holger, Matoltsy, Andras, Kanakaridisz, Nikosz, Boda, Zoltan, Kis, Erno, Gaszner, Balazs, Juhasz, Ferenc, Kamogawa, Yasuyuki, Fournier, Pierre-Yves, Muller, Jean-Joseph, Marquand, Andre, Delarche, Nicolas, Bantwal, Ganapathi, Faes, Dirk, Verstraete, Stefan, Dominguez, Helena, Topsakal, Ramazan, Centurion, Nestor, Alfredo Sinisi, Victor, Minc, Piotr, Nagy, Andras, Bilo, Grzegorz, Bongiorni, Maria Grazia, Bird, Nigel, Paul, Carolyn, Wadeson, Paul, Hargreaves, Nick, Kostenko, Victor, Tercedor Sanchez, Luis, Tranche Iparraguirre, Salvador, Jimenez Gonzalez, Mercedes, Herreros Melenchon, Juan, Stalby, Per, Yagensky, Andriy, Cameron, Alex, Jacobs, Polly, Juhasz, Gizella, Kancz, Sandor, Laszlo, Zoltan, May, Zsolt, Astridge, Penny, Loghdey, Rehana, Quick, Annette, Yang, Ping, Chen, Yingmin, He, Shenghu, Wang, Yong, Fu, Guosheng, Li, Xin, Wu, Tongguo, Cheng, Xiaoshu, Yan, Xiaowei, Zhao, Ruiping, Chen, Moshui, Xiong, Longgen, Chen, Ping, Jiao, Yang, Guo, Ying, Xue, Li, Yang, Zhiming, Jadhavm, Praveen, Merkely, Bela, Noon, Ebrahim, Habon, Tamas, Polgar, Peter, Szalai, Gabriella, Vangel, Sandor, Sarma, Raghava, Kulkarni, Govind, Engelthaler, Gabriella, Ferenczi, Judit, Chandwani, Prakash, Pothiwala, Rasesh Atulbhai, Purayil, Mohanan Padinhare, Chawla, Kamaldeep, Verheugt, Freek W. A., Ambrosio, Giuseppe, Atar, Dan, Bassand, Jean-Pierre, Costabel, Juan Pablo, Goldhaber, Samuel Z., Goto, Shinya, Egyutt, Mihaly, Martini, Giuliana, Cristina, Leone Maria, Tirafern, Eros, Santoro, Rita, Testa, Sophie, Di Minno, Giovanni, Moia, Marco, Caimi, Teresa Maria, Tessitori, Maria, Cappelli, Roberto, Accogli, Michele, Mariani, Antonio, Feola, Mauro, Raisaro, Arturo, Fattore, Luciano, Mauric, Andrea, Germini, Fabrizio, Tedeschi, Luca, Settimi, Maria, Nicoli, Sergio, Ricciarini, Paolo, Argena, Antonio, Ronchini, Paolo, Bulla, Claudio, Tradati, Filippo, Volpe, Massimo, Avino, Maria D., Seven, Silva, Capucci, Alessandro, Lodigiani, Corrado, Salomone, Enrico, Serviddio, Gaetano, Tondo, Claudio, Golino, Paolo, Mazzone, Carmine, Iacopino, Saverio, Ruiter, J. H., Lucassen, Andreas, Adriaansen, Henk, Bongaerts, Maarten, Pieterse, Mathijs, van Guldener, Coen, Herrman, Johannes, Nierop, S. H. K. P. R., Hoogslag, Pieter, Hermans, Walter, Groenemeijer, B. 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Okuyama, Masaki, Wakiyama, Tetsushi, Kato, Tomoko, Sasagawa, Yasuo, Tana, Takeshi, Tumelero, Rogerio Tadeu, Maia, Lilia, de Almeida, Roberto Simoes, Carmo Borges, Ney Carter, Gomes Ferreira, Luis Gustavo, Stockins Fernandez, Benjamin Aleck Joseh, Montecinos, Humberto, Lanas, Fernando, Larico Gomez, Martin, Astudillo, Carlos, Conejeros, Carlos, Marin Cuevas, Patricio, Forero, Alejandro, Bugueno Gutierrez, Claudio, Aguilar, Juan, Potthoff Cardenas, Sergio, Eggers, German, Houzvic, Cesar, Rey, Carlos, Arriagada, German, Charme Vilches, Gustavo, Illescas Diaz, Jesus Jaime, Leal Cantu, Raul, Ramos Zavala, Maria Guadalupe, Cabrera Jardines, Ricardo, Espinola Zavaleta, Nilda, Lopez Rosas, Enrique, Llamas Esperon, Guillermo Antonio, Pozas, Gerardo, Cardona Munoz, Ernesto, Her-nandez, Norberto Matadamas, Leyva Rendon, Adolfo, Garcia Hernandez, Norberto, de los Rios Ibarra, Manuel, Virgen Carrillo, Luis Ramon, Lopez Villezca, David, Hernandez Herrera, Carlos, Lopez Prieto, Juan Jose, Gaona Rodriguez, Rodolfo, Villeda Espinosa, Efrain, Flores Martinez, David, Velasco Barcena, Jose, Fierro Fierro, Omar, Rodriguez Briones, Ignacio, Leiva Pons, Jose Luis, Alvarez Lopez, Humberto, Olvera Ruiz, Rafael, Cantu Brito, Carlos Gerardo, Chuquiure Valenzuela, Eduardo Julian Jose Roberto, Reyes Sanchez, Roxana, Bazzoni Ruiz, Alberto Esteban, Lopez Ruiz, Oscar Martin, Arriaga Nava, Roberto, Morales Cerda, Jesus David, Fajardo Campos, Pedro, Benavides Gonzalez, Mario, Lenz, Kurt, Hagn, Claus, Foechterle, Johannes, Drexel, Heinz, Huber, Kurt, Podczeck-Schweighofer, Andrea, Winkler, Michael, Schneeweiss, Bruno, Gegenhuber, Alfons, Lang, Wilfried, Eichinger-Hasenauer, Sabine, Kaserer, Peter, Sykora, Josef, Rasch, Heribert, Strohmer, Bernhard, Capiau, Luc, Vervoort, Geert, Wollaert, Bart, Hollanders, Geert, Vercammen, Jan, Balthazar, Yohan, Delforge, Marc, Xhaet, Olivier, Striekwold, Harry, Thoeng, John, Hermans, Kurt, Mairesse, Georges, Anne, Wim, Blankoff, Ivan, Beutels, Michel, Vandergoten, Peter, Purnode, Philippe, Godart, Pascal, Boussy, Tim, Desfontaines, Philippe, Heyse, Alex, Voet, Joeri, De Wolf, Axel, Zidkova, Eva, Spacek, Rudolf, Machova, Vilma, Ludka, Ondrej, Olsr, Josef, Kotik, Lubos, Racz, Blazej, Ferkl, Richard, Hubac, Jan, Kotik, Ilja, Monhart, Zdenek, Burianova, Hana, Jerabek, Ondrej, Pisova, Jana, Petrova, Iveta, Dedek, Vratislav, Honkova, Michaela, Podrazil, Petr, Reichert, Petr, Spinar, Jindrich, Novak, Miroslav, Durdil, Vaclav, Plocova, Katarina, Lastuvka, Jiri, Nielsen, Jorn, Hayashi, Yoshihito, Hirota, Shinichi, Abe, Yukihiko, Saito, Yoshihiro, Uchiyama, Hirohide, Takeda, Hiroshi, Ono, Hiroshi, Tohyo, Shuichi, Hanazono, Naoto, Miyajima, Seiichi, Shimono, Hisashi, Aoyama, Takuma, Shozawa, Yasunobu, Niijima, Yawara, Murai, Osamu, Inaba, Hideko, Nomura, Katsumasa, Nozoe, Masatsugu, Suzuki, Kazuo, Furukawa, Toshiyuki, Shiraiwa, Toshihiko, Ito, Nobuhisa, Nagai, Shunichi, Sato, Kiyoharu, Nakahara, Shiro, Shimoyama, Yujin, Ohara, Naoko, Kozuka, Teruhiko, Okita, Hideaki, Endo, Masato, Goto, Tsutomu, Hirose, Makoto, Nagata, Emiko, Nakanishi, Noriyuki, Mori, Toshizumi, Seki, Shuichi, Okamoto, Katsuhiro, Moriai, Osamu, Emura, Yoko, Fukuda, Tsuyoshi, Date, Haruhiko, Kawakami, Shuichi, Nagai, Sho, Ueyama, Yuya, Fudo, Tetsuro, Imaizumi, Mitsuru, Ogawa, Takuo, Take, Shunsuke, Ikeda, Hideo, Nishioka, Hiroaki, Sakamoto, Norihiko, Ikeoka, Kiyomitsu, Wakaki, Nobuo, Abe, Masatake, Doiuchi, Junji, Inagaki, Koichi, Iseki, Atsushi, Yoshida, Tomohiro, Goda, Toshihiro, Katsuki, Tsukasa, Sato, Atsushi, Mori, Etsuo, Tsubokura, Toshio, Shudo, Hiroshi, Fujimoto, Shunichi, Katsuya, Tomohiro, Furukawa, Yoshiyuki, Hosokawa, Hiroshi, Narumi, Jun, Yamamoto, Kiichiro, Owari, Masaki, Inakura, Takuya, Anno, Takafumi, Shirakawa, Kazuyuki, Ching, Chi Keong, Foo, David, Wong, Kelvin, Yuyang, Tan, Park, Hui Nam, Kim, Woo-Shik, Lee, HyeYoung, Jang, Sung-Won, Kim, Dae Hyeok, Kim, Jun, Ryu, DongRyeol, Shim, Jaemin, Kim, Dae-Kyeong, Choi, Dong Ju, Oh, Yong Seog, Cho, Myeong-Chan, Kim, Hack-Lyoung, Jeon, Hui-Kyung, Shin, Dong-Gu, Park, Sang Weon, Park, Hoon Ki, Han, Sang-Jin, Sung, Jung Hoon, Park, Hyung-Wook, Nam, Gi-Byoung, On, Young Keun, Lim, Hong Euy, Kwak, JaeJin, Cha, Tae-Joon, Hong, Taek Jong, Park, Seong Hoon, Yoon, Jung Han, Kim, Nam-Ho, Kim, Kee-Sik, Jung, Byung Chun, Hwang, Gyo-Seung, Kim, Chong-Jin, Rungaramsin, Sakda, Katekangplu, Peerapat, Khunrong, Porames, Bunyapipat, Thanita, Wongcharoen, Wanwarang, Kaewsuwanna, Pinij, Siriwattana, Khanchai, Tiyanon, Waraporn, Pattanaprichakul, Supalerk, Likittanasombat, Khanchit, Cholsaringkarl, Doungrat, Boonyapisit, Warangkana, Cheewatanakornkul, Sirichai, Silaruks, Songkwan, Hutayanon, Pisit, Chawanadelert, Seksan, Chattranukulchai, Pairoj, Chatlaong, Boonsert, Santanakorn, Yingsak, Kanokphatcharakun, Khompiya, Mongkolwongroj, Piya, Jai-Aue, Sasivimon, Komson, Ongkarn, Altun, Armagan, Aydinlar, Ali, Ongen, Zeki, Acikel, Sadik, Sahin, Durmus Yildiray, Yilmaz, Ozcan, Pekdemir, Hasan, Demir, Mesut, Sucu, Murat, Sahiner, Levent, Ersanli, Murat, Okuyan, Ertugrul, Aras, Dursun, Rolandi, Florencia, Cesar Ingaramo, Adrian, Alberto Sambadaro, Gustavo, Fernandez Caputi, Vanina, Luciardi, Hector, Graciela Berman, Sofia, Dragotto, Pablo, Poli, Daniela, Quintavalla, Roberto, Cosmi, Franco, Fanelli, Raffaele, Oriana, Vincenzo, Reggio, Raffaele, Anti, Roberto S., Pancaldi, Leonardo, De Cristofaro, Raimondo, Guazzaloca, Giuliana, De Blasio, Angelo, Uriate, Jorge Salerno, Lillo, Flavia, Pogliani, Enrico Maria, Javier Kleiban, Andres, Ahuad Guerrero, Rodolfo Andres, Adalberto Di Paola, Leonel, Dario Dran, Ricardo, Egido, Javier, Jose Fosco, Matias, Rodolfo Cartasegna, Luis, Gomez Vilamajo, Oscar, Luis Ramos, Jose, Sassone, Sonia, Zapata, Gerardo, Conde, Diego, Giacomi, Guillermo, Alfredo Fernandez, Alberto, Alberto Berli, Mario, Ferroni, Fabian, Sobral Filho, Dario Celestino, Jaber, Jefferson, Armaganijan, Luciana Vidal, Frack Costantini, Costantino Roberto, Steffens, Andre, Sebba Barroso de Souzaem, Weimar Kunz, de Souza Neto, Joao David, Ribeiro, Jose Marcio, Teixeira, Marcelo Silveira, Rossi, Paulo, Pires, Leonardo, Moreira, Daniel, Moura Jorge, Jose Carlos, Lorga Filho, Adalberto Menezes, Bodanese, Luiz, Montera, Marcelo Westerlund, Del Carlo, Carlos Henrique, Saad, Jamil Abdalla, Alves Costa, Fernando Augusto, Lopes, Renato, de Aranjo, Gilson Roberto, Manenti, Euler Roberto, Kerr Saraiva, Jose Francisco, Ferreira Braga, Joao Carlos, Negri, Alexandre, Moncada, Carlos, Precoma, Dalton, Roquette, Fernando, Reis, Gilmar, Ramos Filho, Roberto Alvaro, Figueiredo, Estevao Lanna, Botelho, Roberto Vieira, Fontoura Tavares, Claudio Munhoz, Finimundi, Helius Carlos, Kochi, Adriano, Broilo Franca, Cesar Cassio, Alban, Fabio, Aranha Rosito, Guido Bernardo, de Moura Xavier Moraes Junior, Joao Batista, Husted, Steen, Hintze, Ulrik, Rasmussen, Soren, Sygehus, Nwstved, Bremmelgaard, Arne, Markenvard, John, Borger, Jan, Solgaard, Jorgen, Eriksen, Ebbe, Lokkegaard, Thomas, Bruun, Michael, Mertz, Jacob, Schou, Morten, Olsen, Michael, Viitanen, Carmela, Paganelli, Franck, Ohayon, Joel, Casassus, Frederic, Galinier, Michel, Gottwalles, Yannick, Loiselet, Philippe, Koujan, Mohamed Bassel, Destrac, Sylvain, Piot, Olivier, Cebron, Jean-Pierre, Guenoun, Maxime, Guedj-Meynier, Dominique, Lokesh, A. G., Zuber, Mathieu, Amarenco, Pierre, Ellie, Emmanuel, Kadouch, James, Huberman, Jean-Pierre, Lemaire, Nestor, Rodier, Gilles, Vandamme, Xavier, Sibon, Igor, Neau, Jean-Philippe, Mahagne, Marie Helene, Mielot, Antoine, Bonnefoy, Marc, Churet, Jean-Baptiste, Navarre, Vincent, Sellem, Frederic, Monniot, Gilles, Boyes, Jean-Paul, Doucet, Bernard, Martelet, Michel, Obadia, Desire, Crousillat, Bernard, Mouallem, Joseph, Bearez, Etienne, Brugnaux, Jean Philippe, Fedorowsky, Alain, Nazeyrollas, Pierre, Berneau, Jean-Baptiste, Chemin, Frederic, Schellong, Sebastien, Koeniger, Georg, Kopf, Andreas, Gerbaulet, Uwe, Kellner, Bernd-Thomas, Schaefer, Thomas, Purr, Jan, Eissfeller, Enno, Zauzig, Heinz-Dieter, Riegel, Peter, Axthelm, Christoph, Heinz, Gerd-Ulrich, Pustelnik, Andreas, Zutz, Stefan, Eder, Wolfgang, Rehling, Guenter, Glatzel, Dirk, Ludwig, Norbert, Sandow, Petra, Wiswedel, Henning, Wildenauer, Cosmas, Schoen, Steffen, Schwarz, Toralf, Babyesiza, Adyeri, Kropp, Maximilian, Zimny, Hans-Hermann, Kahl, Friedhelm, Caspar, Andreas, Omankowsky, Sabine, Laessig, Torsten, Hartmann, Hermann-Josef, Lehmann, Gunter, Bindig, Hans-Walter, Hergdt, Gunter, Reimer, Dietrich, Hauk, Joachim, Michel, Holger, Dres, Praxis, Erdle, Werner, Dorsch, Wilfried, Dshabrailov, Janna, Rapp, Karl-Albrecht, Epelde Gonzalo, Francisco, Almeida Fernandez, Carlos Alexandre, Martinez Navarro, Encarnacion, Montero Alia, Juan Jose, Barreda Gonzalez, Maria, Moleiro Oliva, Maria Angels, Iglesias Sanmartin, Jose, Rodriguez Alvarez, Maria del Mar, Ripoll Vera, Tomas, Jimenez Navarro, Manuel, Vazquez Caamano, Maria, Arcocha Tones, Maria Fe, Marcos Gomez, Gonzalo, Iniguez Romo, Andres, Prieto Diaz, Miguel Angel, Wirdby, Alexander, Linden, Jan, and Henriksson, Kerstin
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Male ,medicine.medical_specialty ,Acute coronary syndrome ,Vascular damage Radboud Institute for Health Sciences [Radboudumc 16] ,Hemorrhage ,030204 cardiovascular system & hematology ,antiplatelet therapy ,Coronary artery disease ,Anticoagulation ,03 medical and health sciences ,0302 clinical medicine ,Risk Factors ,Cause of Death ,Internal medicine ,Atrial Fibrillation ,medicine ,Humans ,030212 general & internal medicine ,Acute Coronary Syndrome ,bleeding ,mortality ,stroke ,Stroke ,Aged ,Proportional Hazards Models ,business.industry ,Hazard ratio ,Anticoagulants ,Atrial fibrillation ,General Medicine ,Prognosis ,medicine.disease ,Blood pressure ,Cardiovascular Diseases ,Heart failure ,Cardiology ,Female ,Liver function ,business ,Platelet Aggregation Inhibitors ,Follow-Up Studies - Abstract
Item does not contain fulltext BACKGROUND: Many patients with atrial fibrillation have concomitant coronary artery disease with or without acute coronary syndromes and are in need of additional antithrombotic therapy. There are few data on the long-term clinical outcome of atrial fibrillation patients with a history of acute coronary syndrome. This is a 2-year study of atrial fibrillation patients with or without a history of acute coronary syndromes. METHODS: Adults with newly diagnosed atrial fibrillation and >/=1 investigator-defined stroke risk factor were enrolled in GARFIELD-AF between March 2010 and September 2015. The association between prior acute coronary syndromes and long-term outcomes was determined using a Cox proportional hazards model, adjusting for baseline risk factors, oral anticoagulation (OAC) +/- antiplatelet (AP) therapy, and usual care. RESULTS: Of 39,679 patients, 10.5% had a history of acute coronary syndromes. At 2-year follow-up, patients with prior acute coronary syndromes had higher adjusted risks of stroke/systemic embolism (hazard ratio [HR] 1.39; 95% confidence interval [CI], 1.08-1.78), major bleeding (HR 1.30; 95% CI, 0.95 -1.79), all-cause mortality (HR 1.34; 95% CI, 1.21 -1.49), cardiovascular mortality (HR 1.85; 95% CI, 1.51-2.26), and new acute coronary syndromes (HR 3.42; 95% CI, 2.62-4.45). Comparing antithrombotic therapy in the acute coronary syndromes vs no acute coronary syndromes groups, most patients received OAC +/- AP: 60.8% vs 66.1%, but AP therapy was more likely in the acute coronary syndromes group (68.1% vs 32.9%), either alone (34.9% vs 20.8%) or with OAC (33.2% vs 12.1%). Overall, 17.8% in the acute coronary syndromes group received dual AP therapy with (5.3%) or without OAC (12.5%). Among patients with moderate/high risk for stroke/systemic embolism, fewer in the acute coronary syndromes group received OAC with or without AP therapy (Congestive heart failure, Hypertension, Age 75 years, Diabetes mellitus, prior Stroke, TIA, or thromboembolism, Vascular disease, Age 65-74 years, Sex category [CHA2DS2-VASc] 2: 52.1% vs 64.6%; CHA2DS2-VASc >/=3: 62.0% vs 70.7%), and the majority with a Hypertension (uncontrolled systolic blood pressure >160 mm Hg), Abnormal renal or liver function, previous Stroke, Bleeding history or predisposition, Labile international normalized ratios, Elderly, and concomitant Drugs or alcohol excess (HAS-BLED) score >/=3 were on AP therapy (83.8% vs 65.5%). CONCLUSIONS: In GARFIELD-AF, previous acute coronary syndromes are associated with worse 2-year outcomes and a greater likelihood of under-treatment with OAC, while two-thirds of patients receive AP therapy. Major bleeding was more common with previous acute coronary syndromes, even after adjusting for all risk factors.
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- 2019
206. Nuclear miR-665 aggravates heart failure via suppressing phosphatase and tensin homolog transcription
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Fan, Jiahui, primary, Zhang, Xudong, additional, Nie, Xiang, additional, Li, Huaping, additional, Yuan, Shuai, additional, Dai, Beibei, additional, Zhan, Jiabing, additional, Wen, Zheng, additional, Jiang, Jiangang, additional, Chen, Chen, additional, and Wang, Daowen, additional
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- 2019
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207. Delayed-onset adrenal hypoplasia congenita and hypogonadotropic hypogonadism caused by a novel mutation in DAX1
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Liu, Siyue, primary, Yan, Libin, additional, Zhou, Xinrong, additional, Chen, Chen, additional, Wang, Daowen, additional, and Yuan, Gang, additional
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- 2019
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208. Regulation of YAP by Mammalian Target of Rapamycin Complex 1 in Endothelial Cells Controls Blood Pressure Through COX-2/mPGES-1/PGE 2 Cascade
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Yao, Liu, primary, He, Jinlong, additional, Li, Bochuan, additional, Yan, Meng, additional, Wang, Hui, additional, Tan, Lu, additional, Liu, Mingming, additional, Lv, Xue, additional, Lv, Huizhen, additional, Zhang, Xu, additional, Chen, Chen, additional, Wang, Daowen, additional, Yu, Ying, additional, Huang, Yu, additional, Zhu, Yi, additional, and Ai, Ding, additional
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- 2019
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209. Development and characterization of marker‐free and transgene insertion site‐defined transgenic wheat with improved grain storability and fatty acid content
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Cao, Xuemin, primary, Dong, Zhenying, additional, Tian, Dong, additional, Dong, Lingli, additional, Qian, Weiqiang, additional, Liu, Jinxing, additional, Liu, Xin, additional, Qin, Huanju, additional, Zhai, Wenxue, additional, Gao, Caixia, additional, Zhang, Kunpu, additional, and Wang, Daowen, additional
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- 2019
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210. NPR1 Promotes Its Own and Target Gene Expression in Plant Defense by Recruiting CDK8
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Chen, Jian, primary, Mohan, Rajinikanth, additional, Zhang, Yuqiang, additional, Li, Min, additional, Chen, Huan, additional, Palmer, Ian Arthur, additional, Chang, Ming, additional, Qi, Guang, additional, Spoel, Steven H., additional, Mengiste, Tesfaye, additional, Wang, Daowen, additional, Liu, Fengquan, additional, and Fu, Zheng Qing, additional
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- 2019
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211. Aspirin reduced recurrent stroke risk in patients with lacunar stroke
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Kong, Tao, primary, Chen, Jingzhou, additional, Sun, Kai, additional, Zhang, Weili, additional, Wang, Jizheng, additional, Song, Lei, additional, Wang, Daowen, additional, and Hui, Rutai, additional
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- 2019
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212. Cytosine, but not adenine, base editors induce genome-wide off-target mutations in rice
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Jin, Shuai, primary, Zong, Yuan, additional, Gao, Qiang, additional, Zhu, Zixu, additional, Wang, Yanpeng, additional, Qin, Peng, additional, Liang, Chengzhi, additional, Wang, Daowen, additional, Qiu, Jin-Long, additional, Zhang, Feng, additional, and Gao, Caixia, additional
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- 2019
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213. Analysis on outcomes of facial paralysis complicated by middle ear cholesteatoma
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Li, Qiang, primary, Jia, Yanfei, additional, Feng, Qian, additional, Tang, Bo, additional, Luo, Xiaodong, additional, Xu, Peng, additional, Wang, Daowen, additional, and Zhang, Xuanfen, additional
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- 2019
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214. Mesenchymal stem cells as carriers and amplifiers in CRAd delivery to tumors
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Wei Junchen, Han Zhiqiang, Weng Yanjie, Li Kezhen, Cao Li, Wu Mingfu, Hu Wencheng, Wu Peng, Ma Quanfu, Xu Hongbin, You Lanying, Liao Shujie, Gao Qinglei, Fang Yong, Li Xiao, Chen Pingbo, Ji Teng, Xia Xi, Liu Ronghua, Wang Shixuan, Xu Gang, Wang Daowen, Zhou Jianfeng, and Ma Ding
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Mesenchymal Stem Cell ,Conditionally Replicative Adenovirus ,Cell Carrier ,Signal Transducer and Activator of Transcription 3 (Stat3) ,Breast cancer ,Neoplasms. Tumors. Oncology. Including cancer and carcinogens ,RC254-282 - Abstract
Abstract Background Mesenchymal stem cells (MSCs) have been considered to be the attractive vehicles for delivering therapeutic agents toward various tumor diseases. This study was to explore the distribution pattern, kinetic delivery of adenovirus, and therapeutic efficacy of the MSC loading of E1A mutant conditionally replicative adenovirus Adv-Stat3(-) which selectively replicated and expressed high levels of anti-sense Stat3 complementary DNA in breast cancer and melanoma cells. Methods We assessed the release ability of conditionally replicative adenovirus (CRAd) from MSC using crystal violet staining, TCID50 assay, and quantitative PCR. In vitro killing competence of MSCs carrying Adv-Stat3(-) toward breast cancer and melanoma was performed using co-culture system of transwell plates. We examined tumor tropism of MSC by Prussian blue staining and immunofluorescence. In vivo killing competence of MSCs carrying Adv-Stat3(-) toward breast tumor was analyzed by comparison of tumor volumes and survival periods. Results Adv-Stat3(-) amplified in MSCs and were released 4 days after infection. MSCs carrying Adv-Stat3(-) caused viral amplification, depletion of Stat3 and its downstream proteins, and led to significant apoptosis in breast cancer and melanoma cell lines. In vivo experiments confirmed the preferential localization of MSCs in the tumor periphery 24 hours after tail vein injection, and this localization was mainly detected in the tumor parenchyma after 72 hours. Intravenous injection of MSCs carrying Adv-Stat3(-) suppressed the Stat3 pathway, down-regulated Ki67 expression, and recruited CD11b-positive cells in the local tumor, inhibiting tumor growth and increasing the survival of tumor-bearing mice. Conclusions These results indicate that MSCs migrate to the tumor site in a time-dependent manner and could be an effective platform for the targeted delivery of CRAd and the amplification of tumor killing effects.
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- 2011
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215. Investigation of genetic diversity and population structure of common wheat cultivars in northern China using DArT markers
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Wang DaoWen, Sun JiaZhu, Guo XiaoLi, Yang WenLong, Liu DongCheng, Zhang LiYi, Sourdille Pierre, and Zhang AiMin
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Genetics ,QH426-470 - Abstract
Abstract Background In order to help establish heterotic groups of Chinese northern wheat cultivars (lines), Diversity arrays technology (DArT) markers were used to investigate the genetic diversity and population structure of Chinese common wheat (Triticum aestivum L.). Results In total, 1637 of 7000 DArT markers were polymorphic and scored with high confidence among a collection of 111 lines composed mostly of cultivars and breeding lines from northern China. The polymorphism information content (PIC) of DArT markers ranged from 0.03 to 0.50, with an average of 0.40, with P > 80 (reliable markers). With principal-coordinates analysis (PCoA) of DArT data either from the whole genome or from the B-genome alone, all lines fell into one of two major groups reflecting 1RS/1BL type (1RS/1BL and non-1RS/1BL). Evidence of geographic clustering of genotypes was also observed using DArT markers from the A genome. Cluster analysis based on the unweighted pair-group method with algorithmic mean suggested the existence of two subgroups within the non-1RS/1BL group and four subgroups within the 1RS/1BL group. Furthermore, analysis of molecular variance (AMOVA) revealed highly significant (P < 0.001) genetic variance within and among subgroups and among groups. Conclusion These results provide valuable information for selecting crossing parents and establishing heterotic groups in the Chinese wheat-breeding program.
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- 2011
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216. Pandemonium Breaks Out: Disruption of Salicylic Acid-Mediated Defense by Plant Pathogens
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Qi, Guang, primary, Chen, Jian, additional, Chang, Ming, additional, Chen, Huan, additional, Hall, Katherine, additional, Korin, John, additional, Liu, Fengquan, additional, Wang, Daowen, additional, and Fu, Zheng Qing, additional
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- 2018
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217. Molecular analysis of phosphomannomutase (PMM) genes reveals a unique PMM duplication event in diverse Triticeae species and the main PMM isozymes in bread wheat tissues
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Bai Shiwei, Wang Guanfeng, Li Shiming, Qian Weiqiang, Chen Jing, Hao Lifang, Liu Xin, Li Bin, Li Yiwen, Yu Chunmei, Ye Hua, Qin Huanju, Shen Qianhua, Chen Liangbiao, Zhang Aimin, and Wang Daowen
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Botany ,QK1-989 - Abstract
Abstract Background Phosphomannomutase (PMM) is an essential enzyme in eukaryotes. However, little is known about PMM gene and function in crop plants. Here, we report molecular evolutionary and biochemical analysis of PMM genes in bread wheat and related Triticeae species. Results Two sets of homoeologous PMM genes (TaPMM-1 and 2) were found in bread wheat, and two corresponding PMM genes were identified in the diploid progenitors of bread wheat and many other diploid Triticeae species. The duplication event yielding PMM-1 and 2 occurred before the radiation of diploid Triticeae genomes. The PMM gene family in wheat and relatives may evolve largely under purifying selection. Among the six TaPMM genes, the transcript levels of PMM-1 members were comparatively high and their recombinant proteins were all enzymatically active. However, PMM-2 homoeologs exhibited lower transcript levels, two of which were also inactive. TaPMM-A1, B1 and D1 were probably the main active isozymes in bread wheat tissues. The three isozymes differed from their counterparts in barley and Brachypodium distachyon in being more tolerant to elevated test temperatures. Conclusion Our work identified the genes encoding PMM isozymes in bread wheat and relatives, uncovered a unique PMM duplication event in diverse Triticeae species, and revealed the main active PMM isozymes in bread wheat tissues. The knowledge obtained here improves the understanding of PMM evolution in eukaryotic organisms, and may facilitate further investigations of PMM function in the temperature adaptability of bread wheat.
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- 2010
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218. Contrasting patterns in the spread of two seed-borne viruses in pea embryos
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Wang, Daowen and Maule, Andrew J.
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- 1997
219. Efficient expression and function of a receptor‐like kinase in wheat powdery mildew defence require an intron‐located MYB binding site.
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Xia, Tengfei, Yang, Yanping, Zheng, Hongyuan, Han, Xinyun, Jin, Huaibing, Xiong, Zijun, Qian, Weiqiang, Xia, Lanqi, Ji, Xiang, Li, Guangwei, Wang, Daowen, and Zhang, Kunpu
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POWDERY mildew diseases ,BINDING sites ,DURUM wheat ,WHEAT ,EMMER wheat ,TRANSGENIC plants - Abstract
Summary: The LRK10‐like receptor kinases (LRK10L‐RLKs) are ubiquitously present in higher plants, but knowledge of their expression and function is still limited. Here, we report expression and functional analysis of TtdLRK10L‐1, a typical LRK10L‐RLK in durum wheat (Triticum turgidum L. ssp. durum). The introns of TtdLRK10L‐1 contained multiple kinds of predicted cis‐elements. To investigate the potential effect of these cis‐elements on TtdLRK10L‐1 expression and function, two types of transgenic wheat lines were prepared, which expressed a GFP‐tagged TtdLRK10L‐1 protein (TtdLRK10L‐1:GFP) from the cDNA or genomic DNA (gDNA) sequence of TtdLRK10L‐1 under the native promoter. TtdLRK10L‐1:GFP expression was up‐regulated by the powdery mildew pathogen Blumeria graminis f. sp. tritici (Bgt) in both types of transgenic plants, with the scale of the elevation being much stronger in the gDNA lines. Both types of transgenic plants exhibited enhanced resistance to Bgt infection relative to wild type control. Notably, the Bgt defence activated in the gDNA lines was significantly stronger than that in the cDNA lines. Further analysis revealed that a putative MYB transcription factor binding site (MYB‐BS, CAGTTA) located in TtdLRK10L‐1 intron I was critical for the efficient expression and function of TtdLRK10L‐1 in Bgt defence. This MYB‐BS could also increase the activity of a superpromoter widely used in ectopic gene expression studies in plants. Together, our results deepen the understanding of the expression and functional characteristics of LRK10L‐RLKs. TtdLRK10L‐1 is likely useful for further dissecting the molecular processes underlying wheat defence against Bgt and for developing Bgt resistant wheat crops. [ABSTRACT FROM AUTHOR]
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- 2021
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220. The experience of treating patients with acute myocardial infarction under the COVID‐19 epidemic.
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Xiao, Zhichao, Xu, Chang, Wang, Daowen, and Zeng, Hesong
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- 2021
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221. Nuclear miR-665 aggravates heart failure via suppressing phosphatase and tensin homolog transcription.
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Fan, Jiahui, Zhang, Xudong, Nie, Xiang, Li, Huaping, Yuan, Shuai, Dai, Beibei, Zhan, Jiabing, Wen, Zheng, Jiang, Jiangang, Chen, Chen, and Wang, Daowen
- Abstract
Although numerous miRNAs have been discovered, their functions in the different subcellular organelles have remained obscure. In this study, we found that miR-665 was enriched in the nucleus of cardiomyocytes, and then investigated the underlying role of nuclear miR-665 in heart failure. RNA fluorescence in situ hybridization assays in human heart tissue sections and primary cardiomyocytes showed that miR-665 was localized in the nucleus of cardiomyocytes. Increased expression of nuclear miR-665 was observed not only in the cardiomyocytes isolated from the heart of mice treated in vivo by transverse aortic constriction (TAC), but also in phenylephrine (PE)-treated cultured cardiomyocytes in vitro. To further explore the role of miR-665 in heart failure, a type 9 recombinant adeno-associated virus (rAAV) system was employed to manipulate the expression of miR-665 in mice. Overexpression of miR-665 aggravated TAC-induced cardiac dysfunction, while down-expression of miR-665 showed opposite effects. Bioinformatic prediction and biological validation confirmed that the PTEN (phosphatase and tensin homolog) gene was one of the targets of miR-665 in the nucleus. Furthermore, restoring PTEN expression significantly eliminated the destructive effects of miR-665 over-expression in TAC-induced cardiac dysfunction. Our data showed that nuclear miR-665 aggravates heart failure via inhibiting PTEN expression, which provided a therapeutic approach for heart failure. [ABSTRACT FROM AUTHOR]
- Published
- 2020
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222. Development and characterization of marker‐free and transgene insertion site‐defined transgenic wheat with improved grain storability and fatty acid content.
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Cao, Xuemin, Dong, Zhenying, Tian, Dong, Dong, Lingli, Qian, Weiqiang, Liu, Jinxing, Liu, Xin, Qin, Huanju, Zhai, Wenxue, Gao, Caixia, Zhang, Kunpu, and Wang, Daowen
- Subjects
FATTY acids ,WHEAT seeds ,TRANSGENIC plants ,GRAIN ,LINOLENIC acids - Abstract
Summary: Development of marker‐free and transgene insertion site‐defined (MFTID) transgenic plants is essential for safe application of transgenic crops. However, MFTID plants have not been reported for wheat (Triticum aestivum). Here, we prepared a RNAi cassette for suppressing lipoxygenase (LOX) gene expression in wheat grains using a double right border T‐DNA vector. The resultant construct was introduced into wheat genome via Agrobacterium‐mediated transformation, with four homozygous marker‐free transgenic lines (namely GLRW‐1, ‐3, ‐5 and ‐8) developed. Aided by the newly published wheat genome sequence, the T‐DNA insertion sites in GLRW‐3 and GLRW‐8 were elucidated at base‐pair resolution. While the T‐DNA in GLRW‐3 inserted in an intergenic region, that of GLRW‐8 inactivated an endogenous gene, which was thus excluded from further analysis. Compared to wild ‐type (WT) control, GLRW‐1, ‐3 and ‐5 showed decreased LOX gene expression, lower LOX activity and less lipid peroxidation in the grains; they also exhibited significantly higher germination rates and better seedling growth after artificial ageing treatment. Interestingly, the three GLRW lines also had substantially increased contents of several fatty acids (e.g., linoleic acid and linolenic acid) in their grain and flour samples than WT control. Collectively, our data suggest that suppression of grain LOX activity can be employed to improve the storability and fatty acid content of wheat seeds and that the MFTID line GLRW‐3 is likely of commercial value. Our approach may also be useful for developing the MFTID transgenic lines of other crops with enhanced grain storability and fatty acid content. [ABSTRACT FROM AUTHOR]
- Published
- 2020
- Full Text
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223. Intratympanic injection of dexamethasone after failure of intravenous prednisolone in simultaneous bilateral sudden sensorineural hearing loss
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Tang, Bo, primary, Jia, Yanfei, additional, Shi, Zhe, additional, Shen, Yunjuan, additional, Li, Denghui, additional, Huang, Hailong, additional, Yang, Baohui, additional, Wang, Daowen, additional, and Feng, Qian, additional
- Published
- 2018
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224. A12354 Soluble epoxide hydrolase deficiency attenuates cardiac lipid accumulation via up-regulating AMPK-mTOR mediated autophagy
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Huang, Hui, primary, Zhang, Kun, additional, Wang, Lunyun, additional, Wang, Daowen, additional, Hammock, Bruce D., additional, and Wang, Jingfeng, additional
- Published
- 2018
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225. Reactions of Triticum urartu accessions to two races of the wheat yellow rust pathogen
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Xiao, Jibin, primary, Dong, Lingli, additional, Jin, Huaibing, additional, Zhang, Juncheng, additional, Zhang, Kunpu, additional, Liu, Na, additional, Han, Xinyun, additional, Zheng, Hongyuan, additional, Zheng, Wenming, additional, and Wang, Daowen, additional
- Published
- 2018
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226. A1046 MicroRNA-29b Ameliorates Hypertensive Renal Dysfunction via Suppression of the TGF-β-induced epithelial-mesenchymal transition and extracellular matrix synthesis
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Yang, Deye, primary, Chen, Zhe, additional, Jiao, Qibing, additional, Zhang, Yuanyuan, additional, Ke, Xiaoyong, additional, Lee, Kang, additional, Wang, Daowen, additional, Zhang, Xingwei, additional, Wang, Hongyu, additional, and Yang, Deye, additional
- Published
- 2018
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227. Research Hotspots Analysis of Vectorcardiography by PubMed
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Hou, Jinjie, primary, Li, Xiuxia, additional, Ning, Jingjing, additional, Gu, Guoxiao, additional, Li, Junli, additional, Li, Ruiyu, additional, Wang, Daowen, additional, Zeng, Hesong, additional, and Tang, Jiarong, additional
- Published
- 2018
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228. Profile and clinical implication of circular RNAs in human papillary thyroid carcinoma
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Ren, Huihui, primary, Liu, Zhelong, additional, Liu, Siyue, additional, Zhou, Xinrong, additional, Wang, Hong, additional, Xu, Jinchao, additional, Wang, Daowen, additional, and Yuan, Gang, additional
- Published
- 2018
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229. Analysis of theGli-D2locus identifies a genetic target for simultaneously improving the breadmaking and health-related traits of common wheat
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Li, Da, primary, Jin, Huaibing, additional, Zhang, Kunpu, additional, Wang, Zhaojun, additional, Wang, Faming, additional, Zhao, Yue, additional, Huo, Naxin, additional, Liu, Xin, additional, Gu, Yong Q., additional, Wang, Daowen, additional, and Dong, Lingli, additional
- Published
- 2018
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230. Gene Duplication and Evolution Dynamics in the Homeologous Regions Harboring Multiple Prolamin and Resistance Gene Families in Hexaploid Wheat
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Huo, Naxin, primary, Zhang, Shengli, additional, Zhu, Tingting, additional, Dong, Lingli, additional, Wang, Yi, additional, Mohr, Toni, additional, Hu, Tiezhu, additional, Liu, Zhiyong, additional, Dvorak, Jan, additional, Luo, Ming-Cheng, additional, Wang, Daowen, additional, Lee, Jong-Yeol, additional, Altenbach, Susan, additional, and Gu, Yong Q., additional
- Published
- 2018
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231. Genome sequence of the progenitor of wheat A subgenome Triticum urartu
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Ling, Hong-Qing, primary, Ma, Bin, additional, Shi, Xiaoli, additional, Liu, Hui, additional, Dong, Lingli, additional, Sun, Hua, additional, Cao, Yinghao, additional, Gao, Qiang, additional, Zheng, Shusong, additional, Li, Ye, additional, Yu, Ying, additional, Du, Huilong, additional, Qi, Ming, additional, Li, Yan, additional, Lu, Hongwei, additional, Yu, Hua, additional, Cui, Yan, additional, Wang, Ning, additional, Chen, Chunlin, additional, Wu, Huilan, additional, Zhao, Yan, additional, Zhang, Juncheng, additional, Li, Yiwen, additional, Zhou, Wenjuan, additional, Zhang, Bairu, additional, Hu, Weijuan, additional, van Eijk, Michiel J. T., additional, Tang, Jifeng, additional, Witsenboer, Hanneke M. A., additional, Zhao, Shancen, additional, Li, Zhensheng, additional, Zhang, Aimin, additional, Wang, Daowen, additional, and Liang, Chengzhi, additional
- Published
- 2018
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232. Analysis of the functions of TaGW2 homoeologs in wheat grain weight and protein content traits
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Zhang, Yi, primary, Li, Da, additional, Zhang, Dingbo, additional, Zhao, Xiaoge, additional, Cao, Xuemin, additional, Dong, Lingli, additional, Liu, Jinxing, additional, Chen, Kunling, additional, Zhang, Huawei, additional, Gao, Caixia, additional, and Wang, Daowen, additional
- Published
- 2018
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233. Molecular genetic and genomic analysis of wheat milling and end-use traits in China: Progress and perspectives
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Wang, Daowen, primary, Zhang, Kunpu, additional, Dong, Lingli, additional, Dong, Zhenying, additional, Li, Yiwen, additional, Hussain, Abrar, additional, and Zhai, Huijie, additional
- Published
- 2018
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234. Plasma metabolic profile reveals PGF2α protecting against non-proliferative diabetic retinopathy in patients with type 2 diabetes
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Peng, Liyuan, primary, Sun, Bei, additional, Liu, Mingming, additional, Huang, Jing, additional, Liu, Yajin, additional, Xie, Zipeng, additional, He, Jinlong, additional, Chen, Liming, additional, Wang, Daowen, additional, Zhu, Yi, additional, Zhang, Xu, additional, and Ai, Ding, additional
- Published
- 2018
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235. RETRACTED ARTICLE: Isolation and analysis of homoeologous genes encoding gibberellin 2-oxidase 3 isozymes in common wheat
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CHEN, QIUFANG, YA, HUIYUAN, LI, SHIMING, YANG, YANPING, QIN, GUANGYONG, AN, XUELI, WANG, DAOWEN, ZHANG, KUNPU, and JIAO, ZHEN
- Published
- 2012
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236. A high-quality genome assembly highlights rye genomic characteristics and agronomically important genes
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Li, Guangwei, Wang, Lijian, Yang, Jianping, He, Hang, Jin, Huaibing, Li, Xuming, Ren, Tianheng, Ren, Zhenglong, Li, Feng, Han, Xue, Zhao, Xiaoge, Dong, Lingli, Li, Yiwen, Song, Zhongping, Yan, Zehong, Zheng, Nannan, Shi, Cuilan, Wang, Zhaohui, Yang, Shuling, Xiong, Zijun, Zhang, Menglan, Sun, Guanghua, Zheng, Xu, Gou, Mingyue, Ji, Changmian, Du, Junkai, Zheng, Hongkun, Doležel, Jaroslav, Deng, Xing Wang, Stein, Nils, Yang, Qinghua, Zhang, Kunpu, and Wang, Daowen
- Abstract
Rye is a valuable food and forage crop, an important genetic resource for wheat and triticale improvement and an indispensable material for efficient comparative genomic studies in grasses. Here, we sequenced the genome of Weining rye, an elite Chinese rye variety. The assembled contigs (7.74 Gb) accounted for 98.47% of the estimated genome size (7.86 Gb), with 93.67% of the contigs (7.25 Gb) assigned to seven chromosomes. Repetitive elements constituted 90.31% of the assembled genome. Compared to previously sequenced Triticeae genomes, Daniela, Sumayaand Sumanaretrotransposons showed strong expansion in rye. Further analyses of the Weining assembly shed new light on genome-wide gene duplications and their impact on starch biosynthesis genes, physical organization of complex prolamin loci, gene expression features underlying early heading trait and putative domestication-associated chromosomal regions and loci in rye. This genome sequence promises to accelerate genomic and breeding studies in rye and related cereal crops.
- Published
- 2021
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237. A novel recognition-transmission-execution module in maize immunity.
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Wang, Xiuyu, Matthew, Ashline, Wang, Daowen, Zheng, Hongyuan, and Fu, Zhengqing
- Subjects
- *
CORN , *IMMUNITY - Published
- 2024
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238. Effects of acarbose on cardiovascular and diabetes outcomes in patients with coronary heart disease and impaired glucose tolerance (ACE): a randomised, double-blind, placebo-controlled trial
- Author
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Holman, Rury R, primary, Coleman, Ruth L, additional, Chan, Juliana C N, additional, Chiasson, Jean-Louis, additional, Feng, Huimei, additional, Ge, Junbo, additional, Gerstein, Hertzel C, additional, Gray, Richard, additional, Huo, Yong, additional, Lang, Zhihui, additional, McMurray, John J, additional, Rydén, Lars, additional, Schröder, Stefan, additional, Sun, Yihong, additional, Theodorakis, Michael J, additional, Tendera, Michal, additional, Tucker, Lynne, additional, Tuomilehto, Jaakko, additional, Wei, Yidong, additional, Yang, Wenying, additional, Wang, Duolao, additional, Hu, Dayi, additional, Pan, Changyu, additional, Keenan, Joanne, additional, Milton, Joanne, additional, Doran, Zoe, additional, Bray, Chris, additional, Rouleau, Jean L, additional, Collier, Jane, additional, Pocock, Stuart, additional, Standl, Eberhard, additional, Swedberg, Karl, additional, Weng, Jianping, additional, Zhao, Dong, additional, Petrie, Mark C, additional, Connolly, Eugene, additional, Jhund, Pardeep, additional, MacDonald, Michael, additional, Myles, Rachel C, additional, Bai, Rong, additional, Li, Jing, additional, Liu, Zhaoping, additional, Liu, Zhenyu, additional, Peng, Dantao, additional, Tong, Qiguang, additional, Wang, Chunxue, additional, Yan, Xiaowei, additional, Zhang, Yuqing, additional, Zhou, Jingmin, additional, Sattar, Naveed, additional, Fisher, Miles, additional, Petrie, John R, additional, Bethel, M Angelyn, additional, Xu, Wen, additional, Hearn, Sarah, additional, Kappai, Anurag, additional, Su, Shu-Yi, additional, Liyanage, Winitha, additional, Paul, Sanjoy, additional, Pozzi, Emanuela, additional, Ring, Arne, additional, Athwal, Rajbir, additional, Batra, Priyanka, additional, Ferch, Andrea, additional, Groves, Natasha, additional, Kennedy, Irene, additional, Nawalaniec, Olga, additional, Patel, Yash, additional, Roberts, Rachel, additional, Rush, Victoria, additional, Starrett, Jayne, additional, Tang, Jennifer, additional, Bi, Jing, additional, Jiang, Zhe, additional, Wei, Hua, additional, Wei, Xiaoshuai, additional, Zhang, Xuan, additional, Yin, Jun, additional, Sun, Yu, additional, Hu, Rong, additional, Liu, Yang, additional, Long, Jianjing, additional, Long, Yuefeng, additional, Qiao, Guofang, additional, Qiao, Haoyi, additional, Sun, Xiaochun, additional, Zhang, Yucheng, additional, Zhou, Jing, additional, Wang, Bangning, additional, Chen, Bin, additional, Deng, Lili, additional, Han, Xiaoning, additional, Hu, Taohong, additional, Hua, Qi, additional, Huo, Yanming, additional, Li, Hongmei, additional, Li, Hongwei, additional, Liu, Lihua, additional, Lu, Juming, additional, Ma, Changsheng, additional, Peng, Jianjun, additional, Pi, Lin, additional, Wang, Bin, additional, Wei, Guanglin, additional, Yang, Ming, additional, Zhang, Shuyang, additional, Zhang, Likun, additional, Zhao, Xia, additional, Zhou, Yujie, additional, Shi, Libin, additional, Wang, Mingsheng, additional, Wu, Lirong, additional, Han, Lei, additional, Liao, Ronghong, additional, Ran, Boli, additional, She, Qiang, additional, Tan, Jiancong, additional, Xia, Mei, additional, Yang, Chengming, additional, Chen, Lianglong, additional, Xiong, Shangquan, additional, Yu, Ling, additional, Pu, Xiaodong, additional, Wang, Yan, additional, Xie, Qiang, additional, Chen, Cibin, additional, Chen, Jiyan, additional, Dong, Yugang, additional, Wu, Zhaohui, additional, Yuan, Yong, additional, Zhou, Wanxing, additional, Zhou, Shuxian, additional, Chen, Xiaochao, additional, Wu, Chun, additional, Zhang, Aidong, additional, Li, Zicheng, additional, Lai, Shayi, additional, Yang, Jin, additional, Wei, Jinru, additional, Kuang, Riyu, additional, Zhao, Zilin, additional, Zhong, Guoqiang, additional, Cao, Xufen, additional, Hao, Yuming, additional, Liu, Gang, additional, Wang, Dongmei, additional, Fang, Hui, additional, Kong, Lingjun, additional, Li, Haitao, additional, Wang, Changqing, additional, Wang, Li'na, additional, Li, Xueqi, additional, Dong, Pingshuan, additional, Zhang, Shouyan, additional, Liu, Xincan, additional, Zhao, Yulan, additional, Liu, Hengliang, additional, Gu, Ye, additional, Liao, Yuhua, additional, Su, Xi, additional, Wang, Daowen, additional, Wang, Hairong, additional, Yang, Bo, additional, Guo, Ying, additional, Ouyang, Ding'an, additional, Yang, Tianlun, additional, Zhang, Yumin, additional, Han, Yajun, additional, Lin, Xuefeng, additional, Zhao, Ruiping, additional, Man, Ronghai, additional, Bian, Rongwen, additional, Biao, Xu, additional, Hasimu, Buaijiaer, additional, Jin, Hui, additional, Liu, Ping, additional, Yu, Jiangyi, additional, Zhang, Hang, additional, Xu, Chongli, additional, Guo, Yan, additional, Lv, Ke, additional, Tao, Yijia, additional, Xu, Xin, additional, Yang, Zhenyu, additional, Li, Dongye, additional, Qi, Chunmei, additional, Zhang, Guohui, additional, Gu, Xiang, additional, Hong, Lang, additional, Hu, Ling, additional, Li, Juxiang, additional, Yang, Ping, additional, Liu, Bin, additional, Wang, Gang, additional, Lin, Hailong, additional, Liu, Jun, additional, Zhang, Shuying, additional, Han, Ping, additional, Jin, Yuanzhe, additional, Li, Ling, additional, Li, Zhanquan, additional, Luan, Hong, additional, Song, Mei, additional, Xue, Li, additional, Hua, Yu, additional, Liu, Dongwu, additional, Yuan, Zuyi, additional, Ye, Jixian, additional, Gao, Feng, additional, Feng, Jinhua, additional, Wang, A'li, additional, Ye, Shengming, additional, Li, Xiaoyan, additional, Su, Guohai, additional, Zhang, Shufang, additional, Hou, Zishan, additional, Jiang, Wenbin, additional, Zhou, Changyong, additional, Wang, Yanping, additional, Qi, Wenbo, additional, Bao, Xiaomei, additional, Feng, Bo, additional, Gong, Hui, additional, Gu, Shuiming, additional, Gu, Mingjun, additional, Guo, Xingui, additional, He, Ben, additional, Huang, Ying, additional, Jiang, Jinfa, additional, Jiang, Yifeng, additional, Jin, Huigen, additional, Li, Yuehua, additional, Liu, Qiliang, additional, Lu, Guoping, additional, Miao, Peizhi, additional, Qin, Yongwen, additional, Wang, Yuanming, additional, Wu, Shiyao, additional, Xu, Yawei, additional, Ma, Jin, additional, Chen, Xiaoping, additional, Liu, Xiumin, additional, Tang, Jianing, additional, Wang, Jingping, additional, Tao, Jianhong, additional, Zhang, Jun, additional, Zhang, Tingjie, additional, Li, Decai, additional, Du, Xinping, additional, Jiang, Tiemin, additional, Lin, Jingna, additional, Lu, Chengzhi, additional, Ma, Hongjun, additional, Gao, Bo, additional, Guo, Xukun, additional, Li, Tong, additional, Zheng, Shaoxiong, additional, Li, Zhongcheng, additional, Zhao, Shuwu, additional, Qiu, Qiang, additional, Li, Kaili, additional, Liu, Junming, additional, Tang, Baopeng, additional, Yuan, Zhanjun, additional, Zhou, Jianhua, additional, Bai, Wenwei, additional, Guo, Tao, additional, Zhang, Ge, additional, Zhang, Hong, additional, Hao, Yinglu, additional, Fu, Guosheng, additional, Tang, Lijiang, additional, and Chen, Jialun, additional
- Published
- 2017
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239. New insights into structural organization and gene duplication in a 1.75‐Mb genomic region harboring the α‐gliadin gene family in Aegilops tauschii , the source of wheat D genome
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Huo, Naxin, primary, Dong, Lingli, additional, Zhang, Shengli, additional, Wang, Yi, additional, Zhu, Tingting, additional, Mohr, Toni, additional, Altenbach, Susan, additional, Liu, Zhiyong, additional, Dvorak, Jan, additional, Anderson, Olin D., additional, Luo, Ming‐Cheng, additional, Wang, Daowen, additional, and Gu, Yong Q., additional
- Published
- 2017
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240. Allelic Variation and Transcriptional Isoforms of Wheat TaMYC1 Gene Regulating Anthocyanin Synthesis in Pericarp
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Zong, Yuan, primary, Xi, Xinyuan, additional, Li, Shiming, additional, Chen, Wenjie, additional, Zhang, Bo, additional, Liu, Dengcai, additional, Liu, Baolong, additional, Wang, Daowen, additional, and Zhang, Huaigang, additional
- Published
- 2017
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241. ThMYC4E, candidate Blue aleurone 1 gene controlling the associated trait in Triticum aestivum
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Li, Na, primary, Li, Shiming, additional, Zhang, Kunpu, additional, Chen, Wenjie, additional, Zhang, Bo, additional, Wang, Daowen, additional, Liu, Dengcai, additional, Liu, Baolong, additional, and Zhang, Huaigang, additional
- Published
- 2017
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242. Development of a new set of molecular markers for examining Glu-A1 variants in common wheat and ancestral species
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Dong, Zhenying, primary, Yang, Yushuang, additional, Zhang, Kunpu, additional, Li, Yiwen, additional, Wang, Junjun, additional, Wang, Zhaojun, additional, Liu, Xin, additional, Qin, Huanju, additional, and Wang, Daowen, additional
- Published
- 2017
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243. New insight into the function of wheat glutenin proteins as investigated with two series of genetic mutants
- Author
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Wang, Zhaojun, primary, Li, Yiwen, additional, Yang, Yushuang, additional, Liu, Xin, additional, Qin, Huanju, additional, Dong, Zhenying, additional, Zheng, Shuhai, additional, Zhang, Kunpu, additional, and Wang, Daowen, additional
- Published
- 2017
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244. Genome-wide analysis of complex wheat gliadins, the dominant carriers of celiac disease epitopes
- Author
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Wang, Da-Wei, primary, Li, Da, additional, Wang, Junjun, additional, Zhao, Yue, additional, Wang, Zhaojun, additional, Yue, Guidong, additional, Liu, Xin, additional, Qin, Huanju, additional, Zhang, Kunpu, additional, Dong, Lingli, additional, and Wang, Daowen, additional
- Published
- 2017
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245. High-throughput mining of E-genome-specific SNPs for characterizingThinopyrum elongatumintrogressions in common wheat
- Author
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Lou, Haijuan, primary, Dong, Lingli, additional, Zhang, Kunpu, additional, Wang, Da-Wei, additional, Zhao, Maolin, additional, Li, Yiwen, additional, Rong, Chaowu, additional, Qin, Huanju, additional, Zhang, Aimin, additional, Dong, Zhenying, additional, and Wang, Daowen, additional
- Published
- 2017
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- View/download PDF
246. Precise base editing in rice, wheat and maize with a Cas9-cytidine deaminase fusion
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Zong, Yuan, primary, Wang, Yanpeng, additional, Li, Chao, additional, Zhang, Rui, additional, Chen, Kunling, additional, Ran, Yidong, additional, Qiu, Jin-Long, additional, Wang, Daowen, additional, and Gao, Caixia, additional
- Published
- 2017
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- View/download PDF
247. Involvement of DDAH/ADMA/NOS/cGMP and COX-2/PTGIS/cAMP Pathways in Human Tissue Kallikrein 1 Protecting Erectile Function in Aged Rats
- Author
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Cui, Kai, primary, Luan, Yang, additional, Tang, Zhe, additional, Rao, Ke, additional, Wang, Tao, additional, Chen, Zhong, additional, Wang, Shaogang, additional, Liu, Jihong, additional, and Wang, Daowen, additional
- Published
- 2017
- Full Text
- View/download PDF
248. Assessment of the individual and combined effects of Rht8and Ppd-D1aon plant height, time to heading and yield traits in common wheat
- Author
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Zhang, Kunpu, Wang, Junjun, Qin, Huanju, Wei, Zhiying, Hang, Libo, Zhang, Pengwei, Reynolds, Matthew, and Wang, Daowen
- Abstract
Grain yield in cereal crops is a complex trait controlled by multiple genes and influenced by developmental processes and environment. Here we report the effects of alleles Rht8and Ppd-D1aon plant height, time to heading, and grain yield and its component traits. Association analysis and quantitative trait locus mapping using phenotypic data from 15 environments led to the following conclusions. First, both Rht8and Ppd-D1areduce plant height. However, Ppd-D1abut not Rht8causes earlier heading. Second, both Rht8and Ppd-D1apromote grain yield and affect component traits. Their combined effects are substantially larger than those conferred by either allele alone. Third, promotion of grain yield by Rht8and Ppd-D1ais through increasing fertile spikelet number. We speculate that Rht8and Ppd-D1aact independently and additively in control of plant height, grain yield and yield component. Combination of the two alleles is desirable for adjusting plant height and enhancing grain yield and abiotic stress tolerance.
- Published
- 2019
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249. Regulation of YAP by Mammalian Target of Rapamycin Complex 1 in Endothelial Cells Controls Blood Pressure Through COX-2/mPGES-1/PGE2 Cascade.
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Yao, Liu, He, Jinlong, Li, Bochuan, Yan, Meng, Wang, Hui, Tan, Lu, Liu, Mingming, Lv, Xue, Lv, Huizhen, Zhang, Xu, Chen, Chen, Wang, Daowen, Yu, Ying, Huang, Yu, Zhu, Yi, and Ai, Ding
- Abstract
Endothelial cells regulate vascular tone by producing both relaxing and contracting factors to control the local blood flow. Hypertension is a common side effect of mTORC1 (mammalian target of rapamycin complex 1) inhibitors. However, the role of endothelial mTORC1 in hypertension remains elusive. The present study aimed to determine the role of endothelial mTORC1 in Ang II (angiotensin II)-induced hypertension and the underlying mechanism. Endothelial mTORC1 activity was increased by Ang II both in vitro and in vivo. Blood pressure was higher in Tie-2-Cre-mediated regulatory associated protein of mTOR (mammalian target of rapamycin; Raptor) heterozygous-deficient (Tie2Cre-RaptorKD) mice than control mice both before and after Ang II infusion. Acetylcholine-evoked endothelium-dependent relaxation of mesenteric arteries was impaired in Tie2Cre-RaptorKD mice. Treatment with indomethacin or a specific COX (cyclooxygenase)-2 inhibitor, NS-398, but not L-NG-nitroarginine methyl ester reduced endothelium-dependent relaxation in Raptorflox/- mice to a similar extent as in Tie2Cre-RaptorKD mice. Metabolomic profiling revealed that the plasma content of prostaglandin E2 was reduced in Tie2Cre-RaptorKD mice with or without Ang II infusion. In endothelial cells, reduction of the protein level of YAP (yes-associated protein) with siRNA-mediated RPTOR deficiency was autophagy dependent and transcriptionally regulated the expression of COX-2 and mPGES-1 (microsomal prostaglandin E synthase-1). Hence, overexpression of YAP in endothelial cells enhanced the mRNA and protein levels of COX-2 and mPGES-1 and reversed the endothelial dysfunction and hypertension in Tie2Cre-RaptorKD mice. The present results demonstrate that suppression of mTORC1 activity in endothelial cells reduces prostaglandin E2 production and causes hypertension by reducing YAP-mediated COX-2/mPGES-1 expression. [ABSTRACT FROM AUTHOR]
- Published
- 2019
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250. CRISPR editing-mediated antiviral immunity: a versatile source of resistance to combat plant virus infections.
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Ji, Xiang, Wang, Daowen, and Gao, Caixia
- Published
- 2019
- Full Text
- View/download PDF
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