265 results on '"Liu, Diqiu"'
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2. WRKY11 up-regulated dirigent expression to enhance lignin/lignans accumulation in Lilium regale Wilson during response to Fusarium wilt
3. Heterologous synthesis of ginsenoside F1 and its precursors in Nicotiana benthamiana
4. Function and regulation of a chitinase gene during Panax notoginseng defense response to root rot
5. Panax notoginseng transcription factor WRKY15 modulates resistance to Fusarium solani by up-regulating osmotin-like protein expression and inducing JA/SA signaling pathways
6. Equine ANP32 proteins support influenza A virus RNA polymerase activity
7. Development of SSR markers on the basis of the Panax notoginseng transcriptome for agronomic and biochemical trait association analyses
8. Construction of plant cell factory for biosynthesis of ginsenoside Rh2 in tobacco
9. Transcriptome analysis reveals putative pathogenesis genes in Alternaria panax during infecting Panax notoginseng leaves
10. Dirigent gene family is involved in the molecular interaction between Panax notoginseng and root rot pathogen Fusarium solani
11. Lilium regale Wilson WRKY3 modulates an antimicrobial peptide gene, LrDef1, during response to Fusarium oxysporum
12. The transcription factor PjERF1 enhances the biosynthesis of triterpenoid saponins in Panax japonicus
13. Prevalence and molecular epidemiology of equine piroplasmosis in China: a neglected tick-borne disease
14. A Fast, Efficient, and Tissue-Culture-Independent Genetic Transformation Method for Panax notoginseng and Lilium regale.
15. Panax notoginseng snakin gene increases resistance to Fusarium solani in transgenic tobacco
16. Thaumatin-like protein genes of Panax notoginseng confers resistance to Alternaria panax
17. The Distal Promoter of the B438L Gene of African Swine Fever Virus Is Responsible for the mRNA Transcription of the B438L and the Alternatively Spliced B169L
18. Isolation and functional characterization of the mitogen-activated protein kinase kinase gene MAPKK1 from Panax notoginseng
19. Proline‐rich protein PRPL1 enhances Panax notoginseng defence against Fusarium solani by regulating reactive oxygen species balance and strengthening the cell wall barrier.
20. The Distal Promoter of the B438L Gene of African Swine Fever Virus Is Responsible for the Transcription of the Alternatively Spliced B169L.
21. A transcriptome analysis uncovers Panax notoginseng resistance to Fusarium solani induced by methyl jasmonate
22. A pathogenesis-related protein 10 gene PnPR10–3 was involved in molecular interaction between Panax notoginseng and Fusarium solani
23. Isolation and characterization of a Fusarium oxysporum-resistant gene LrGLP1 from Lilium regale Wilson
24. Development and application of a competitive ELISA for the detection of antibodies against Salmonella Abortusequi in equids
25. Viral infections inhibit saponin biosynthesis and photosynthesis in Panax notoginseng
26. WRKY11 up-regulated dirigentexpression to enhance lignin/lignans accumulation in Lilium regaleWilson during response to Fusarium wilt
27. Soil water stress attenuate the growth and development but enhance the saponin synthesis of Panax notogesing during flowering stage
28. A glutathione S-transferase gene from Lilium regale Wilson confers transgenic tobacco resistance to Fusarium oxysporum
29. Development and Application of an iELISA for the Detection of Antibody against Salmonella Abortusequi
30. Development and Application of Real-Time PCR Assay for Detection of Salmonella Abortusequi
31. Interaction of gallic acid with trypsin analyzed by spectroscopy
32. An AP2/ERF Family Transcription Factor PnERF1 Raised the Biosynthesis of Saponins in Panax notoginseng
33. Functional characterization of a pathogenesis-related protein family 10 gene, LrPR10-5, from Lilium regale Wilson
34. Additional file 2 of Panax notoginseng transcription factor WRKY15 modulates resistance to Fusarium solani by up-regulating osmotin-like protein expression and inducing JA/SA signaling pathways
35. Additional file 3 of Panax notoginseng transcription factor WRKY15 modulates resistance to Fusarium solani by up-regulating osmotin-like protein expression and inducing JA/SA signaling pathways
36. Additional file 4 of Panax notoginseng transcription factor WRKY15 modulates resistance to Fusarium solani by up-regulating osmotin-like protein expression and inducing JA/SA signaling pathways
37. Additional file 1 of Panax notoginseng transcription factor WRKY15 modulates resistance to Fusarium solani by up-regulating osmotin-like protein expression and inducing JA/SA signaling pathways
38. Constructing a Biosynthetic Pathway of Ginsenoside F1 to Achieve its Synthesis in Tobacco
39. Molecular cloning of a 14-3-3 protein gene from Lilium regale Wilson and overexpression of this gene in tobacco increased resistance to pathogenic fungi
40. First report of a Panax notoginseng leaf disease caused by Alternaria alternata in China
41. Overexpression of Pp14-3-3 from Pyrus Pyrifolia Fruit Increases Drought and Salt Tolerance in Transgenic Tobacco Plant
42. Identification of Genes Differentially Expressed in a Resistant Reaction to Fusarium Oxysporum in Lilium Regale by SSH
43. Quantitative indirect ELISA for determination of walnut proteins in foods
44. Panax notoginseng WRKY Transcription Factor 9 Is a Positive Regulator in Responding to Root Rot Pathogen Fusarium solani
45. An MYB Transcription Factor Modulates Panax notoginseng Resistance Against the Root Rot Pathogen Fusarium solani by Regulating the Jasmonate Acid Signaling Pathway and Photosynthesis
46. Cloning of Porcine Lactoferrin Gene and Construction of Expression System in Recombinant Lactobacillus
47. Comparison of the immune responses induced by oral immunization of mice with Lactobacillus casei-expressing porcine parvovirus VP2 and VP2 fused to Escherichia coli heat-labile enterotoxin B subunit protein
48. Additional file 2 of Lilium regale Wilson WRKY3 modulates an antimicrobial peptide gene, LrDef1, during response to Fusarium oxysporum
49. Additional file 3 of Lilium regale Wilson WRKY3 modulates an antimicrobial peptide gene, LrDef1, during response to Fusarium oxysporum
50. Additional file 1 of Lilium regale Wilson WRKY3 modulates an antimicrobial peptide gene, LrDef1, during response to Fusarium oxysporum
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