39 results on '"Qiao, Lixian"'
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2. Identification and characterization of transposable element AhMITE1 in the genomes of cultivated and two wild peanuts
3. Breeding of a new variety of peanut with high-oleic-acid content and high-yield by marker-assisted backcrossing
4. Characterization of AhLea-3 and its enhancement of salt tolerance in transgenic peanut plants
5. Transcriptome profiling and digital gene expression analysis of genes associated with salinity resistance in peanut
6. RNA-seq analysis reveals the role of a small GTP-binding protein, Rab7, in regulating clathrin-mediated endocytosis and salinity-stress resistance in peanut
7. Identification of AhFatB genes through genome-wide analysis and knockout of AhFatB reduces the content of saturated fatty acids in peanut (Arichis hypogaea L.)
8. Additional file 4 of Identification and characterization of transposable element AhMITE1 in the genomes of cultivated and two wild peanuts
9. Additional file 9 of Identification and characterization of transposable element AhMITE1 in the genomes of cultivated and two wild peanuts
10. Additional file 7 of Identification and characterization of transposable element AhMITE1 in the genomes of cultivated and two wild peanuts
11. Additional file 8 of Identification and characterization of transposable element AhMITE1 in the genomes of cultivated and two wild peanuts
12. Additional file 5 of Identification and characterization of transposable element AhMITE1 in the genomes of cultivated and two wild peanuts
13. Additional file 2 of Identification and characterization of transposable element AhMITE1 in the genomes of cultivated and two wild peanuts
14. Additional file 10 of Identification and characterization of transposable element AhMITE1 in the genomes of cultivated and two wild peanuts
15. Additional file 6 of Identification and characterization of transposable element AhMITE1 in the genomes of cultivated and two wild peanuts
16. Additional file 3 of Identification and characterization of transposable element AhMITE1 in the genomes of cultivated and two wild peanuts
17. Genome-wide identification of auxin response factor (ARF) gene family and the miR160-ARF18-mediated response to salt stress in peanut (Arachis hypogaea L.)
18. The sweetpotato β-amylase gene IbBAM1.1 enhances drought and salt stress resistance by regulating ROS homeostasis and osmotic balance
19. Expressed sequence tag analysis and cloning of trehalose-6-phosphate synthase gene from marine alga Laminaria japonica (Phaeophyta)
20. A novel salt inducible WRKY transcription factor gene, AhWRKY75, confers salt tolerance in transgenic peanut
21. Genome-wide identification and characterization of nonspecific lipid transfer protein (nsLTP) genes in Arachis duranensis
22. Genome-wide identification and characterization of non-specific lipid transfer protein (nsLTP) genes in Arachis duranensis
23. Breeding New Peanut Line with High Oleic Acid Content Using Backcross Method
24. The Salinity Responsive Mechanism of a Hydroxyproline-Tolerant Mutant of Peanut Based on Digital Gene Expression Profiling Analysis
25. Mapping Quantitative Trait Loci of Resistance to Tomato Spotted Wilt Virus and Leaf Spots in a Recombinant Inbred Line Population of Peanut (Arachis hypogaea L.) from SunOleic 97R and NC94022
26. Genetic Mapping of QTLs Controlling Fatty Acids Provided Insights into the Genetic Control of Fatty Acid Synthesis Pathway in Peanut (Arachis hypogaea L.)
27. Generation of Peanut Drought Tolerant Plants by Pingyangmycin-Mediated In Vitro Mutagenesis and Hydroxyproline-Resistance Screening
28. Identification of QTLs associated with oil content and mapping FAD2 genes and their relative contribution to oil quality in peanut (Arachis hypogaeaL.)
29. Genetic Mapping and Quantitative Trait Loci Analysis for Disease Resistance Using F 2 and F 5 Generation‐based Genetic Maps Derived from ‘Tifrunner’ × ‘GT‐C20’ in Peanut
30. Genetic variation in 14 Porphyra lines using restriction site amplified polymorphism (RSAP)
31. Application of Target Region Amplification Polymorphism (TRAP) Technique to Porphyra (Bangiales, Rhodophyta) Fingerprinting
32. Genetic variation in 14 Porphyra lines using restriction site amplified polymorphism (RSAP).
33. Application of target region amplification polymorphism (TRAP) technique to Porphyra(Bangiales, Rhodophyta) fingerprinting
34. [Verification of the peanut vitamin C synthesis-related gene AhPMM and its role in stress resistance].
35. [Effect of ACC oxidase gene AhACOs on salt tolerance of peanut].
36. [Analysis of the salt-stress responsive element of the promoter of peanut small GTP binding protein gene AhRabG3f ].
37. [Breeding on a new peanut variety Yuhua91 with high oleic acid content].
38. [Breeding peanut variety Yuhua 7 by fast neutron irradiation and tissue culture].
39. [Breeding of peanut variety Yuhua 4 by in vitro mutagenesis].
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