1.通讯作者.,Genome-wide association study of seedling nitrogen-use efficiency-associated traits in common wheat (Triticum aestivum L.),The Crop Journal,12 (2024) 222–231
2 .通讯作者Genomewide association study of agronomic traits relatedto nitrogen use efciency in wheat;Theoretical and Applied Genetics;2022.9.22。
3.通讯作者Identification of stay-green candidate gene TaTRNH1-3Band development
of molecular markers related to chlorophyll content and yield in wheat
(Triticum aestivum L.),Plant Physiology and Biochemistry 222 (2025) 109787
4.通讯作者.A soybean GmDREB3 gene contributes to drought tolerancein wheat;FoodandEnergySecurity,2022.9.27
5.通讯作者.H+-pyrophosphatases enhance low nitrogen stress tolerance in transgenic Arabidopsis and wheat by interacting with a receptor-like protein kinase;Frontiers inPlant Science,2023.01.27
6.通讯作者. Insights into the Bioinformatics and Transcriptional Analysis of the Elongator Complexes (ELPs)Gene Family of Wheat: TaELPs Contribute to Wheat Abiotic Stress Tolerance and Leaf Senescence;Plants 2023, 12,952
7.通讯作者.Integrated Transcriptomic and Metabolomic Analyses Identify Critical Genes and 6. Metabolites Associated with Seed Vigor of Common Wheat,Int. J. Mol. Sci. 2024, 25,526.
8. 通讯作者.TaERF73 is associated with root depth, thousand grain weight and plant height in wheat over a range of environmental conditions,Food and Energy Security, 2022,11:e325, https://doi.org/10.1002/fes3.325
9. 通讯作者.Transcriptome Differences in Response Mechanisms to Low-Nitrogen Stress in Two Wheat Varieties,Int. J. Mol. Sci. 2021, 22, 12278. https://doi.org/10.3390/ijms222212278
10. 通讯作者.In Silico and Transcription Analysis of Trehalose-6-phosphate Phosphatase Gene Family of Wheat: Trehalose Synthesis Genes Contribute to Salinity, Drought Stress and Leaf Senescence, Genes 2021, 12, 1652. https://doi.org/10.3390/genes12111652
11. 通讯作者.SiMYB19 from Foxtail Millet (Setaria italica) Confers Transgenic Rice Tolerance to High Salt Stress in the Field;Int. J. Mol. Sci. 2022, 23, 756. https://doi.org/10.3390/ijms23020756
12.通讯作者.Mining the stable quantitative trait loci for agronomic traits in wheat (Triticum aestivum L.) based on an introgression line population, BMC Plant Biology, 2020, 20:275
13.通讯作者. QTL mapping for flag leaf-related traits and genetic effect of QFLW-6A on flag leaf width using two related introgression line populations in wheat, 2020, PLoS ONE 15(3): e0229912.
14.通讯作者. QTL mapping and candidate gene analysis of seed vigor‑related traits during artifcial aging in wheat (Triticum aestivum), Scientifc Reports, 2020,10:22060.
15. 通讯作者.Genome-wide identification and characterization of long non-coding RNAs related to grain yield in foxtail millet [Setaria italica (L.) P. Beauv.], BMC Genomics, 2020,21:853.
16. 通讯作者. A method for the identification and evaluation of stay-green wheat variety, Current Science, 2020, 118(9):1407-1414.
17. 通讯作者. Identification of TaPPH-7A haplotypes and development of a molecular marker associated with important agronomic traits in common wheat, BMC Plant Biology, 2019, 19:296.
18. 通讯作者.QTL analysis of wheat kernel traits, and genetic effects of qKW-6A on kernel width, Euphytica, 2019, 215:11
19. 通讯作者. Dynamic analysis of QTLs for green leaf area duration and green leaf number of main stem in wheat. Cereal Research Communications. 2019, (DOI: 10.1556/0806.47.2019.006)
18. 通讯作者. Mapping quantitative trait loci for important agronomic traits and developing potential near-isogenic lines in wheat, International Journal of Agriculture and Biology, 2019, DOI: 10.17957/IJAB/15.1028
20. 通讯作者.Screening of wheat (Triticum aestivum L.) varieties with high nitrogen use efficiency under rainfed and irrigated conditions, Turk J Field Crops, 2019, 24(2), 121-131
21. 通讯作者. QTL analysis for stomatal density and size in wheat spike organ,Emirates Journal of Food and Agriculture. 2018. 30(3): 173-179
22. 通讯作者. Mapping QTLs for stomatal density and size under drought stress in wheat (Triticum aestivum L.). Journal of Integrative Agriculture , 2016, 15(9): 1955–1967
23.通讯作者. Dynamic QTL analysis of chlorophyll content during grain filling stage in winter wheat (Triticum aestivum L.). Romanian Agricultural Research, 2016, 33:77-85
24. 通讯作者. Quantitative trait loci mapping for traits related to the progression of wheat flag leaf senescence. The Journal of Agricultural Science , 2015, 153, 1234–1245
25. 通讯作者. Genetic basis of traits related to stomatal conductance in wheat cultivars in response to drought stress. Photosynthetica, 2015, 53 (2): 299-305
26. 通讯作者. Detection of QTLs for resistance to rice stripe virus and small brown planthopper in rice (Oryza sativa L.). Acta Agronomica Sinica. 2006, 32(6): 805-810.
27. 通讯作者. Quantitative Trait Loci for Resistance to Stripe Disease in Rice (Oryza sativa, L.), Rice Science,2007,14(2):157-160
28. 通讯作者. Relation of Leaf Stomatal Traits to Yield and Drought Resistace of Wheat. MER, 2013,4(5-6):54-58.
29. 通讯作者.Genetic Correlation Analysis of Photosynthetic Characteristics, Yield and Drought Resistance in Spring Wheat (Triticum aestivum L.). International Journal of Agriculture and Biology. 2017, 19: 99‒104
30. 通讯作者.采用优化的数字PCR方法分析转基因小麦外源基因拷贝数,中国农业科学,2020,53(10):1931-193931. 通讯作者.高 CO2 浓度、干旱及其互作对不同持绿型小麦幼苗的影响,应用生态学报,2020,31(7):2407--2414
32. 通讯作者.蚂蚱麦和小白麦衍生系的遗传多样性分析,作物学报,2019, 45(10): 1468-1477
33. 通讯作者.过表达谷子 SiANT1 对水稻耐盐性的影响,中国农业科学,2018,51(10):1830-1841
34. 通讯作者. 用GGE双标图及隶属函数综合分析山西小麦地方品种抗旱性,应用生态学报,2013,24(4):1031—1038.