1998年,山西大学获学士学位
2001年,南京师范大学获硕士学位
2005年,中国科学院植物研究所获博士学位
2005-至今,中国科学院植物研究所助理研究员、副研究员
1998年,山西大学获学士学位
2001年,南京师范大学获硕士学位
2005年,中国科学院植物研究所获博士学位
2005-至今,中国科学院植物研究所助理研究员、副研究员
甜高粱抗逆机制研究和分子育种
Li C, Wu XY, Wang PN, Wang HR, Wang LD, Sun F, Lu C, Hao HQ*, Chu CC, and Jing HC. 2025. Genome-wide association study of image-based trait reveals the genetic architecture of dark-induced leaf senescence in rice. Journal of Experimental Botany, 76:331-345
Zhang R#, Lin G#, Shang L, Wu XY, Liu ZQ, Xu LC, Sun QL, Jingying Fu JY*, Hao HQ* and Jing HC. 2024. Potential, economic and ecological benefits of sweet sorghum bio-industry in China. Biotechnology for Biofuels and Bioproducts, 17:134
Wang LD, Shang L, Wu XY, Hao HQ*, Jing HC*. 2023. Genomic architecture of leaf senescence in sorghum (Sorghum bicolor). Theoretical and Applied Genetics, 136:45
Xu S, Li XQ, Guo H, Wu XY, Wang N, Liu ZQ, Hao HQ* and Jing HC. 2023. Mucilage secretion by aerial roots in sorghum (Sorghum bicolor): sugar profile, genetic diversity, GWAS and transcriptomic analysis. Plant Molecular Biology, 112:309-323
Wu XY#, Liu YM#, Luo H#, Shang L, Leng CY, Liu ZQ, Li ZG, Lu XC, Cai HW, Hao HQ*, Jing HC*. 2022. Genomic footprints of sorghum domestication and breeding selection for multiple end uses. Molecular Plant, 15:537-551
Hao HQ*, Li ZG, Leng CY, Lu C, Luo H, Liu YM, Wu XY, Liu ZQ, Shang L, and Jing HC*. 2021. Sorghum breeding in the genomic era: opportunities and challenges. Theoretical and Applied Genetics, 134:1899-1924
Feng X#, Liu LL#, Li ZG, Sun F, Wu XY, Hao DY, Hao HQ*, and Jing HC*. 2021. Potential interaction between autophagy and auxin during maize leaf senescence. Journal of Experimental Botany, 72:3554-3568
Li ZG, Li K, Yang XH, Hao HQ*, and Jing HC. 2021. Combined QTL mapping and association study reveal candidate genes for leaf number and flowering time in maize. Theoretical and Applied Genetics, 134:3459-3472
Liu YM#, Wang ZH#, Wu XY, Zhu JW, Luo H, Tian DM, Li CP, Luo JC, Zhao WM*, Hao HQ*, and Jing HC. 2021. SorGSD: updating and expanding the sorghum genome science database with new contents and tools. Biotechnology for Biofuels, 14:165
Liu ZQ#, Li HL#, Zeng XJ, Lu C, Fu JY, Guo LJ, Wilson MK, Yan HL, He ZY, Hao HQ*, and Jing HC. 2020. Coupling phytoremediation of cadmium-contaminated soil with safe crop production based on a sorghum farming system. Journal of Cleaner Production, 275:123002
Chi YH, Wilson K, Liu ZQ, Wu XY, Shang L, Zhang LM, Jing HC, and Hao HQ*. 2020. Vacuolar invertase genes SbVIN1 and SbVIN2 are differently associated with stem and grain traits in sorghum (Sorghum bicolor). The Crop Journal, 8:299-312
Wilson K, Zhang LM, Wu XY, Hao HQ*, and Jing HC*. 2020. Genome-wide association study reveals that different pathways contribute to grain quality variation in sorghum (Sorghum bicolor). BMC Genomics, 21:112
Hao HQ#, Fan LS#, Chen T, Li RL, Li XJ, He QH, Miguel AB, and Lin JX*. 2014. Clathrin and membrane microdomains cooperatively regulate RbohD dynamics and activity in Arabidopsis. Plant Cell, 26:1729-1745
Fan LS#, Hao HQ#, Xue YQ, Zhang L, Song K, Ding ZJ, Miguel AB, Wang HY and Lin JX*. 2013. Dynamic analysis of Arabidopsis AP2 σ subunit reveals a key role in clathrin-mediated endocytosis and plant development. Development, 140: 3826-3837