Zhou Qinghong

RELEASE TIME:2024-10-29CLICK COUNT:

Name:Zhou Qinghong

Professional title: Professor

Education Experience

September,2010–June,2014:Jiangxiagricultural University,PhD,Crop Genetic Breeding

September,2001–June,2004: Southwest University,Master,Vegetable Breeding

September,1997–June,2001: Qingdao agricultural UniversityMaster,Horticulture

Work Experience

July,2004 –hitherto:Agronomy collage, Jiangxi Agricultural University

November 2016- November 2017: Southern Cross University, Visiting scholar

Projectsunderresearch

1. Molecular mechansim of regulating the biosynthesis and accumulation of anthocyanin in the tuber of Dioscorea alata by DaMYB75 and DaMYB56 competitively binding to DabHLH72(Supported by the Natural Science Foundation of China)

2. Exploration of significant loci and vital candidate genes related to expansion of cormels in multi-cormels taro by combining RNA-sequencing analysis and genome wide association study(Supported by the Natural Science Foundation of China)

3. Exploration of significant SNP loci and vital candidate genes related to early-maturity traits of multi-cormels taro by genome wide association study(Supported by the Science and Technology Foundation of Jiangxi province in China)

4. Jiangxi Agriculture Research System (breeding and propagation of new varities) (JXARS-7)

Publications

1. Nan Shan#, Putao Wang#, Qianglong Zhu, Jingyu Sun, Hongyu Zhang, Xingyue Liu, Tianxu Cao, Xin Chen, Yingjin Huang*,Qinghong Zhou*. Comprehensive characterization of yam tuber nutrition and medicinal quality ofDioscorea opposita andD. alata from different geographic groups in China. Journal of Integrative Agriculture, 2020, 19(11): 2839-2848

2. Putao Wang#, Nan Shan#, Asjad Ali, Jingyu Sun, Sha Luo, Yao Xiao, Shenglin Wang, Rui Hu, Yingjin Huang*, Qinghong Zhou*. Comprehensive evaluation of functional components, biological activities, and minerals of yam species (Dioscorea polystachya and D. alata) from China, LWT-Food Science and Technology, 2022, 168:113964

3. Xiao Yao#, Wang Shenglin#, Ali Asjad, Shan Nan, Luo Sha, Sun Jingyu, Zhang Hongyu, Xie Guoqiang, Shen Shaohua, Huang Yingjin*,Zhou Qinghong*. Cultivation pattern affects starch structure and physicochemical properties of yam (Dioscorea persimilis). International Journal of Biological Macromolecules, 2023, 242(null), 125004.

4. Tianxu Cao#, Shenglin Wang#, Asjad Ali, Nan Shan, Jingyu Sun, Xin Chen, Putao Wang, Qianglong Zhu, Yao Xiao, Sha Luo,Qinghong Zhou*, Yingjin Huang*. Transcriptome and metabolome analysis reveals the potential mechanism of tuber dynamic development in yam (Dioscorea polystachya Turcz.). LWT-Food Science and Technology, 2023, 181(114764):1-13.

5. Hira Khanzada#, Ghulam Mustafa Wassan#, Haohua He, Annaliese S Mason, Ayaz Ali Keerio, Saba Khanzada, Muhammad Faheem, Abdul Malik Solangi,Qinghong Zhou*, Donghui Fu*, Yingjin Huang*,Differentially evolved drought stress indices determine the genetic variation ofBrassica napus at seedling traits by genome-wide association mapping. Journal of Advanced Research, 2020, 24:447-461

6. Qianglong Zhu#, Bicong Li#, Xingyue Liu, Nan Shan, Jingyu Sun, Hongyu Zhang, Yingjin Huang, Yao Xiao*,Qinghong Zhou*.Uncovering the mechanism preliminarily of formation and development of taro corm in vitro by morphological physiology and transcriptomic analysis. Scientia Horticulturae, 2022, 291(1):110575

7. Bicong Li, Tao Liu, Asjad Ali, Yao Xiao, Nan Shan, Jingyu Sun, Yingjin Huang,Qinghong Zhou*, Qianglong Zhu*. Complete chloroplast genome sequences of three aroideae species (Araceae): lights into selective pressure, marker development and phylogenetic relationships. BMC Genomics, 2022. 23(1): 218-234.

8.Tianxu Cao#, Jingyu Sun#, Nan Shan, Xin Chen, Putao Wang, Qianglong Zhu, Yao Xiao, Hongyu Zhang,Qinghong Zhou*, Yingjin*. Huang.Uncovering the genetic diversity of yams (Dioscorea spp.) in China by combining phenotypic trait and molecular marker analyses. Ecology and Evolution, 2021, 11(15):9970-9986

9. Huiwen Zhou#, Xiaojun Xiao#, Ali Asjad, Depeng Han, Wei Zheng, Guobin Xiao, Yingjin Huang*,Qinghong Zhou*. Integration of GWAS and transcriptome analyses to identify SNPs and candidate genes for aluminum tolerance in rapeseed (Brassica napus L.). BMC Plant Biology 2022, 22:130-146

10. Nan Shan, Zijin Xiang, Jingyu Sun, Qianglong Zhu, Yao Xiao1, Putao Wang, Xin Chen,Qinghong Zhou*, Zengyu Gan*. Genome-wide analysis of valine-glutamine motif-containing proteins related to abiotic stress response in cucumber (Cucumis sativus L.). BMC Plant Biology, 2021, 21:492-507

11.Qinghong Zhou, Depeng Han, Annaliese S Mason, Can Zhou, Wei Zheng, Yazhen Li, Caijun Wu, Donghui Fu*, Yingjin Huang*.Earliness traits in rapeseed (Brassica napus): SNP loci and candidate genes identified by genome-wide association analysis. DNA Research, 2018,25(3):229-244

12. Qinghong Zhou, Can Zhou, Wei Zheng, Annaliese S. Mason, Shuying Fan, Caijun Wu, Donghui Fu, Yingjin Huang*.Genome-wide SNP markers based on SLAF-seq uncover breeding traces in rapeseed (Brassica napus L.). Frontiers in plant science, 2017, 8:648.

13.Qinghong Zhou, Donghui Fu, Yongjun Zeng, Annaliese S Mason, Chaoxian Zhao, Yingjin Huang*. In silico integration of quantitative trait loci for seed yield and yield-related traits inBrassica napus. Molecular Breeding, 2014, 33(4):881-894

14. Qinfei Li#,Qinghong Zhou#, Jiaqin Mei, Yongjing Zhang, Jiana Li, Zaiyun Li, Xianhong Ge, Zhiyong Xiong, Yinjing Huang, Wei Qian*. Improvement ofBrassica napus via interspecific hybridization betweenB. napus andB. oleracea. Molecular breeding, 2014, 34(4):1955-1963

15. Xin Chen, Jingyu Sun, Qianglong Zhu, Yao Xiao, Hongyu Zhang, Yingjin Huang, Putao Wang, Tianxu Cao, Rui Hu, Zijin Xiang, Nan Shan*,Qinghong Zhou*. Characterizing diversity based on phenotypes and molecular marker analyses of purple yam (Dioscorea alata L.) germplasm in southern China.Genetic Resources and Crop Evolution, 2022

16. Qianglong Zhu, Graham J. King, Xingyue Liu, Nan Shan, Priyakshee Borpatragohain, Abdul Baten, Putao Wang, Sha Luo,Qinghong Zhou*.Identification of SNP loci and candidate genes related to four important fatty acid composition inBrassica napus using genome wide association study. PLoS one, 2019, 14(8):e0221578

Mobile Phone:13879132830

E-mail:qinghongzhou@126.com