Resequencing of 243 diploid cotton accessions based on an updated A genome identifies the genetic basis of key agronomic traits

Author:

Du XiongmingORCID,Huang GaiORCID,He Shoupu,Yang ZhaoenORCID,Sun Gaofei,Ma Xiongfeng,Li NanORCID,Zhang Xueyan,Sun JunlingORCID,Liu Min,Jia YinhuaORCID,Pan ZhaoeORCID,Gong WenfangORCID,Liu Zhaohui,Zhu Heqin,Ma Lei,Liu Fuyan,Yang Daigang,Wang Fan,Fan Wei,Gong QianORCID,Peng ZhenORCID,Wang Liru,Wang Xiaoyang,Xu Shuangjiao,Shang Haihong,Lu Cairui,Zheng HongkunORCID,Huang Sanwen,Lin TaoORCID,Zhu YuxianORCID,Li FuguangORCID

Publisher

Springer Science and Business Media LLC

Subject

Genetics

Reference71 articles.

1. Wendel, J. F., Flagel, L. E. & Adams, K. L. Jeans, genes, and genomes: cotton as a model for studying polyploidy. in Polyploidy and Genome Evolution (eds. Soltis, P. S. & Soltis, D. E.) 181–207 (Springer, Berlin and Heidelberg, 2012).

2. Wendel, J. F., Brubaker, C. L. & Seelanan, T. The origin and evolution of Gossypium. in Physiology of Cotton (eds. Stewart, J. M. et al.) 1–18 (Springer Netherlands, Houten, the Netherlands, 2010).

3. Watt, G. The Wild and Cultivated Cotton Plants of the World (Longmans, London, 1907).

4. Institute of Cotton Research, CAAS & Institute of Industrial Crops, JAAS. The Chinese Asiatic Cottons (ChinaAgriculture Press, Beijing, 1989).

5. Desai, A., Chee, P. W., Rong, J., May, O. L. & Paterson, A. H. Chromosome structural changes in diploid and tetraploid A genomes of Gossypium. Genome 49, 336–345 (2006).

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