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High-quality Gossypium hirsutum and Gossypium barbadense genome assemblies reveal the landscape and evolution of centromeres 被引量:1

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摘要 Centromere positioning and organization are crucial for genome evolution;however,research on centro-mere biology is largely influenced by the quality of available genome assemblies.Here,we combined Oxford Nanopore and Pacific Biosciences technologies to de novo assemble two high-quality reference genomes for Gossypium hirsutum(TM-1)and Gossypium barbadense(3-79).Compared with previously published reference genomes,our assemblies show substantial improvements,with the contig N50 improved by 4.6-fold and 5.6-fold,respectively,and thus represent the most complete cotton genomes to date.These high-quality reference genomes enable us to characterize 14 and 5 complete centromeric regions for G.hirsutum and G.barbadense,respectively.Our data revealed that the centromeres of allotetraploid cotton are occupied by members of the centromeric repeat for maize(CRM)and Tekay long terminal repeat families,and the CRM family reshapes the centromere structure of the At subgenome after polyploidization.These two intertwined families have driven the convergent evolution of centromeres between the two subgenomes,ensuring centromere function and genome stability.In addition,the reposi-tioning and high sequence divergence of centromeres between G.hirsutum and G.barbadense have contributed to speciation and centromere diversity.This study sheds light on centromere evolution in a sig-nificant crop and provides an alternative approach for exploring the evolution of polyploid plants.
出处 《Plant Communications》 SCIE CSCD 2024年第2期135-150,共16页 植物通讯(英文)
基金 supported by the National Natural Science Foundation of China (32170645) the National Key Research and Development Program of China (2021YFF1000900).
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  • 1Yang Lv,Congcong Liu,Xiaoxia Li,Yueying Wang,Huiying He,Wenchuang He,Wu Chen,Longbo Yang,Xiaofan Dai,Xinglan Cao,Xiaoman Yu,Jiajia Liu,Bin Zhang,Hua Wei,Hong Zhang,Hongge Qian,Chuanlin Shi,Yue Leng,Xiangpei Liu,Mingliang Guo,Xianmeng Wang,Zhipeng Zhang,Tianyi Wang,Bintao Zhang,Qiang Xu,Yan Cui,Qianqian Zhang,Qiaoling Yuan,Noushin Jahan,Jie Ma,Xiaoming Zheng,Yongfeng Zhou,Qian Qian,Longbiao Guo,Lianguang Shang.A centromere map based on super pan-genome highlights the structure and function of rice centromeres[J].Journal of Integrative Plant Biology,2024,66(2):196-207.

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