Content area

Abstract

Phenotypic diversity and evolutionary innovation ultimately trace to variation in genomic sequence and rewiring of regulatory networks. Here, we constructed a pan-genome of the Gossypium genus using ten representative diploid genomes. We document the genomic evolutionary history and the impact of lineage-specific transposon amplification on differential genome composition. The pan-3D genome reveals evolutionary connections between transposon-driven genome size variation and both higher-order chromatin structure reorganization and the rewiring of chromatin interactome. We linked changes in chromatin structures to phenotypic differences in cotton fiber and identified regulatory variations that decode the genetic basis of fiber length, the latter enabled by sequencing 1,005 transcriptomes during fiber development. We showcase how pan-genomic, pan-3D genomic and genetic regulatory data serve as a resource for delineating the evolutionary basis of spinnable cotton fiber. Our work provides insights into the evolution of genome organization and regulation and will inform cotton improvement by enabling regulome-based approaches.

Details

Title
Genomic innovation and regulatory rewiring during evolution of the cotton genus Gossypium
Author
Wang, Maojun 1 ; Li, Jianying 1 ; Qi, Zhengyang 1 ; Long, Yuexuan 1 ; Pei, Liuling 1 ; Huang, Xianhui; Grover, Corrinne E; Du, Xiongming; Xia, Chunjiao; Wang, Pengcheng; Liu, Zhenping; You, Jiaqi; Tian, Xuehan; Ma, Yizan; Wang, Ruipeng; Chen, Xinyuan; He, Xin; Fang, David D; Sun, Yuqiang; Tu, Lili; Jin, Shuangxia; Zhu, Longfu; Wendel, Jonathan F; Zhang, Xianlong

 National Key Laboratory of Crop Genetic Improvement, Hubei Hongshan Laboratory, Huazhong Agricultural University, Wuhan, China 
Pages
1959-8,1971A-1971Q
Section
Article
Publication year
2022
Publication date
Dec 2022
Publisher
Nature Publishing Group
ISSN
10614036
e-ISSN
15461718
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2753743760
Copyright
Copyright Nature Publishing Group Dec 2022