Back to Search Start Over

The genome sequence of Sea-Island cotton (Gossypium barbadense) provides insights into the allopolyploidization and development of superior spinnable fibres

Authors :
Daojun Yuan
Ling-Ling Chen
Yuanhao Ding
Yonghui He
Xiyan Yang
Shuangxia Jin
Maojun Wang
Guoliang Li
Wenhui Gao
Yang Li
Nian Liu
Zhonghui Tang
Lili Tu
Lin Zhang
Yijun Ruan
Xin Jin
Qiqi Liang
Longfu Zhu
Xiaoan Ruan
Yang Lei
Xianlong Zhang
Zhongxu Lin
Source :
Scientific Reports
Publication Year :
2015
Publisher :
Nature Publishing Group, 2015.

Abstract

Gossypium hirsutum contributes the most production of cotton fibre, but G. barbadense is valued for its better comprehensive resistance and superior fibre properties. However, the allotetraploid genome of G. barbadense has not been comprehensively analysed. Here we present a high-quality assembly of the 2.57 gigabase genome of G. barbadense, including 80,876 protein-coding genes. The double-sized genome of the A (or At) (1.50 Gb) against D (or Dt) (853 Mb) primarily resulted from the expansion of Gypsy elements, including Peabody and Retrosat2 subclades in the Del clade and the Athila subclade in the Athila/Tat clade. Substantial gene expansion and contraction were observed and rich homoeologous gene pairs with biased expression patterns were identified, suggesting abundant gene sub-functionalization occurred by allopolyploidization. More specifically, the CesA gene family has adapted differentially temporal expression patterns, suggesting an integrated regulatory mechanism of CesA genes from At and Dt subgenomes for the primary and secondary cellulose biosynthesis of cotton fibre in a “relay race”-like fashion. We anticipate that the G. barbadense genome sequence will advance our understanding the mechanism of genome polyploidization and underpin genome-wide comparison research in this genus.

Details

Language :
English
ISSN :
20452322
Database :
OpenAIRE
Journal :
Scientific Reports
Accession number :
edsair.doi.dedup.....4d93e9562e6ecc56c271d911f647dd7d
Full Text :
https://doi.org/10.1038/srep17662