生物
基因
遗传学
山羊草
基因组
同源(生物学)
普通小麦
系统发育树
基因表达
染色体
作者
Pengzheng Lei,Xiu-Lan Wei,Ruiting Gao,Fulin Huo,Xiaojun Nie,Wei Tong,Weining Song
出处
期刊:Genomics
[Elsevier]
日期:2020-12-13
卷期号:113 (2): 854-866
被引量:50
标识
DOI:10.1016/j.ygeno.2020.12.017
摘要
Here, 38 wheat PYL genes (TaPYLs) belonging to 13 homoeologous groups were identified using the genome-search method, with 26 and 12 PYL genes identified in Triticum dicoccoides and Aegilops tauschii, respectively. Phylogenetic relationship, conserved domain and molecular evolution analysis revealed that PYL genes showed highly conservative between wheat and theprogenitors. Interaction network and miRNA target prediction found that TaPYLs could interact with the important components of ABA signaling pathway and Tae-miR966b-3p might be a hub regulator mediating wheat ABA signal network. Furthermore, the tissue-specific and stress-responsive TaPYLs were detected through RNA-seq analysis. Expressions of 10 TaPYLs were validated by QPCR analysis and the homoeologous genes showed significantly differential expression, suggesting subfunctionalization of them has occurred. Finally, 3D structures of the TaPYL proteins were predicted by homology modeling. This study lays the foundation for further functional study of PYL genes for development and stress tolerance improvement in wheat and beyond.
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