白粉病
生物
基因
遗传学
亚科
基因组
基因家族
系统发育树
圈套复合体
植物抗病性
基因表达
植物
脂质双层融合
病毒
作者
Guanghao Wang,Deyu Long,Fagang Yu,Hong Zhang,Chunhuan Chen,Yajuan Wang,Wanquan Ji
出处
期刊:PeerJ
[PeerJ]
日期:2021-01-22
卷期号:9: e10788-e10788
被引量:6
摘要
SNARE proteins mediate eukaryotic cell membrane/transport vesicle fusion and act in plant resistance to fungi. Herein, 173 SNARE proteins were identified in wheat and divided into 5 subfamilies and 21 classes. The number of the SYP1 class type was largest in TaSNAREs . Phylogenetic tree analysis revealed that most of the SNAREs were distributed in 21 classes. Analysis of the genetic structure revealed large differences among the 21 classes, and the structures in the same group were similar, except across individual genes. Excluding the first homoeologous group, the number in the other homoeologous groups was similar. The 2,000 bp promoter region of the TaSNARE genes were analyzed, and many W-box, MYB and disease-related cis-acting elements were identified. The qRT-PCR-based analysis of the SNARE genes revealed similar expression patterns of the same subfamily in one wheat variety. The expression patterns of the same gene in resistant/sensitive varieties largely differed at 6 h after infection, suggesting that SNARE proteins play an important role in early pathogen infection. Here, the identification and expression analysis of SNARE proteins provide a theoretical basis for studies of SNARE protein function and wheat resistance to powdery mildew.
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