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一种G型凝集素受体样激酶TaSRLK通过调节活性氧信号通路赋予小麦对条锈病的抗性。

A G-type lectin receptor-like kinase TaSRLK confers wheat resistance to stripe rust by regulating the reactive oxygen species signaling pathway.

作者信息

Niu Erbo, Zhang Yibin, Xu Henghao, Xu Bingliang, Liang Qiaolan, Li Huixia, Wang Jiahui

机构信息

College of Plant Protection, Gansu Agricultural University, Lanzhou, 730070, China.

出版信息

Stress Biol. 2025 May 23;5(1):37. doi: 10.1007/s44154-025-00225-w.

Abstract

Wheat stripe rust, caused by an obligate biotrophic pathogen Puccinia striiformis f. sp. tritici (Pst) seriously threatens wheat production. Discovering and utilizing of wheat resistance genes is the most effective and economical method to control diseases. The G-type lectin receptor-like kinase (LecRLKs) involved in biotic stress perception, while their roles in wheat resistance to Pst remain elusive. In our study, we identified 398 G-type LecRKs in wheat through BLAST and HMM profiling. The transcript level of 16 random selected G-type LecRKs from each subfamily were analyzed and found TaSRLK is highly induced by avirulent Pst CYR23 infection. TaSRLK-silenced wheat plants showed reduced resistance to Pst with increased hyphal length and decreased HO accumulation. Surprisingly, TaSRLK was localized to the chloroplast and can induce cell death in Nicotiana benthamiana. Further, TaSRLK was shown to interact with and phosphorylate a peroxidase TaPrx1. Importantly, TaPrx1 involved in wheat resistance to Pst through regulating reactive oxygen species (ROS) production. Together these findings demonstrate that TaSRLK positively modulates ROS-associated wheat resistance by binding with TaPrx1.

摘要

小麦条锈病由专性活体营养型病原菌条形柄锈菌小麦专化型(Pst)引起,严重威胁小麦生产。发现和利用小麦抗性基因是防治病害最有效且经济的方法。G型凝集素受体样激酶(LecRLKs)参与生物胁迫感知,但其在小麦对Pst抗性中的作用仍不清楚。在我们的研究中,通过BLAST和HMM分析在小麦中鉴定出398个G型LecRKs。分析了从每个亚家族随机选择的16个G型LecRKs的转录水平,发现TaSRLK在无毒的Pst CYR23感染下被高度诱导。TaSRLK沉默的小麦植株对Pst的抗性降低,菌丝长度增加,HO积累减少。令人惊讶的是,TaSRLK定位于叶绿体,并且可以在本氏烟草中诱导细胞死亡。此外,TaSRLK被证明与过氧化物酶TaPrx1相互作用并使其磷酸化。重要的是,TaPrx1通过调节活性氧(ROS)的产生参与小麦对Pst的抗性。这些发现共同表明,TaSRLK通过与TaPrx1结合正向调节与ROS相关的小麦抗性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f31/12102409/28bf297cbffd/44154_2025_225_Fig1_HTML.jpg

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