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稻瘟病菌无毒基因的丧失与自然变异导致中国四川盆地水稻抗性基因失效

Loss and Natural Variations of Blast Fungal Avirulence Genes Breakdown Rice Resistance Genes in the Sichuan Basin of China.

作者信息

Hu Zi-Jin, Huang Yan-Yan, Lin Xiao-Yu, Feng Hui, Zhou Shi-Xin, Xie Ying, Liu Xin-Xian, Liu Chen, Zhao Ru-Meng, Zhao Wen-Sheng, Feng Chuan-Hong, Pu Mei, Ji Yun-Peng, Hu Xiao-Hong, Li Guo-Bang, Zhao Jing-Hao, Zhao Zhi-Xue, Wang He, Zhang Ji-Wei, Fan Jing, Li Yan, Peng Yun-Liang, He Min, Li De-Qiang, Huang Fu, Peng You-Liang, Wang Wen-Ming

机构信息

State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University, Chengdu, China.

State Key Laboratory of Agrobiotechnology and Ministry of Agriculture Key Laboratory of Plant Pathology, College of Plant Protection, China Agricultural University, Beijing, China.

出版信息

Front Plant Sci. 2022 Apr 12;13:788876. doi: 10.3389/fpls.2022.788876. eCollection 2022.

Abstract

is the causative agent of rice blast, a devastating disease in rice worldwide. Based on the gene-for-gene paradigm, resistance (R) proteins can recognize their cognate avirulence (AVR) effectors to activate effector-triggered immunity. genes have been demonstrated to evolve rapidly, leading to breakdown of the cognate resistance genes. Therefore, understanding the variation of genes is essential to the deployment of resistant cultivars harboring the cognate genes. In this study, we analyzed the nucleotide sequence polymorphisms of eight known genes, namely, , and in a total of 383 isolates from 13 prefectures in the Sichuan Basin. We detected the presence of , and in the isolates of all the prefectures, but not , and in at least seven prefectures, indicating loss of the three s. We also detected insertions of Pot3, Mg-SINE, and indels in , solo-LTR of Inago2 in , and gene duplications in . Consistently, the isolates that did not harboring were virulent to IRBLa-A, the monogenic line containing , and the isolates with variants of and were virulent to IRBLb-B and IRBLzt-t, the monogenic lines harboring and , respectively, indicating breakdown of resistance by the loss and variations of the avirulence genes. Therefore, the use of blast resistance genes should be alarmed by the loss and nature variations of avirulence genes in the blast fungal population in the Sichuan Basin.

摘要

是稻瘟病的致病因子,稻瘟病是全球水稻上的一种毁灭性病害。基于基因对基因范式,抗性(R)蛋白可识别其同源无毒(AVR)效应子以激活效应子触发的免疫反应。已证明基因进化迅速,导致同源抗性基因失效。因此,了解基因的变异对于部署携带同源基因的抗性品种至关重要。在本研究中,我们分析了来自四川盆地13个县的总共383个分离株中8个已知基因(即、和)的核苷酸序列多态性。我们在所有县的分离株中均检测到、和的存在,但在至少7个县未检测到、和,表明这三个基因缺失。我们还在中检测到Pot3、Mg-SINE的插入以及插入缺失,在中检测到Inago2的单拷贝长末端重复序列(solo-LTR)插入,以及中的基因重复。一致地,不携带的分离株对含有基因的单基因系IRBLa-A具有毒性,而具有和变异的分离株分别对携带和的单基因系IRBLb-B和IRBLzt-t具有毒性,表明无毒基因的缺失和变异导致抗性失效。因此,四川盆地稻瘟病菌群体中无毒基因的缺失和自然变异应引起对稻瘟病抗性基因使用的警惕。

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