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新型无毒力效应物 AlAvr1 介导菜豆壳球孢菌在小扁豆中致病变种的寄主品种特异性。

The novel avirulence effector AlAvr1 from Ascochyta lentis mediates host cultivar specificity of ascochyta blight in lentil.

机构信息

Centre for Crop and Disease Management, School of Molecular and Life Sciences, Curtin University, Bentley, Western Australia, Australia.

South Australian Research and Development Institute, Department of Primary Industries and Regions - Government of South Australia, Urrbrae, Adelaide, South Australia, Australia.

出版信息

Mol Plant Pathol. 2022 Jul;23(7):984-996. doi: 10.1111/mpp.13203. Epub 2022 Mar 4.

Abstract

Ascochyta lentis is a fungal pathogen that causes ascochyta blight in the important grain legume species lentil, but little is known about the molecular mechanism of disease or host specificity. We employed a map-based cloning approach using a biparental A. lentis population to clone the gene AlAvr1-1 that encodes avirulence towards the lentil cultivar PBA Hurricane XT. The mapping population was produced by mating A. lentis isolate P94-24, which is pathogenic on the cultivar Nipper and avirulent towards Hurricane, and the isolate AlKewell, which is pathogenic towards Hurricane but not Nipper. Using agroinfiltration, we found that AlAvr1-1 from the isolate P94-24 causes necrosis in Hurricane but not in Nipper. The homologous corresponding gene in AlKewell, AlAvr1-2, encodes a protein with amino acid variation at 23 sites and four of these sites have been positively selected in the P94-24 branch of the phylogeny. Loss of AlAvr1-1 in a gene knockout experiment produced a P94-24 mutant strain that is virulent on Hurricane. Deletion of AlAvr1-2 in AlKewell led to reduced pathogenicity on Hurricane, suggesting that the gene may contribute to disease in Hurricane. Deletion of AlAvr1-2 did not affect virulence for Nipper and AlAvr1-2 is therefore not an avirulence gene for Nipper. We conclude that the hemibiotrophic pathogen A. lentis has an avirulence effector, AlAvr1-1, that triggers a hypersensitive resistance response in Hurricane. This is the first avirulence gene to be characterized in a legume pathogen from the Pleosporales and may help progress research on other damaging Ascochyta pathogens.

摘要

豌豆壳球腔菌是一种真菌病原体,可导致重要的粮食豆类作物兵豆发生壳球腔菌叶斑病,但人们对其致病分子机制或宿主特异性知之甚少。我们利用一个双亲和豌豆壳球腔种群进行基于图谱的克隆方法,克隆了编码对兵豆品种 PBA Hurricane XT 无毒的基因 AlAvr1-1。该作图群体是由交配 A. lentis 分离株 P94-24 产生的,该分离株对品种 Nipper 具有致病性,对 Hurricane 则无毒,而分离株 AlKewell 对 Hurricane 具有致病性,对 Nipper 则无毒。通过农杆菌浸润,我们发现来自 P94-24 分离株的 AlAvr1-1 在 Hurricane 中引起坏死,但在 Nipper 中则不会。AlKewell 中的同源对应基因 AlAvr1-2 编码一种蛋白质,其在 23 个位点具有氨基酸变异,其中四个位点在系统发育树的 P94-24 分支中受到正选择。在基因敲除实验中缺失 AlAvr1-1 会产生对 Hurricane 具有毒力的 P94-24 突变株。在 AlKewell 中缺失 AlAvr1-2 会导致对 Hurricane 的致病性降低,表明该基因可能对 Hurricane 中的疾病有贡献。缺失 AlAvr1-2 不会影响对 Nipper 的毒力,因此 AlAvr1-2 不是 Nipper 的无毒基因。我们的结论是,半活体病原体豌豆壳球腔菌有一种无毒效应物 AlAvr1-1,它在 Hurricane 中触发过敏反应性抗性反应。这是首次在 Pleosporales 属的豆科植物病原体中鉴定出无毒基因,可能有助于推进其他破坏性壳球腔菌病原体的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b119/9190972/24d1d1569f97/MPP-23-984-g004.jpg

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