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功能基因组学和比较谱系特异性区域分析揭示了轮枝菌种间差异的新见解。

Functional Genomics and Comparative Lineage-Specific Region Analyses Reveal Novel Insights into Race Divergence in Verticillium dahliae.

机构信息

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protectiongrid.460599.7, Chinese Academy of Agricultural Sciences, Beijing, China.

Graduate School of Horticulture, Chiba University, Matsudo City, Japan.

出版信息

Microbiol Spectr. 2021 Dec 22;9(3):e0111821. doi: 10.1128/Spectrum.01118-21.

Abstract

Verticillium dahliae is a widespread soilborne fungus that causes Verticillium wilt on numerous economically important plant species. In tomato, until now, three races have been characterized based on the response of differential cultivars to V. dahliae, but the genetic basis of race divergence in V. dahliae remains undetermined. To investigate the genetic basis of race divergence, we sequenced the genomes of two race 2 strains and four race 3 strains for comparative analyses with two known race 1 genomes. The genetic basis of race divergence was described by the pathogenicity-related genes among the three races, orthologue analyses, and genomic structural variations. Global comparative genomics showed that chromosomal rearrangements are not the only source of race divergence and that race 3 should be split into two genotypes based on orthologue clustering. Lineage-specific regions (LSRs), frequently observed between genomes of the three races, encode several predicted secreted proteins that potentially function as suppressors of immunity triggered by known effectors. These likely contribute to the virulence of the three races. Two genes in particular that can act as markers for race 2 and race 3 ( and , respectively) contribute to virulence on tomato, and the latter acts as an avirulence factor of race 3. We elucidated the genetic basis of race divergence through global comparative genomics and identified secreted proteins in LSRs that could potentially play critical roles in the differential virulence among the races in V. dahliae. Deciphering the gene-for-gene relationships during host-pathogen interactions is the basis of modern plant resistance breeding. In the Verticillium dahliae-tomato pathosystem, two races (races 1 and 2) and their corresponding avirulence () genes have been identified, but strains that lack these two genes exist in nature. In this system, race 3 has been described, but the corresponding gene has not been identified. We -sequenced genomes of six strains and identified secreted proteins within the lineage-specific regions (LSRs) distributed among the genomes of the three races that could potentially function as manipulators of host immunity. One of the LSR genes, , was confirmed as the gene for race 3. The results indicate that differences in transcriptional regulation may contribute to race differentiation. This is the first study to describe these differences and elucidate roles of secreted proteins in LSRs that play roles in race differentiation.

摘要

青枯雷尔氏菌是一种广泛分布的土壤真菌,可引起许多重要经济植物物种的青枯病。在番茄中,到目前为止,已经根据不同品种对青枯雷尔氏菌的反应特征描述了三个生理小种,但青枯雷尔氏菌生理小种分化的遗传基础仍不清楚。为了研究生理小种分化的遗传基础,我们对两个生理小种 2 的菌株和四个生理小种 3 的菌株进行了测序,并与两个已知的生理小种 1 的基因组进行了比较分析。通过三个生理小种的致病性相关基因、直系同源分析和基因组结构变异来描述生理小种分化的遗传基础。全基因组比较显示,染色体重排并不是生理小种分化的唯一来源,而且基于直系同源聚类,生理小种 3 应该分为两个基因型。在三个生理小种之间经常观察到的谱系特异性区域(LSRs)编码了几个预测的分泌蛋白,这些蛋白可能作为已知效应子触发的免疫的抑制剂,从而可能有助于三个生理小种的毒力。两个特别的基因(分别为和)可以作为生理小种 2 和生理小种 3 的标记基因,对番茄的致病性有贡献,后者是生理小种 3 的无毒基因。我们通过全基因组比较基因组学阐明了生理小种分化的遗传基础,并鉴定了 LSR 中的分泌蛋白,这些蛋白可能在青枯雷尔氏菌不同生理小种的差异毒力中发挥关键作用。在寄主-病原物互作中,基因-基因关系的破译是现代植物抗性育种的基础。在青枯雷尔氏菌-番茄病理系统中,已经鉴定出两个生理小种(生理小种 1 和 2)及其相应的无毒基因(),但自然界中存在缺乏这两个基因的菌株。在这个系统中,已经描述了生理小种 3,但尚未鉴定出相应的无毒基因。我们对六个菌株的基因组进行了测序,并在三个生理小种的基因组中鉴定出了谱系特异性区域(LSRs)中的分泌蛋白,这些蛋白可能作为寄主免疫的调控因子。LSRs 中的一个基因()被确认为生理小种 3 的无毒基因。结果表明,转录调控的差异可能导致生理小种的分化。这是第一个描述这些差异并阐明 LSRs 中分泌蛋白在生理小种分化中作用的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1d4/8694104/f78f2b7c2e87/spectrum.01118-21-f001.jpg

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