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番茄细菌性斑点病菌 1 号生理小种的分子和进化分析。

Molecular and evolutionary analyses of Pseudomonas syringae pv. tomato race 1.

机构信息

Department of Plant Pathology, University of California-Davis, Davis 95616, USA.

出版信息

Mol Plant Microbe Interact. 2010 Apr;23(4):415-24. doi: 10.1094/MPMI-23-4-0415.

Abstract

Pseudomonas syringae pv. tomato, the causal agent of bacterial speck of tomato, has recently become an increasing problem in California due to the evolution and prevalence of highly aggressive race 1 strains. In resistant plant genotypes, the type III effectors AvrPto and AvrPtoB are recognized by the tomato proteins Pto and Prf. We investigated the prevalence of avrPto and avrPtoB in strains collected over the last 13 years in California. All race 1 strains retained avrPtoB but did not express AvrPtoB protein at detectable levels in vitro. However, deletion of avrPtoB indicated that this effector protein is still expressed at low levels in race 1 during infection. avrPto was detected in four race 1 strains but a key amino acid polymorphism prevents this new protein from interacting with and eliciting Pto-mediated resistance. Growth curve analyses demonstrate that this new avrPto allele is still functional and can enhance P. syringae virulence on tomato. Multilocus sequence typing was used to resolve phylogenetic relationships and revealed that the majority of race 0 and 1 strains were most closely related to P. syringae T1. Collectively, these data support the hypothesis that existing P. syringae populations evolved to overcome genetic resistance by altering the expression and sequence of avrPto and avrPtoB effectors.

摘要

番茄丁香假单胞菌 pv. 番茄,番茄细菌性斑点病的病原体,由于高度侵袭性 1 型菌株的进化和流行,最近在加利福尼亚州成为一个日益严重的问题。在抗性植物基因型中,III 型效应物 AvrPto 和 AvrPtoB 被番茄蛋白 Pto 和 Prf 识别。我们调查了过去 13 年来在加利福尼亚州收集的菌株中 avrPto 和 avrPtoB 的流行情况。所有 1 型菌株都保留了 avrPtoB,但在体外不能检测到 AvrPtoB 蛋白的表达水平。然而,avrPtoB 的缺失表明,这种效应蛋白在感染期间仍以低水平在 1 型中表达。在 4 种 1 型菌株中检测到 avrPto,但一个关键的氨基酸多态性阻止了这种新蛋白与 Pto 相互作用并引发抗性。生长曲线分析表明,这个新的 avrPto 等位基因仍然具有功能,可以增强 P. syringae 对番茄的毒力。多位点序列分型用于解决系统发育关系,并揭示大多数 0 型和 1 型菌株与 P. syringae T1 最为密切相关。总的来说,这些数据支持了这样一种假设,即现有的丁香假单胞菌种群通过改变 avrPto 和 avrPtoB 效应物的表达和序列,进化以克服遗传抗性。

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