穿孔黄单胞菌种群中 XopJ2 效应器的多重获得。

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC ACS Applied Electronic Materials Pub Date : 2024-10-01 Epub Date: 2024-10-28 DOI:10.1094/MPMI-05-24-0048-R
Anuj Sharma, Fernanda Iruegas-Bocardo, Shaheen Bibi, Yun-Chu Chen, Jung-Gun Kim, Peter Abrahamian, Gerald V Minsavage, Jason C Hurlbert, Gary E Vallad, Mary B Mudgett, Jeffrey B Jones, Erica M Goss
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XopJ2b carries an acetyltransferase domain and the critical residues required for its activity, and the positions of these residues are predicted to be conserved in the 3D structure of the proteins. We demonstrated that XopJ2b is a functional T3E and triggers a hypersensitive response (HR) when translocated into pepper cells. Like XopJ2a, XopJ2b triggers HR in <i>Arabidopsis</i> that is suppressed by the deacetylase, SOBER1. We found <i>xopJ2b</i> in genome sequences of <i>X. euvesicatoria</i>, <i>X. citri</i>, <i>X. guizotiae</i>, and <i>X. vasicola</i> strains, suggesting widespread horizontal transfer. In <i>X. perforans</i>, <i>xopJ2b</i> was present in strains collected in North America, Africa, Asia, Australia, and Europe, whereas <i>xopJ2a</i> had a narrower geographic distribution. 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引用次数: 0

摘要

III 型效应器(T3Es)是黄单胞菌毒力的主要决定因素,也是抗性育种的目标。XopJ2(同义 AvrBsT)是一种高度保守的 YopJ 家族 T3E,由 X. perforans(番茄细菌性斑点病的病原体)获得。在这项研究中,我们对 XopJ2 的一个新变体(XopJ2b)进行了鉴定,尽管只有 70% 的序列相同性,但根据预测,该变体与典型的 XopJ2(XopJ2a)具有相似的三维结构。XopJ2b 带有乙酰基转移酶结构域及其活性所需的关键残基,这些残基的位置据预测在蛋白质的三维结构中是保守的。我们证明了 XopJ2b 是一种功能性 T3E,当它转位到辣椒细胞中时可触发超敏反应。与 XopJ2a 一样,XopJ2b 也会在拟南芥中引发 HR,而这种 HR 会受到去乙酰化酶 SOBER1 的抑制。我们在X. euvesicatoria、X. campestris、X. citri、X. guizotiae和X. vasicola菌株的基因组序列中发现了xopJ2b,这表明横向转移非常普遍。在X. perforans中,xopJ2b存在于在北美、南美、非洲、亚洲、澳大利亚和欧洲收集到的菌株中,而xopJ2a的地理分布较窄。这项研究扩大了黄单胞菌 T3E 的范围,证明了 T3E 进化过程中的功能保护,并进一步证实了 XopJ2 对 X. perforans 在番茄上的适应性的重要性。
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Multiple Acquisitions of XopJ2 Effectors in Populations of Xanthomonas perforans.

Type III effectors (T3Es) are major determinants of Xanthomonas virulence and targets for resistance breeding. XopJ2 (synonym AvrBsT) is a highly conserved YopJ-family T3E acquired by X. perforans, the pathogen responsible for bacterial spot disease of tomato. In this study, we characterized a new variant (XopJ2b) of XopJ2, which is predicted to have a similar three-dimensional (3D) structure as the canonical XopJ2 (XopJ2a) despite sharing only 70% sequence identity. XopJ2b carries an acetyltransferase domain and the critical residues required for its activity, and the positions of these residues are predicted to be conserved in the 3D structure of the proteins. We demonstrated that XopJ2b is a functional T3E and triggers a hypersensitive response (HR) when translocated into pepper cells. Like XopJ2a, XopJ2b triggers HR in Arabidopsis that is suppressed by the deacetylase, SOBER1. We found xopJ2b in genome sequences of X. euvesicatoria, X. citri, X. guizotiae, and X. vasicola strains, suggesting widespread horizontal transfer. In X. perforans, xopJ2b was present in strains collected in North America, Africa, Asia, Australia, and Europe, whereas xopJ2a had a narrower geographic distribution. This study expands the Xanthomonas T3E repertoire, demonstrates functional conservation in T3E evolution, and further supports the importance of XopJ2 in X. perforans fitness on tomato. [Formula: see text] Copyright © 2024 The Author(s). This is an open access article distributed under the CC BY-NC-ND 4.0 International license.

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