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Dickeya zeae 的基因组和功能剖析揭示了 III 型分泌系统和细胞壁降解酶在宿主范围和毒力中的作用。

Genomic and Functional Dissections of Dickeya zeae Shed Light on the Role of Type III Secretion System and Cell Wall-Degrading Enzymes to Host Range and Virulence.

机构信息

Guangdong Laboratory for Lingnan Modern Agriculture, Guangdong Province Key Laboratory of Microbial Signals and Disease Control, Integrative Microbiology Research Center, South China Agricultural Universitygrid.20561.30, Guangzhou, China.

Department of Microbiology, University of Washington School of Medicine, Seattle, Washington, United States.

出版信息

Microbiol Spectr. 2022 Feb 23;10(1):e0159021. doi: 10.1128/spectrum.01590-21. Epub 2022 Feb 2.

Abstract

Dickeya zeae is a worldwide destructive pathogen that causes soft rot diseases on various hosts such as rice, maize, banana, and potato. The strain JZL7 we recently isolated from clivia represents the first monocot-specific D. zeae and also has reduced pathogenicity compared to that of other . strains (e.g., EC1 and MS2). To elucidate the molecular mechanisms underlying its more restricted host range and weakened pathogenicity, we sequenced the complete genome of JZL7 and performed comparative genomic and functional analyses of JZL7 and other . strains. We found that, while having the largest genome among . strains, JZL7 lost almost the entire type III secretion system (T3SS), which is a key component of the virulence suite of many bacterial pathogens. Importantly, the deletion of T3SS in MS2 substantially diminished the expression of most type III secreted effectors (T3SEs) and MS2's pathogenicity on both dicots and monocots. Moreover, although JZL7 and MS2 share almost the same repertoire of cell wall-degrading enzymes (CWDEs), we found broad reduction in the production of CWDEs and expression levels of CWDE genes in JZL7. The lower expression of CWDEs, pectin lyases in particular, would probably make it difficult for JZL7 to break down the cell wall of dicots, which is rich in pectin. Together, our results suggest that the loss of T3SS and reduced CWDE activity together might have contributed to the host specificity and virulence of JZL7. Our findings also shed light on the pathogenic mechanism of and other soft rot species in general. Dickeya zeae is an important, aggressive bacterial phytopathogen that can cause severe diseases in many crops and ornamental plants, thus leading to substantial economic losses. Strains from different sources showed significant diversity in their natural hosts, suggesting complicated evolution history and pathogenic mechanisms. However, molecular mechanisms that cause the differences in the host range of . strains remain poorly understood. This study carried out genomic and functional dissections of JZL7, a . strain with restricted host range, and revealed type III secretion system (T3SS) and cell wall-degrading enzymes (CWDEs) as two major factors contributing to the host range and virulence of . , which will provide a valuable reference for the exploration of pathogenic mechanisms in other bacteria and present new insights for the control of bacterial soft rot diseases on crops.

摘要

迪克氏菌是一种具有全球破坏性的病原体,可导致水稻、玉米、香蕉和土豆等各种宿主发生软腐病。我们最近从朱顶兰中分离出的菌株 JZL7 代表了第一个单子叶植物特异性的迪克氏菌,与其他菌株(如 EC1 和 MS2)相比,其致病性降低。为了阐明其宿主范围更受限和致病性减弱的分子机制,我们对 JZL7 的全基因组进行了测序,并对 JZL7 和其他菌株进行了比较基因组和功能分析。我们发现,虽然 JZL7 的基因组是迪克氏菌中最大的,但它几乎失去了整个 III 型分泌系统(T3SS),而 T3SS 是许多细菌病原体毒力套件的关键组成部分。重要的是,MS2 中 T3SS 的缺失极大地降低了大多数 III 型分泌效应物(T3SE)的表达和 MS2 在双子叶植物和单子叶植物上的致病性。此外,尽管 JZL7 和 MS2 共享几乎相同的细胞壁降解酶(CWDE) repertoire,但我们发现 JZL7 中 CWDE 的产生和 CWDE 基因的表达水平广泛降低。CWDE,特别是果胶裂解酶的低表达可能使 JZL7 难以分解富含果胶的双子叶植物细胞壁。总之,我们的结果表明 T3SS 的缺失和 CWDE 活性的降低可能共同导致了 JZL7 的宿主特异性和毒力。我们的研究结果还揭示了一般软腐病和其他软腐病菌的致病机制。迪克氏菌是一种重要的、侵袭性的植物细菌性病原体,可导致许多作物和观赏植物发生严重疾病,从而导致重大经济损失。来自不同来源的菌株在其自然宿主中的多样性表明,其进化历史和致病机制较为复杂。然而,导致菌株宿主范围差异的分子机制仍知之甚少。本研究对 JZL7 进行了基因组和功能剖析,JZL7 是一种宿主范围受限的菌株,揭示了 III 型分泌系统(T3SS)和细胞壁降解酶(CWDEs)是导致菌株宿主范围和毒力的两个主要因素。这将为探索其他细菌的致病机制提供有价值的参考,并为控制作物细菌性软腐病提供新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5edb/8809351/1af7ebe08852/spectrum.01590-21-f001.jpg

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