Suppr超能文献

pFiD188,黄单胞菌 D188 的线性毒性质粒。

pFiD188, the linear virulence plasmid of Rhodococcus fascians D188.

机构信息

Department of Plant Biotechnology and Bioinformatics, VIB, 9052 Gent, Belgium.

出版信息

Mol Plant Microbe Interact. 2012 May;25(5):637-47. doi: 10.1094/MPMI-08-11-0215.

Abstract

Rhodococcus fascians is currently the only phytopathogen of which the virulence genes occur on a linear plasmid. To get insight into the origin of this replicon and into the virulence strategy of this broad-spectrum phytopathogen, the sequence of the linear plasmid of strain D188, pFiD188, was determined. Analysis of the 198,917 bp revealed four syntenic regions with linear plasmids of R. erythropolis, R. jostii, and R. opacus, suggesting a common origin of these replicons. Mutational analysis of pFi_086 and pFi_102, similar to cutinases and type IV peptidases, respectively, showed that conserved region R2 was involved in plasmid dispersal and pointed toward a novel function for actinobacterial cutinases in conjugation. Additionally, pFiD188 had three regions that were unique for R. fascians. Functional analysis of the stk and nrp loci of regions U2 and U3, respectively, indicated that their role in symptom development was limited compared with that of the previously identified fas, att, and hyp virulence loci situated in region U1. Thus, pFiD188 is a typical rhodococcal linear plasmid with a composite structure that encodes core functions involved in plasmid maintenance and accessory functions, some possibly acquired through horizontal gene transfer, implicated in virulence and the interaction with the host.

摘要

黄单胞菌是目前唯一一种其毒性基因位于线性质粒上的植物病原体。为了深入了解这种复制子的起源以及这种广谱植物病原体的毒性策略,我们测定了菌株 D188 的线性质粒 pFiD188 的序列。对 198917bp 的分析揭示了与红游动放线菌、约氏黄杆菌和红球菌的线性质粒有四个同线性区,表明这些复制子有共同的起源。对类似于角质酶和 IV 型肽酶的 pFi_086 和 pFi_102 的突变分析表明,保守区域 R2 参与了质粒的分散,并指向放线菌角质酶在接合中的一个新功能。此外,pFiD188 有三个区域是黄单胞菌所特有的。对 U2 和 U3 区域的 stk 和 nrp 基因座的功能分析表明,与位于 U1 区域的先前鉴定的 fas、att 和 hyp 毒性基因座相比,它们在症状发展中的作用是有限的。因此,pFiD188 是一种典型的具有复合结构的黄单胞菌线性质粒,编码与质粒维持相关的核心功能和一些可能通过水平基因转移获得的辅助功能,这些功能与毒性和与宿主的相互作用有关。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验