质粒编码并能调动洋葱在泛菌凝聚体中的致病性。

IF 10.8 1区 环境科学与生态学 Q1 ECOLOGY
Gi Yoon Shin, Jo Ann Asselin, Amy Smith, Brenna Aegerter, Teresa Coutinho, Mei Zhao, Bhabesh Dutta, Jennie Mazzone, Ram Neupane, Beth Gugino, Christy Hoepting, Manzeal Khanal, Subas Malla, Claudia Nischwitz, Jaspreet Sidhu, Antoinette Machado Burke, Jane Davey, Mark Uchanski, Michael L Derie, Lindsey J du Toit, Stephen Stresow-Cortez, Jean M Bonasera, Paul Stodghill, Brian Kvitko
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引用次数: 0

摘要

Pantoea agglomerans是美国报道的引起洋葱鳞茎细菌腐烂的四种Pantoea之一。然而,并不是所有的团聚假单胞菌都对洋葱有致病性。我们鉴定了洋葱相关的团聚假单胞菌菌株,以阐明洋葱致病性团聚假单胞菌的遗传和基因组特征。我们从美国11个州的公共培养收藏、研究实验室和多年调查中收集了与症状洋葱植物和鳞茎相关的bbb300株团聚单胞菌。结合87个基因组组合和100个高质量、公开的团聚假单胞菌基因组组合,我们确定了两个得到良好支持的团聚假单胞菌系统群。引起洋葱严重症状的菌株仅在系统群II中被鉴定出来,并编码了HiVir panaphos生物合成簇,支持HiVir作为致病因子的作用。聚珠假单胞菌HiVir基因簇在两种不同的质粒环境中编码:1)作为保守的聚珠假单胞菌质粒(pAggl)上的辅助基因簇,或2)在洋葱菌株中常见的质粒镶嵌簇(pOnion)上编码。封闭基因组分析表明,pOnion质粒中含有对硫代亚硫酸allium的防御化学耐受的所有基因和许多对铜的抗性基因。我们证明了pOnion质粒pCB1C可以作为一种天然可动员的致病性质粒,将P. agglomerans系统群I菌株(包括环境菌株)转化为洋葱的毒力病原体。这项工作表明,质粒和质粒生态学在介导团聚假单胞菌与洋葱植物的相互作用中起着核心作用,对洋葱细菌性疾病的管理具有潜在的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Plasmids encode and can mobilize onion pathogenicity in Pantoea agglomerans.

Pantoea agglomerans is one of four Pantoea species reported in the USA to cause bacterial rot of onion bulbs. However, not all P. agglomerans strains are pathogenic to onion. We characterized onion-associated strains of P. agglomerans to elucidate the genetic and genomic signatures of onion-pathogenic P. agglomerans. We collected >300 P. agglomerans strains associated with symptomatic onion plants and bulbs from public culture collections, research laboratories, and a multi-year survey in 11 states in the USA. Combining the 87 genome assemblies with 100 high-quality, public P. agglomerans genome assemblies we identified two well-supported P. agglomerans phylogroups. Strains causing severe symptoms on onion were only identified in Phylogroup II and encoded the HiVir pantaphos biosynthetic cluster, supporting the role of HiVir as a pathogenicity factor. The P. agglomerans HiVir cluster was encoded in two distinct plasmid contexts: (i) as an accessory gene cluster on a conserved P. agglomerans plasmid (pAggl), or (ii) on a mosaic cluster of plasmids common among onion strains (pOnion). Analysis of closed genomes revealed that the pOnion plasmids harbored alt genes conferring tolerance to Allium thiosulfinate defensive chemistry and many harbored cop genes conferring resistance to copper. We demonstrated that the pOnion plasmid pCB1C can act as a natively mobilizable pathogenicity plasmid that transforms P. agglomerans Phylogroup I strains, including environmental strains, into virulent pathogens of onion. This work indicates a central role for plasmids and plasmid ecology in mediating P. agglomerans interactions with onion plants, with potential implications for onion bacterial disease management.

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来源期刊
ISME Journal
ISME Journal 环境科学-生态学
CiteScore
22.10
自引率
2.70%
发文量
171
审稿时长
2.6 months
期刊介绍: The ISME Journal covers the diverse and integrated areas of microbial ecology. We encourage contributions that represent major advances for the study of microbial ecosystems, communities, and interactions of microorganisms in the environment. Articles in The ISME Journal describe pioneering discoveries of wide appeal that enhance our understanding of functional and mechanistic relationships among microorganisms, their communities, and their habitats.
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