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水生迪克氏菌 174/2 的植物病原性及其致病性的早期动态进化。

The phytopathogenic nature of Dickeya aquatica 174/2 and the dynamic early evolution of Dickeya pathogenicity.

机构信息

Univ Lyon, Université Claude Bernard Lyon 1, INSA-Lyon, CNRS, UMR5240, Microbiologie, Adaptation et Pathogénie, 10 Rue Raphaël Dubois, 69622, Villeurbanne, France.

Univ Lyon, Université Claude Bernard Lyon 1, CNRS, UMR5558, Laboratoire de Biométrie et Biologie Évolutive, 43 bd du 11 novembre 1918, 69622, Villeurbanne, France.

出版信息

Environ Microbiol. 2019 Aug;21(8):2809-2835. doi: 10.1111/1462-2920.14627. Epub 2019 Apr 26.

Abstract

Dickeya is a genus of phytopathogenic enterobacterales causing soft rot in a variety of plants (e.g. potato, chicory, maize). Among the species affiliated to this genus, Dickeya aquatica, described in 2014, remained particularly mysterious because it had no known host. Furthermore, while D. aquatica was proposed to represent a deep-branching species among Dickeya genus, its precise phylogenetic position remained elusive. Here, we report the complete genome sequence of the D. aquatica type strain 174/2. We demonstrate the affinity of D. aquatica strain 174/2 for acidic fruits such as tomato and cucumber and show that exposure of this bacterium to acidic pH induces twitching motility. An in-depth phylogenomic analysis of all available Dickeya proteomes pinpoints D. aquatica as the second deepest branching lineage within this genus and reclassifies two lineages that likely correspond to new genomospecies (gs.): Dickeya gs. poaceaephila (Dickeya sp NCPPB 569) and Dickeya gs. undicola (Dickeya sp 2B12), together with a new putative genus, tentatively named Prodigiosinella. Finally, from comparative analyses of Dickeya proteomes, we infer the complex evolutionary history of this genus, paving the way to study the adaptive patterns and processes of Dickeya to different environmental niches and hosts. In particular, we hypothesize that the lack of xylanases and xylose degradation pathways in D. aquatica could reflect adaptation to aquatic charophyte hosts which, in contrast to land plants, do not contain xyloglucans.

摘要

戴克氏菌属是植物病原肠杆菌科的一个属,可引起多种植物(如马铃薯、菊苣、玉米)的软腐病。在该属的相关物种中,2014 年描述的水生戴克氏菌(Dickeya aquatica)特别神秘,因为它没有已知的宿主。此外,虽然 D. aquatica 被提议代表戴克氏菌属中的一个深分枝物种,但它的确切系统发育位置仍不清楚。在这里,我们报告了 D. aquatica 模式株 174/2 的完整基因组序列。我们证明了 D. aquatica 菌株 174/2 对番茄和黄瓜等酸性水果的亲和力,并表明该细菌暴露于酸性 pH 值会诱导扭动运动。对所有可用的戴克氏菌蛋白质组进行深入的系统基因组分析,将 D. aquatica 确定为该属中第二个最深的分支谱系,并重新分类了两个可能对应于新基因组物种(gs.)的谱系:Dickeya gs. poaceaephila(Dickeya sp NCPPB 569)和 Dickeya gs. undicola(Dickeya sp 2B12),以及一个新的假定属,暂命名为 Prodigiosinella。最后,通过对戴克氏菌蛋白质组的比较分析,我们推断出该属的复杂进化历史,为研究戴克氏菌对不同环境小生境和宿主的适应模式和过程铺平了道路。特别是,我们假设 D. aquatica 缺乏木聚糖酶和木糖降解途径可能反映了对水生十字藻宿主的适应,与陆地植物不同,水生十字藻不含有木葡聚糖。

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