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首页> 外文期刊>Environmental microbiology >Selection of Vibrio crassostreae relies on a plasmid expressing a type 6 secretion system cytotoxic for host immune cells
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Selection of Vibrio crassostreae relies on a plasmid expressing a type 6 secretion system cytotoxic for host immune cells

机译:选择克拉西菌依赖于表达6型分泌系统细胞毒性的质粒,用于宿主免疫细胞

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摘要

Pacific oyster mortality syndrome affects juveniles of Crassostrea gigas oysters and threatens the sustainability of commercial and natural stocks of this species. Vibrio crassostreae (V. crassostreae) has been repeatedly isolated from diseased animals, and the majority of the strains have been demonstrated to be virulent for oysters. In this study, we showed that oyster farms exhibited a high prevalence of a virulence plasmid carried by V. crassostreae, while oysters, at an adult stage, were reservoirs of this virulent population. The pathogenicity of V. crassostreae depends on a novel transcriptional regulator, which activates the bidirectional promoter of a type 6 secretion system (T6SS) genes cluster. Both the T6SS and a second chromosomal virulence factor, r5.7, are necessary for virulence but act independently to cause haemocyte (oyster immune cell) cytotoxicity. A phylogenetically closely related T6SS was identified in V. aestuarianus and V. tapetis, which infect adult oysters and clams respectively. We propose that haemocyte cytotoxicity is a lethality trait shared by a broad range of mollusc pathogens, and we speculate that T6SS was involved in parallel evolution of pathogen for molluscs.
机译:太平洋牡蛎死亡率综合征影响了鲫鱼的青少年,并威胁了该物种商业和自然股的可持续性。 Vibrio Crassostreae(V.Crassostreae)已经反复从患病的动物中分离出来,并且已经证明大多数菌株对牡蛎是毒性的。在这项研究中,我们表明,牡蛎农场的戏剧性质粒患病率很高,而V.Crassostreae携带的毒力质粒,而在成人阶段,牡蛎是这种毒性人群的储层。 V.Crassostreae的致病性取决于新的转录调节剂,其激活6型分泌系统(T6SS)基因簇的双向启动子。 T6SS和第二染色体毒力因子R5.7都是毒力所必需的,但独立起作用以引起血细胞(Oyster免疫细胞)细胞毒性。在V. aestuaranus和V.Papetis中鉴定了一种体内密切相关的T6S分别感染成人牡蛎和蛤蜊。我们提出血细胞细胞毒性是由广泛的软体动物病原体共享的致命性状,并且我们推测T6SS参与MOLLUSC的病原体的平行演变。

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  • 来源
    《Environmental microbiology》 |2020年第10期|共14页
  • 作者单位

    IFREMER Unite Physiol Fonct Organismes Marins ZI Point Di CS 10070 F-29280 Plouzane France;

    UPMC Paris 06 Sorbonne Univ CNRS Integrat Biol Marine Models Stn Biol Roscoff UMR CS 90074 F-29688 Roscoff France;

    IFREMER Unite Physiol Fonct Organismes Marins ZI Point Di CS 10070 F-29280 Plouzane France;

    IFREMER Unite Physiol Fonct Organismes Marins ZI Point Di CS 10070 F-29280 Plouzane France;

    Inst Univ Europeen Mer UMR CNRS UBO IRD IFREMER 6539 Lab Sci Environm Marin Technopole Brest Iroise Rue Dumont Urville F-29280 Plouzane France;

    UPMC Paris 06 Sorbonne Univ CNRS Integrat Biol Marine Models Stn Biol Roscoff UMR CS 90074 F-29688 Roscoff France;

    UPMC Paris 06 Sorbonne Univ CNRS Integrat Biol Marine Models Stn Biol Roscoff UMR CS 90074 F-29688 Roscoff France;

    IFREMER Unite Physiol Fonct Organismes Marins ZI Point Di CS 10070 F-29280 Plouzane France;

    Helmholtz Zentrum Polar &

    Meeresforsch AWI Wadden Sea Stn Sylt Coastal Ecol Hafenstr 43 D-25992 List Auf Sylt Germany;

    Ecole Polytech Fed Lausanne Global Hlth Inst Lab Mol Microbiol Sch Life Sci CH-1015 Lausanne Switzerland;

    Ecole Polytech Fed Lausanne Global Hlth Inst Lab Mol Microbiol Sch Life Sci CH-1015 Lausanne Switzerland;

    IFREMER Unite Physiol Fonct Organismes Marins ZI Point Di CS 10070 F-29280 Plouzane France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;
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