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首页> 外文期刊>mSystems >Persistent Interactions with Bacterial Symbionts Direct Mature-Host Cell Morphology and Gene Expression in the Squid-Vibrio Symbiosis
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Persistent Interactions with Bacterial Symbionts Direct Mature-Host Cell Morphology and Gene Expression in the Squid-Vibrio Symbiosis

机译:与细菌共生体的持久相互作用直接导致鱿鱼弧菌共生中的成熟宿主细胞形态和基因表达

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In horizontally transmitted symbioses, structural, biochemical, and molecular features both facilitate host colonization by specific symbionts and mediate their persistent carriage. In the association between the squid Euprymna scolopes and its luminous bacterial partner Vibrio fischeri , the symbionts interact with two epithelial fields; they interact (i) transiently with the superficial ciliated field that potentiates colonization and regresses within days of colonization and (ii) persistently with the cells that line the internal crypts, whose ultrastructure changes in response to the symbionts. Development of the association creates conditions that promote the symbiotic partner over the lifetime of the host. To determine whether light organ maturation requires continuous interactions with V. fischeri or only the signaling that occurs during its initiation, we compared 4-week-old squid that were uncolonized with those colonized either persistently by wild-type V. fischeri or transiently by a V. fischeri mutant that triggers early events in morphogenesis but does not persist. Microscopic analysis of the light organs showed that, while morphogenesis of the superficial ciliated field is greatly accelerated by V. fischeri colonization, its eventual outcome is largely independent of colonization state. In contrast, the symbiont-induced changes in crypt cell shape require persistent host-symbiont interaction, reflected in the similarity between uncolonized and transiently colonized animals. Transcriptomic analyses reflected the microscopy results; host gene expression at 4?weeks was due primarily to the persistent interactions of host and symbiont cells. Further, the transcriptomic signature of specific pathways reflected the daily rhythm of symbiont release and regrowth and required the presence of the symbionts. IMPORTANCE A long-term relationship between symbiotic partners is often characterized by development and maturation of host structures that harbor the symbiont cells over the host’s lifetime. To understand the mechanisms involved in symbiosis maintenance more fully, we studied the mature bobtail squid, whose light-emitting organ, under experimental conditions, can be transiently or persistently colonized by Vibrio fischeri or remain uncolonized. Superficial anatomical changes in the organ were largely independent of symbiosis. However, both the microanatomy of cells with which symbionts interact and the patterns of gene expression in the mature animal were due principally to the persistent interactions of host and symbiont cells rather than to a response to early colonization events. Further, the characteristic pronounced daily rhythm on the host transcriptome required persistent V. fischeri colonization of the organ. This experimental study provides a window into how persistent symbiotic colonization influences the form and function of host animal tissues.
机译:在水平传播的共生体中,结构,生化和分子特征都有助于特定共生体定居宿主并介导它们的持续运输。在鱿鱼虾up与其发光细菌伴侣费氏弧菌之间的关联中,共生体与两个上皮区域相互作用。它们与(i)与能在定植后数天内增强定植并消退的表层纤毛场发生短暂相互作用,(ii)与内隐窝内衬的细胞持续相互作用,其内部超微结构会根据共生体发生变化。协会的发展创造了在宿主的一生中促进共生伴侣的条件。为了确定轻器官的成熟是否需要与费氏弧菌进行持续的相互作用或仅要求其启动过程中发生的信号传导,我们比较了未定殖的4周龄鱿鱼与野生型费氏弧菌持续定居的鱿鱼或通过野生型伏氏菌定居的鱿鱼费氏弧菌突变体,可触发形态发生的早期事件,但不会持续存在。轻器官的显微镜分析表明,尽管纤毛虫的定殖大大促进了表面纤毛场的形态发生,但最终的结局很大程度上与定殖状态无关。相反,共生体诱导的隐窝细胞形状变化需要持续的宿主-共生体相互作用,这反映在未定殖和短暂定居的动物之间的相似性上。转录组学分析反映了显微镜结果;宿主基因在4周的表达主要是由于宿主和共生细胞的持续相互作用。此外,特定途径的转录组签名反映了共生体释放和再生的日常节奏,并需要共生体的存在。重要事项共生伴侣之间的长期关系通常以宿主结构的发育和成熟为特征,宿主结构在宿主的整个生命周期中都带有共生细胞。为了更全面地了解共生维持的机制,我们研究了成熟的短尾鱿鱼,在实验条件下,其发光器官可以被费氏弧菌瞬时或持久地定殖或保持未定殖。器官的浅层解剖变化在很大程度上与共生无关。然而,与共生体相互作用的细胞的微观解剖结构和成熟动物中基因表达的模式都主要是由于宿主和共生细胞的持续相互作用,而不是对早期定殖事件的反应。此外,宿主转录组上明显的每日节律特征要求器官持续存在费氏弧菌定植。这项实验研究为了解持久共生定植如何影响宿主动物组织的形式和功能提供了一个窗口。

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