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Vertically and horizontally transmitted microbial symbionts shape the gut microbiota ontogenesis of a skin-mucus feeding discus fish progeny

机译:垂直和水平传播的微生物共生体塑造了喂食铁饼鱼后代的粘液肠道微生物群的形成

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摘要

Fish gut microbial communities play key functions for their hosts, but their ontogenesis is poorly understood. Recent studies on the zebrafish suggest that gut symbionts are recruited naturally through horizontal transmission from environmental water. We used an alternative fish model, the discus (Symphysodon aequifasciata), to identify the main factors driving fish gut microbiota ontogenesis. The discus exhibits a unique parenting behavior: both discus parents vertically feed their fry with a cutaneous mucus secretion during three weeks post-hatching. We hypothesized that vertical microbial transmission via parental mucus feeding, along with horizontal transmission of environmental microbial symbionts, helps to shape the taxonomic structure of the discus fry gut microbiota. To assess this premise, we thoroughly documented the gut microbiota ontogenesis of a discus progeny during 100 days post-hatching. The V4 16S rRNA gene was sequenced to assess taxonomic structure of fry gut, parent mucus, and water samples. Our main results suggest that specific microbial symbionts both from the parents skin mucus and environmental water play important roles in shaping the structure of the fry gut microbiota.
机译:鱼肠微生物群落对其宿主起关键作用,但对其致癌作用了解甚少。最近对斑马鱼的研究表明,肠道共生体是通过从环境水中水平传播而自然招募的。我们使用了另一种鱼类模型铁饼(Symphysodon aequifasciata)来确定驱动鱼类肠道微生物群发生的主要因素。铁饼表现出独特的育儿行为:在孵化后的三周内,两个铁饼父母都会用皮肤粘液分泌物垂直喂养他们的鱼苗。我们假设通过父母粘液喂养的垂直微生物传播,以及环境微生物共生体的水平传播,有助于塑造铁饼炒肠微生物群的分类结构。为了评估这一前提,我们在孵化后100天内彻底记录了铁饼后代的肠道微生物群发生。对V4 16S rRNA基因进行测序,以评估鱼苗肠,母液和水样的分类结构。我们的主要结果表明,来自父母皮肤粘液和环境水的特定微生物共生体在塑造油炸肠微生物群的结构中起着重要作用。

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