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The First Temporal and Spatial Assessment of Vibrio Diversity of the Surrounding Seawater of Coral Reefs in Ishigaki Japan

机译:日本石垣岛首次对珊瑚礁周围海水的弧菌多样性进行时空评估

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摘要

Coral reefs perform a major role in regulating marine biodiversity and serve as hotspot for highly dynamic and diverse microbiomes as holobionts. Corals around Ishigaki, however, are at risk due to tremendous stressors including elevation of seawater temperature, eutrophication and so on. However, no information is currently available on how Vibrio diversity fluctuates spatially and temporally due to environmental determinants in Ishigaki coral reef ecosystems. The aim of this study is to elucidate spatiotemporal Vibrio diversity dynamic at both community and population levels and to assess the environmental drivers correlated to Vibrio abundance and diversity. The Vibrio community identified based on pyrH gene phylogeny of 685 isolates from seawater directly connecting to Ishigaki coral holobionts consisted of 22 known and 12 potential novel Vibrionaceae species. The most prominent species were V. hyugaensis, V. owensii and V. harveyi followed by V. maritimus/V. variabillis, V. campbellii, V. coralliilyticus, and Photobacterium rosenbergii. The Vibrio community fluctuations, assessed by PCoA with UniFrac distance and clustering with Euclidiean distance were varied less not only by year but also by site. Interestingly, significant positive correlation was observed between rising seawater temperature and the abundance of V. campbellii (r = 0.62; P < 0.05) whereas the opposite was observed for V. owensii (r = -0.58; P < 0.05) and the C6 group of V. hyugaensis (r = -0.62; P < 0.05). AdaptML-based microhabitat differentiation revealed that V. harveyi, V. campbellii, P. rosenbergii, and V. coralliilyticus populations were less-ecologically distinctive whereas V. astriarenae and V. ishigakensis were ecologically diverse. This knowledge could be important clue for the future actions of coral conservation.
机译:珊瑚礁在调节海洋生物多样性方面发挥着重要作用,并作为高动态生物,成为高度动态和多样化微生物群落的热点。然而,由于巨大的压力,包括海水温度升高,富营养化等,石垣周围的珊瑚正处于危险之中。但是,由于石垣珊瑚礁生态系统中的环境决定因素,弧菌多样性如何在空间和时间上波动目前尚无相关信息。这项研究的目的是阐明社区和人口水平的时空弧菌多样性动态,并评估与弧菌丰度和多样性相关的环境驱动因素。根据pyrH基因系统发育鉴定的685种分离自海水的菌群,这些菌群直接与石垣珊瑚全缘连接,由22种已知和12种潜在的新型弧菌科组成。最突出的物种是V. hyugaensis,V。owensii和V. harveyi,然后是V. maritimus / V。 variabillis,V。campbellii,V.coralliilyticus和Rosenbergii细菌。由PCoA用UniFrac距离评估和在Euclidiean距离聚类中评估的弧菌群落波动不仅每年变化,而且地点不同。有趣的是,海水温度升高与坎贝氏弧菌的丰度之间存在显着的正相关关系(r = 0.62; P <0.05),而 V则相反。 owensii r = -0.58; P <0.05)和C6组 V。 hyugaensis r = -0.62; P <0.05)。基于AdaptML的微生境分化表明 V。 harveyi V。 Campbellii P。罗森伯格(Rosenbergii) V。珊瑚虫种群的生态学特征较弱,而 V种群。星云藻 V。石垣种在生态上是多样的。这些知识可能是未来珊瑚保护行动的重要线索。

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