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沿海池塘中的浮游细菌群落反映了水文和地貌环境的影响。

Bacterioplankton assemblages in coastal ponds reflect the influence of hydrology and geomorphological setting.

作者信息

Huggett Megan J, Kavazos Christopher R J, Bernasconi Rachele, Czarnik Robert, Horwitz Pierre

机构信息

Centre for Ecosystem Management, School of Science, Edith Cowan University, 270 Joondalup Dr, Joondalup, WA 6027, Australia.

Centre for Marine Ecosystems Research, School of Science, Edith Cowan University, 270 Joondalup Dr, Joondalup, WA 6027, Australia.

出版信息

FEMS Microbiol Ecol. 2017 Jun 1;93(6). doi: 10.1093/femsec/fix067.

Abstract

The factors that shape microbial community assembly in aquatic ecosystems have been widely studied; yet it is still unclear how distinct communities within a connected landscape influence one another. Coastal lakes are recipients of, and thus are connected to, both marine and terrestrial environments. Thus, they may host microbial assemblages that reflect the relative degree of influence by, and connectivity to, either system. In order to address this idea, we interrogated microbial community diversity at 49 sites in seven ponds in two seasons in the Lake MacLeod basin, a system fed by seawater flowing inland through underground karst. Environmental and spatial variation within ponds explain <9% of the community structure, while identity of the pond that samples were taken from explains 50% of community variation. That is, ponds each host distinct assemblages despite similarities in size, environment and position in the landscape, indicating a dominant role for local species sorting. The ponds contain a substantial amount of previously unknown microbial taxa, reflecting the unusual nature of this inland system. Rare marine taxa, possibly dispersed from seawater assemblages via the underground karst connection, are abundant within the inland system, suggesting an important role for regional dispersal within the metacommunities.

摘要

塑造水生生态系统中微生物群落组装的因素已得到广泛研究;然而,在一个相互连接的景观中,不同群落之间如何相互影响仍不清楚。沿海湖泊是海洋和陆地环境的接受者,因此与这两个环境都有联系。因此,它们可能拥有反映任一系统影响程度和连通性的相对程度的微生物组合。为了验证这一观点,我们在麦克劳德湖流域的七个池塘中的49个地点,于两个季节对微生物群落多样性进行了调查,该系统由通过地下岩溶流入内陆的海水供给。池塘内的环境和空间变化对群落结构的解释率不到9%,而采样池塘的身份对群落变化的解释率为50%。也就是说,尽管池塘在大小、环境和景观位置上相似,但每个池塘都拥有独特的组合,这表明本地物种分选起主导作用。这些池塘包含大量以前未知的微生物分类群,反映了这个内陆系统的独特性质。稀有的海洋分类群可能通过地下岩溶连接从海水组合中扩散而来,在内陆系统中数量丰富,这表明区域扩散在元群落中起重要作用。

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