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Small-scale variability of protistan planktonic communities relative to environmental pressures and biotic interactions at two adjacent coastal stations

机译:邻近两个沿海沿海海岸带的浮游藻类浮游生物群落相对于环境压力和生物相互作用的小规模变异性

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The aim of this study was to analyze planktonic protistan assemblages under different environmental pressures at 2 adjacent coastal stations (inshore and offshore; similar to 6.4 km apart) in the eastern English Channel (EEC). Samples were collected between March 2012 and June 2013, and analyzed using bioinformatic analysis and tag pyrosequencing of the V2-V3 hypervariable region of the 18S rRNA gene. In addition to the taxonomic composition of the protistan communities, the detected operational taxonomic units (OTUs) were sorted into 6 major functional groups based on their trophic roles in marine systems. Comparisons of 13 environmental factors, including physical and chemical variables, indicated significant differences between the 2 stations. However, the only significant relationship between environmental pressures and protistan community structure was detected when the trophic role of the OTUs was considered at the inshore station. In order to interpret differences in community structure, the effect of biotic inter actions was investigated through the examination of the co-occurrence networks of the protistan communities at both stations. In terms of the number of edges and connectivity of nodes, the analysis showed that the inshore station had more complex associations between OTUs than the offshore station. This strongly suggests that due to the higher and more variable environmental pressures the inshore station comparatively receives, its protistan community has developed a greater complexity of biotic connections. This in turn reflects the rapid responses of trophic interactions within the entire microbial community.
机译:这项研究的目的是分析英吉利海峡东部(EEC)的两个相邻沿海站点(近海和近海;相距约6.4公里)在不同环境压力下的浮游原生质组合。在2012年3月至2013年6月之间收集样本,并使用生物信息学分析和18S rRNA基因V2-V3高变区的标签焦磷酸测序进行分析。除了protistan群落的分类学组成外,根据检测到的操作分类学单元(OTU)在海洋系统中的营养作用,还可以分为6个主要功能组。对13个环境因素(包括物理和化学变量)的比较表明,这两个站点之间存在显着差异。但是,当在近海站考虑OTU的营养作用时,就发现了环境压力与Protstan群落结构之间的唯一重要关系。为了解释社区结构的差异,通过检查两个站点上protistan社区的共现网络,研究了生物相互作用的影响。从边缘的数量和节点的连通性来看,分析表明,与近海站相比,近海站在OTU之间的关联更为复杂。这有力地表明,由于近岸站相对承受的环境压力更高且变化更大,其沿海地区的生物群落已发展出更大的生物连接复杂性。这反过来反映了整个微生物群落中营养相互作用的快速反应。

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