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首页> 外文期刊>Microbial Ecology: An International Journal >Changes in the Synechococcus Assemblage Composition at the Surface of the East China Sea Due to Flooding of the Changjiang River
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Changes in the Synechococcus Assemblage Composition at the Surface of the East China Sea Due to Flooding of the Changjiang River

机译:长江洪灾导致东海表层球菌的组成变化

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The aim of this study was to elucidate how flooding of the Changjiang River affects the assemblage composition of phycoerythrin-rich (PE-rich) Synechococcus at the surface of the East China Sea (ECS). During non-flooding summers (e.g., 2009), PE-rich Synechococcus usually thrive at the outer edge of the Changjiang River diluted water coverage (CDW; salinity a parts per thousand currency sign31 PSU). In the summer of 2010, a severe flood occurred in the Changjiang River basin. The plentiful freshwater injection resulted in the expansion of the CDW over half of the ECS and caused PE-rich cells to show a uniform distribution pattern, with decreased abundance compared with the non-flooding summer. The phylogenetic diversity of 16S rRNA gene sequences indicated that the flooding event also shifted the picoplankton community composition from being dominated by Synechococcus, mainly attributed to the clade II lineage, to various orders of heterotrophic bacteria, including Actinobacteria, Flavobacteria, alpha-Proteobacteria, and gamma-Proteobacteria. As an increasing number of studies have proposed that global warming might result in more frequent floods, combining this perspective with the information obtained from our previous [1] and this studies yield a more comprehensive understanding of the relationship between the composition of the marine Synechococcus assemblage and global environmental changes.
机译:这项研究的目的是阐明长江水灾如何影响东海(ECS)表面富含藻红蛋白(富含PE)的Syechococcus的组合组成。在非汛期的夏季(例如2009年),富含PE的Synocococcus通常在长江沿岸稀释水覆盖率(CDW;盐度为千分之一货币符号31 PSU)的外围壮成长。 2010年夏天,长江流域发生了严重洪灾。大量的淡水注入导致CDW扩展到ECS的一半以上,并使富含PE的细胞显示出均匀的分布模式,与非洪涝夏季相比,丰度降低了。 16S rRNA基因序列的系统发育多样性表明,洪水事件也使微微浮游生物群落的组成从主要归因于进化枝II谱系的Synechococcus变为各种阶数的异养细菌,包括放线菌,黄杆菌,α-Proteobacteria和γ-变形杆菌。随着越来越多的研究提出全球变暖可能导致更频繁的洪灾,将这种观点与我们先前的资料结合起来[1],并且该研究对海洋Synchococcus组合物之间的关系有了更全面的了解。和全球环境变化。

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