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Distribution of bacterial communities along the spatial and environmental gradients from Bohai Sea to northern Yellow Sea

机译:渤海至黄海北部沿空间和环境梯度的细菌群落分布

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摘要

The eutrophic Bohai Sea receives large amount of suspended material, nutrients and contaminant from terrestrial runoff, and exchanges waters with the northern Yellow Sea through a narrow strait. This coastal region provides an ideal model system to study microbial biogeography. We performed high-throughput sequencing to investigate the distribution of bacterial taxa along spatial and environmental gradients. The results showed bacterial communities presented remarkable horizontal and vertical distribution under coastal gradients of spatial and environmental factors. Fourteen abundant taxa clustered the samples into three distinctive groups, reflecting typical habitats in shallow coastal water (seafloor depth ≤ 20 m), sunlit surface layer (at water surface with seafloor depth >20 m) and bottom water (at 2–3 m above sediment with seafloor depth >20 m). The most significant taxa of each cluster were determined by the least discriminant analysis effect size, and strongly correlated with spatial and environmental variables. Environmental factors (especially turbidity and nitrite) exhibited significant influences on bacterial beta-diversity in surface water (at 0 m sampling depth), while community similarity in bottom water (at 2–3 m above sediment) was mainly determined by depth. In both surface and bottom water, we found bacterial community similarity and the number of OTUs shared between every two sites decreased with increasing geographic distance. Bacterial dispersal was also affected by phosphate, which was possible due to the high ratios of IN/IP in this coastal sea area.
机译:富营养化的渤海从陆地径流中吸收了大量的悬浮物质,营养物质和污染物,并通过狭窄的海峡与黄海北部交换水域。这个沿海地区为研究微生物生物地理学提供了理想的模型系统。我们进行了高通量测序,以调查细菌分类群沿空间和环境梯度的分布。结果表明,在空间和环境因素的沿海梯度下,细菌群落呈现出显着的水平和垂直分布。 14个丰富的分类单元将样本分为三个独特的组,反映了浅海沿岸水域(海底深度≤20 m),日光照射下的表层(海面深度大于20 m的水面)和底水(高于2-3 m的)的典型栖息地。海底深度> 20 m的沉积物)。每个聚类的最高有效分类单元由最小判别分析效果大小确定,并与空间和环境变量密切相关。环境因素(特别是浊度和亚硝酸盐)对地表水(采样深度为0 m时)的细菌β多样性表现出显着影响,而底水(沉积物以上2-3 m时)的群落相似性主要由深度决定。在地表水和地下水中,我们发现细菌群落的相似性以及每两个站点之间共享的OTU数量随着地理距离的增加而减少。细菌的扩散也受到磷酸盐的影响,这可能是由于该沿海海域中IN / IP的比例很高。

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