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Temporal and Spatial Diversity of Bacterial Communities in Coastal Waters of the South China Sea

机译:南海沿岸细菌群落的时空多样性

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摘要

Bacteria are recognized as important drivers of biogeochemical processes in all aquatic ecosystems. Temporal and geographical patterns in ocean bacterial communities have been observed in many studies, but the temporal and spatial patterns in the bacterial communities from the South China Sea remained unexplored. To determine the spatiotemporal patterns, we generated 16S rRNA datasets for 15 samples collected from the five regularly distributed sites of the South China Sea in three seasons (spring, summer, winter). A total of 491 representative sequences were analyzed by MOTHUR, yielding 282 operational taxonomic units (OTUs) grouped at 97% stringency. Significant temporal variations of bacterial diversity were observed. Richness and diversity indices indicated that summer samples were the most diverse. The main bacterial group in spring and summer samples was Alphaproteobacteria, followed by Cyanobacteria and Gammaproteobacteria, whereas Cyanobacteria dominated the winter samples. Spatial patterns in the samples were observed that samples collected from the coastal (D151, D221) waters and offshore (D157, D1512, D224) waters clustered separately, the coastal samples harbored more diverse bacterial communities. However, the temporal pattern of the coastal site D151 was contrary to that of the coastal site D221. The LIBSHUFF statistics revealed noticeable differences among the spring, summer and winter libraries collected at five sites. The UPGMA tree showed there were temporal and spatial heterogeneity of bacterial community composition in coastal waters of the South China Sea. The water salinity (P=0.001) contributed significantly to the bacteria-environment relationship. Our results revealed that bacterial community structures were influenced by environmental factors and community-level changes in 16S-based diversity were better explained by spatial patterns than by temporal patterns.
机译:细菌被认为是所有水生生态系统中生物地球化学过程的重要驱动力。在许多研究中都观察到了海洋细菌群落的时空格局,但南海细菌群落的时空格局仍未得到探索。为了确定时空格局,我们针对三个季节(春季,夏季,冬季)从南海五个有规律分布的地点收集的15个样本生成了16S rRNA数据集。 MOTHUR对总共491个代表性序列进行了分析,得出282个操作分类单位(OTU),按97%的严格度分组。观察到细菌多样性的明显时间变化。丰富度和多样性指数表明,夏季样品种类最多。春季和夏季样品中的主要细菌种类是阿尔法变形杆菌,其次是蓝细菌和γ变形杆菌,而蓝细菌则主导了冬季样品。观察到的样本空间格局是,从沿海(D151,D221)水域和近海(D157,D1512,D224)水域收集的样本分别聚集在一起,沿海样本中细菌的群落种类更多。但是,沿海地点D151的时间模式与沿海地点D221的时间模式相反。 LIBSHUFF的统计数据显示,在五个站点收集的春季,夏季和冬季图书馆之间存在显着差异。 UPGMA树表明,南中国海沿海地区细菌群落组成存在时空异质性。水盐度(P = 0.001)显着促进了细菌与环境的关系。我们的结果表明,细菌群落结构受环境因素的影响,基于空间模式的解释比基于时间模式的解释更好地说明了基于16S多样性的群落水平变化。

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