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Seasonal Succession and Spatial Patterns of Synechococcus Microdiversity in a Salt Marsh Estuary Revealed through 16S rRNA Gene Oligotyping

机译:通过16S rRNA基因寡聚显示盐沼河口的球菌微多样性的季节性演替和空间格局。

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摘要

Synechococcus are ubiquitous and cosmopolitan cyanobacteria that play important roles in global productivity and biogeochemical cycles. This study investigated the fine scale microdiversity, seasonal patterns, and spatial distributions of Synechococcus in estuarine waters of Little Sippewissett salt marsh (LSM) on Cape Cod, MA. The proportion of Synechococcus reads was higher in the summer than winter, and higher in coastal waters than within the estuary. Variations in the V4–V6 region of the bacterial 16S rRNA gene revealed 12 unique Synechococcus oligotypes. Two distinct communities emerged in early and late summer, each comprising a different set of statistically co-occurring Synechococcus oligotypes from different clades. The early summer community included clades I and IV, which correlated with lower temperature and higher dissolved oxygen levels. The late summer community included clades CB5, I, IV, and VI, which correlated with higher temperatures and higher salinity levels. Four rare oligotypes occurred in the late summer community, and their relative abundances more strongly correlated with high salinity than did other co-occurring oligotypes. The analysis revealed that multiple, closely related oligotypes comprised certain abundant clades (e.g., clade 1 in the early summer and clade CB5 in the late summer), but the correlations between these oligotypes varied from pair to pair, suggesting they had slightly different niches despite being closely related at the clade level. Lack of tidal water exchange between sampling stations gave rise to a unique oligotype not abundant at other locations in the estuary, suggesting physical isolation plays a role in generating additional microdiversity within the community. Together, these results contribute to our understanding of the environmental and ecological factors that influence patterns of Synechococcus microbial community composition over space and time in salt marsh estuarine waters.
机译:球菌是无处不在的世界性蓝细菌,在全球生产力和生物地球化学循环中起着重要作用。本研究调查了马萨诸塞州科德角小西皮维塞特盐沼(LSM)河口水域中球菌的细微尺度多样性,季节格局和空间分布。夏季,球菌的读取比例高于冬季,沿海水域的读取比例高于河口。细菌16S rRNA基因V4-V6区的变异揭示了12个独特的Synechococcus寡聚型。夏初和夏末出现了两个不同的群落,每个群落都包含来自不同进化枝的一组统计上同时出现的Synechococcus寡聚型。初夏社区包括I和IV进化枝,这与温度较低和溶解氧水平较高相关。夏末社区包括CB5,I,IV和VI进化枝,它们与更高的温度和更高的盐度水平相关。夏末社区发生了四种罕见的寡聚体,与其他同时出现的寡聚体相比,它们的相对丰度与高盐度的相关性更高。分析显示,多个紧密相关的寡聚体包含某些丰富的进化枝(例如,初夏的进化枝1和夏末的进化枝CB5),但是这些寡聚体之间的相关性因配对而异,表明尽管在进化枝层次上紧密相关采样站之间缺乏潮汐水交换,导致独特的寡聚体在河口其他位置不丰富,这表明物理隔离在社区内产生额外的微生物多样性方面发挥了作用。在一起,这些结果有助于我们理解盐沼河口水域中空间和时间上影响球菌微生物群落组成模式的环境和生态因素。

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