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Spatial and temporal variability of bacterioplankton communities across river to ocean environmental gradients.

机译:跨河到海洋环境梯度的浮游细菌群落的时空变化。

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摘要

Bacterioplankton communities are deeply diverse within and across environments, yet also display repeatable patterns over seasonal and annual time scales. I assessed patterns of bacterioplankton community variability across the Columbia River coastal margin over space and time. Coastal zones encompass a complex spectrum of environmental gradients, which impact the composition of bacterioplankton communities. Few studies have attempted to address these gradients comprehensively, especially across large spatial and long temporal scales. I generated a 16S rRNA gene-based bacterioplankton community profile of a coastal zone from water samples collected from the Columbia River, estuary, plume, and along coastal transects covering 360 km of the Oregon and Washington coasts and extending to the deep ocean (>2000 m). Over 600 water samples were collected during four consecutive years and eleven research cruises. Spatially, bacterioplankton communities separated into seven environments across the coastal zone (ANOSIM, p<0.001): river, estuary, plume, epipelagic, mesopelagic, shelf bottom (depth850 m). Communities correlated strongly with the structuring physical factors of salinity, temperature, and depth. Within each environment, community variability correlated with factors important to primary and secondary production. In the freshwater-influenced environments of the Columbia River, estuary, and plume, communities varied seasonally and reassembled annually. Freshwater SAR11, Oceanospirillales, and Flavobacteria taxa were indicators of changing seasonal conditions in these environments. In contrast, seasonal change in communities was not detected in the coastal ocean but instead varied spatially with environmental conditions. Each coastal ocean environment had distinct taxa including SAR406 and SUP05 taxa in the deep ocean and Prochlorococcus and SAR11 taxa in the upper water column. A survey of metabolic potential (metagenomics) and gene expression (metatranscriptomics) across the salinity gradient showed that although communities were taxonomically distinct, the metabolic potential of these communities was highly similar. Additionally, gene expression patterns were extremely different and reflected the short-time scales on which microbial processes persist in an environment. Across the coastal zone, bacterioplankton communities were taxonomically distinct but metabolically similar, structured by physical factors, and predictable across seasons from river to ocean.
机译:浮游细菌群落在环境内和环境之间千差万别,但在季节性和年度时间尺度上也显示出可重复的模式。我评估了跨哥伦比亚哥伦比亚河沿岸边缘随时间和空间变化的浮游细菌群落模式。沿海地区包含复杂的环境梯度谱,这影响了浮游细菌群落的组成。很少有研究试图全面解决这些梯度问题,特别是在较大的空间和较长的时间尺度上。我从哥伦比亚河,河口,羽流以及沿覆盖俄勒冈州和华盛顿沿岸360公里并延伸至深海的沿海样带收集的水样中生成了沿海地区基于16S rRNA基因的浮游细菌群落概况m)。在连续四年和十一次研究航行中,收集了600多个水样。在空间上,浮游细菌群落在整个沿海地区分为七个环境(ANOSIM,p <0.001):河流,河口,羽流,上表层,中生界,陆架底部(深度850 m)。社区与盐度,温度和深度的结构物理因素密切相关。在每个环境中,群落变异性与对初级和次级生产重要的因素相关。在受哥伦比亚河,河口和羽流影响的淡水环境中,群落随季节变化并每年重新聚集。淡水SAR11,海洋螺旋藻和黄杆菌类群是这些环境中季节性条件变化的指示。相反,在沿海海洋中并未发现社区的季节性变化,而是随环境条件而在空间上变化。每个沿海海洋环境都有不同的类群,包括深海中的SAR406和SUP05类群以及上水柱中的原绿球菌和SAR11类群。对整个盐度梯度的代谢潜力(基因组学)和基因表达(基因组学)的调查显示,尽管群落在分类学上是不同的,但这些群落的代谢潜力却非常相似。此外,基因表达模式差异极大,反映了微生物在环境中持续存在的短时间尺度。在整个沿海地区,浮游细菌群落在分类学上是不同的,但在代谢上相似,受物理因素的影响,从河流到海洋的整个季节都是可以预测的。

著录项

  • 作者

    Fortunato, Caroline Sara.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Biology Ecology.;Environmental Sciences.;Biology Microbiology.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 171 p.
  • 总页数 171
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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