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Changes in the community composition of marine microbial eukaryotes across multiple temporal scales of measurement.

机译:跨多个时间尺度的海洋微生物真核生物群落组成的变化。

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摘要

Microbial eukaryotes are critical components of marine ecosystems, contributing to vital ecological and biogeochemical processes, but fundamental knowledge regarding patterns of spatial and temporal variability of natural assemblages of these taxa is limited. Sequence-based and fragment-based genetic approaches were used to characterize changes in community composition and structure of microbial eukaryote assemblages across multiple timescales (days, months, seasons, years). Short-term temporal changes in community composition and structure were characterized for a 3-day bottle incubation experiment that consisted of 3 treatments (a control, inorganic nutrient enrichment, and organic nutrient enrichment). Inorganic and organic enrichments resulted in dramatic changes in community structure and substantially influenced richness estimates, but community composition and structure also responded rapidly and significantly even without nutrient additions. The relative abundance of some initially rare taxa increased dramatically, implying that some taxa comprising the 'rare biosphere' responded to take on ecologically important roles under changing environmental conditions. Long-term temporal patterns of variability (monthly, seasonal and interannual) in the composition of natural assemblages of microbial eukaryotes were examined at the San Pedro Ocean Time-series (SPOT) station for 237 samples collected from four depths on cruises between September 2000 and December 2010. The spatiotemporal variability of microbial eukaryote assemblages indicated the presence of distinct communities within and below the euphotic zone at the SPOT station. Month-to-month community similarity values (∼51-61%) were relatively high for assemblages at all depths, but assemblages at 5 m were temporally more dynamic compared to deeper assemblages. Seasonality was apparent for microbial eukaryote assemblages within and below the euphotic zone at 5 m and 150 m, but not at the deep chlorophyll maximum (DCM) which varied in depth seasonally, or at 500 m. Microbial eukaryote assemblages exhibited cyclical patterns in nearly half of all the years and depths examined in this study, with an annual resetting of communities during winter. Interannual variability was apparent at all depths and was a major factor influencing community composition at our study site. Network analysis based on global Spearman correlations identified highly correlated temporal patterns between microbial eukaryote taxa for samples collected between September 2000 and December 2003, indicating the presence of unique guilds of microbial eukaryote taxa at each depth with coordinated responses over the 3 years. Our results provide new insight into the temporal changes within natural assemblages of microbial eukaryotes on multiple timescales of variability, an essential step for linking changes in microbial eukaryote communities brought about by environmental fluctuations to overall ecosystem function.
机译:微生物真核生物是海洋生态系统的重要组成部分,有助于重要的生态和生物地球化学过程,但是有关这些分类单元天然组合的时空变异模式的基本知识是有限的。基于序列和基于片段的遗传方法用于表征跨多个时间尺度(天,月,月,年,年)的微生物真核生物集合体的群落组成和结构的变化。为期3天的瓶孵化实验对群落组成和结构的短期时间变化进行了表征,该实验由3种处理(对照,无机养分富集和有机养分富集)组成。无机和有机物的富集导致群落结构发生了巨大变化,并极大地影响了丰富度的估算,但是即使不添加营养素,群落的组成和结构也能迅速而显着地响应。一些最初稀有的分类单元的相对丰度急剧增加,这意味着组成“稀有生物圈”的某些分类单元在不断变化的环境条件下做出了重要的生态响应。在圣佩德罗海洋时间序列(SPOT)站检查了微生物真核生物天然组合物组成的长期时间变化(每月,季节性和年际),从2000年9月至2004年的4个深度进行了237次采样2010年12月。微生物真核生物组合的时空变化表明,在SPOT站的常绿带内和下方存在着不同的群落。对于所有深度的组合,月与月社区相似度值(〜51-61%)都相对较高,但是与更深的组合相比,在5 m处的组合在时间上更具动态性。在5m和150m处的常绿区内和下方的微生物真核生物组合具有明显的季节性,但在深处的叶绿素最大值(DCM)却没有随季节变化,深度在500m处也很明显。微生物真核生物组合物在本研究中研究的所有深度和深度中,近一半呈现出周期性模式,并且在冬季每年都会对群落进行重置。年际变化在所有深度都是明显的,并且是影响我们研究地点社区组成的主要因素。基于全球Spearman相关性的网络分析确定了2000年9月至2003年12月间收集的样品的微生物真核生物类群之间高度相关的时间模式,表明在每个深度存在独特的微生物真核生物类群,并在3年​​中做出了协调响应。我们的结果为微生物真核生物的自然组合中的时间变化在多个时间尺度上的变化提供了新的见解,这是将环境波动带来的微生物真核生物群落变化与整体生态系统功能联系起来的必不可少的步骤。

著录项

  • 作者

    Kim, Diane Young.;

  • 作者单位

    University of Southern California.;

  • 授予单位 University of Southern California.;
  • 学科 Biology Oceanography.;Environmental Sciences.;Geobiology.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 188 p.
  • 总页数 188
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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