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利用远程原位仪器进行高分辨率研究,考察季节性聚球藻和古菌种群动态。

Seasonal Synechococcus and Thaumarchaeal population dynamics examined with high resolution with remote in situ instrumentation.

机构信息

Department of Ocean Sciences, University of California Santa Cruz, Santa Cruz, CA 95064, USA.

出版信息

ISME J. 2012 Mar;6(3):513-23. doi: 10.1038/ismej.2011.127. Epub 2011 Oct 6.

Abstract

Monterey Bay, CA is an Eastern boundary upwelling system that is nitrogen limited much of the year. In order to resolve population dynamics of microorganisms important for nutrient cycling in this region, we deployed the Environmental Sample Processor with quantitative PCR assays targeting both ribosomal RNA genes and functional genes for subclades of cyanobacteria (Synechococcus) and ammonia-oxidizing Archaea (Thaumarchaeota) populations. Results showed a strong correlation between Thaumarchaea abundances and nitrate during the spring upwelling but not the fall sampling period. In relatively stratified fall waters, the Thaumarchaeota community reached higher numbers than in the spring, and an unexpected positive correlation with chlorophyll concentration was observed. Further, we detected drops in Synechococcus abundance that occurred on short (that is, daily) time scales. Upwelling intensity and blooms of eukaryotic phytoplankton strongly influenced Synechococcus distributions in the spring and fall, revealing what appear to be the environmental limitations of Synechococcus populations in this region. Each of these findings has implications for Monterey Bay biogeochemistry. High-resolution sampling provides a better-resolved framework within which to observe changes in the plankton community. We conclude that controls on these ecosystems change on smaller scales than are routinely assessed, and that more predictable trends will be uncovered if they are evaluated within seasonal (monthly), rather than on annual or interannual scales.

摘要

加利福尼亚州蒙特雷湾是一个东部边界上升流系统,一年中的大部分时间都受到氮限制。为了解决对该地区营养循环至关重要的微生物种群动态问题,我们部署了环境样品处理器,并使用定量 PCR 检测针对蓝细菌(聚球藻)和氨氧化古菌(泉古菌门)种群亚群的核糖体 RNA 基因和功能基因。结果表明,在春季上升流期间,泉古菌丰度与硝酸盐之间存在很强的相关性,但在秋季采样期间则没有相关性。在相对分层的秋季水域中,泉古菌群落的数量比春季高,并且观察到与叶绿素浓度呈意外的正相关。此外,我们检测到聚球藻丰度的下降,这种下降发生在短时间(即每日)尺度上。上升流强度和真核浮游植物的爆发强烈影响了春季和秋季聚球藻的分布,揭示了该地区聚球藻种群的环境限制因素。这些发现都对蒙特雷湾的生物地球化学有影响。高分辨率采样提供了一个更好的分辨率框架,用于观察浮游生物群落的变化。我们得出的结论是,这些生态系统的控制因素在比常规评估更小的尺度上发生变化,如果在季节性(每月)而不是年度或多年尺度上进行评估,将揭示出更可预测的趋势。

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