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Rapid changes in coastal ocean microbiomes uncoupled with shifts in environmental variables

机译:沿海海洋微生物组的快速变化与环境变量的变化无关

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摘要

Summary Disturbances, here defined as events that directly alter microbial community composition, are commonly studied in host‐associated and engineered systems. In spite of global change both altering environmental averages and increasing extreme events, there has been relatively little research into the causes, persistence and population‐level impacts of disturbance in the dynamic coastal ocean. Here, we utilize 3 years of observations from a coastal time series to identify disturbances based on the largest week‐over‐week changes in the microbiome (i.e. identifying disturbance as events that alter the community composition). In general, these microbiome disturbances were not clearly linked to specific environmental factors and responsive taxa largely differed, aside from SAR11, which generally declined. However, several disturbance metagenomes identified increased phage‐associated genes, suggesting that unexplained community shifts might be caused by increased mortality. Furthermore, a category 1 hurricane, the only event that would likely be classified a priori as an environmental disturbance, was not an outlier in microbiome composition, but did enhance a bloom in seasonally abundant phytoplankton. Thus, as extreme environmental changes intensify, assumptions of what constitutes a disturbance should be re‐examined in the context of ecological history and microbiome responses.
机译:摘要 干扰,这里定义为直接改变微生物群落组成的事件,通常在宿主相关和工程系统中进行研究。尽管全球变化改变了环境平均值并增加了极端事件,但对动态沿海海洋扰动的原因、持久性和种群水平影响的研究相对较少。在这里,我们利用沿海时间序列的 3 年观测结果,根据微生物组最大的每周变化(即将干扰识别为改变群落组成的事件)来识别干扰。总的来说,这些微生物组紊乱与特定的环境因素没有明确的联系,除了SAR11外,反应性分类群有很大不同,SAR11普遍下降。然而,一些干扰宏基因组鉴定出噬菌体相关基因增加,表明无法解释的群落变化可能是由死亡率增加引起的。此外,1级飓风是唯一可能被先验归类为环境干扰的事件,在微生物组组成上并不是异常值,但确实增强了季节性丰富的浮游植物的繁殖。因此,随着极端环境变化的加剧,应该在生态历史和微生物组反应的背景下重新审视构成干扰的假设。

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