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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Linking regional shifts in microbial genome adaptation with surface ocean biogeochemistry
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Linking regional shifts in microbial genome adaptation with surface ocean biogeochemistry

机译:与表面海洋生物地球化学的微生物基因组适应联系在微生物基因组适应中

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摘要

Linking 'omics measurements with biogeochemical cycles is a widespread challenge in microbial community ecology. Here, we propose applying genomic adaptation as 'biosensors' for microbial investments to overcome nutrient stress. We then integrate this genomic information with a trait-based model to predict regional shifts in the elemental composition of marine plankton communities. We evaluated this approach using metagenomic and particulate organic matter samples from the Atlantic, Indian and Pacific Oceans. We find that our genome-based trait model significantly improves our prediction of particulate C : P (carbon : phosphorus) across ocean regions. Furthermore, we detect previously unrecognized ocean areas of iron, nitrogen and phosphorus stress. In many ecosystems, it can be very challenging to quantify microbial stress. Thus, a carefully calibrated genomic approach could become a widespread tool for understanding microbial responses to environmental changes and the biogeochemical outcomes. This article is part of the theme issue 'Conceptual challenges in microbial community ecology'.
机译:链接'具有生物地球化学循环的OMICS测量是微生物群落生态学的广泛挑战。在这里,我们建议将基因组适应作为“生物传感器”作为微生物投资来克服营养应激。然后,我们将该基因组信息与基于特征的模型集成,以预测海洋浮游生物社区的元素组成中的区域变化。我们使用来自大西洋,印度和太平洋的甲虫和微粒有机物样品评估了这种方法。我们发现,我们的基于基因组的特质模型显着提高了海洋地区颗粒状C:P(碳:磷)的预测。此外,我们检测以前未被识别的铁,氮和磷胁迫的海洋区域。在许多生态系统中,量化微生物应力可能非常具有挑战性。因此,仔细校准的基因组方法可能成为了解对环境变化和生物地理化的微生物反应的广泛工具。本文是主题问题的一部分问题在微生物群落生态学中的概念挑战的一部分。

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