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变化中的北冰洋中的氮固定:一个被忽视的氮源?

Nitrogen Fixation in a Changing Arctic Ocean: An Overlooked Source of Nitrogen?

作者信息

von Friesen Lisa W, Riemann Lasse

机构信息

Marine Biology Section, Department of Biology, University of Copenhagen, Helsingør, Denmark.

出版信息

Front Microbiol. 2020 Dec 18;11:596426. doi: 10.3389/fmicb.2020.596426. eCollection 2020.

Abstract

The Arctic Ocean is the smallest ocean on Earth, yet estimated to play a substantial role as a global carbon sink. As climate change is rapidly changing fundamental components of the Arctic, it is of local and global importance to understand and predict consequences for its carbon dynamics. Primary production in the Arctic Ocean is often nitrogen-limited, and this is predicted to increase in some regions. It is therefore of critical interest that biological nitrogen fixation, a process where some bacteria and archaea termed diazotrophs convert nitrogen gas to bioavailable ammonia, has now been detected in the Arctic Ocean. Several studies report diverse and active diazotrophs on various temporal and spatial scales across the Arctic Ocean. Their ecology and biogeochemical impact remain poorly known, and nitrogen fixation is so far absent from models of primary production in the Arctic Ocean. The composition of the diazotroph community appears distinct from other oceans - challenging paradigms of function and regulation of nitrogen fixation. There is evidence of both symbiotic cyanobacterial nitrogen fixation and heterotrophic diazotrophy, but large regions are not yet sampled, and the sparse quantitative data hamper conclusive insights. Hence, it remains to be determined to what extent nitrogen fixation represents a hitherto overlooked source of new nitrogen to consider when predicting future productivity of the Arctic Ocean. Here, we discuss current knowledge on diazotroph distribution, composition, and activity in pelagic and sea ice-associated environments of the Arctic Ocean. Based on this, we identify gaps and outline pertinent research questions in the context of a climate change-influenced Arctic Ocean - with the aim of guiding and encouraging future research on nitrogen fixation in this region.

摘要

北冰洋是地球上最小的海洋,但据估计它在全球碳汇中发挥着重要作用。由于气候变化正在迅速改变北极的基本组成部分,了解和预测其碳动态变化的后果对于当地和全球都具有重要意义。北冰洋的初级生产通常受到氮的限制,预计在某些地区这种情况还会加剧。因此,具有关键意义的是,现在在北冰洋中已经检测到生物固氮现象,即一些被称为固氮菌的细菌和古菌将氮气转化为生物可利用氨的过程。多项研究报告了北冰洋不同时空尺度上多样且活跃的固氮菌。它们的生态学特征和生物地球化学影响仍然鲜为人知,而且到目前为止,北冰洋初级生产模型中尚未考虑固氮作用。固氮菌群落的组成似乎与其他海洋不同,这对固氮作用的功能和调控范式提出了挑战。有证据表明存在共生蓝藻固氮和异养固氮现象,但仍有大片区域未进行采样,而且稀疏的定量数据妨碍了得出确凿的结论。因此,在预测北冰洋未来生产力时,固氮作用在多大程度上代表了一个迄今被忽视的新氮源,仍有待确定。在此,我们讨论了关于北冰洋浮游和海冰相关环境中固氮菌分布、组成和活性的现有知识。基于此,我们确定了差距,并在受气候变化影响的北冰洋背景下概述了相关研究问题,旨在指导和鼓励未来对该地区固氮作用的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a675/7775723/2361415517ad/fmicb-11-596426-g001.jpg

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