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Complex N acquisition by soil diazotrophs: how the ability to release exoenzymes affects N fixation by terrestrial free-living diazotrophs

机译:土壤重氮营养菌对氮的复杂吸收:释放外酶的能力如何影响陆地自由生活重氮营养菌对氮的固定

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摘要

Terrestrial systems support a variety of free-living soil diazotrophs, which can fix nitrogen (N) outside of plant associations. However, owing to the metabolic costs associated with N fixation, free-living soil diazotrophs likely rely on soil N to satisfy the majority of cellular N demand and only fix atmospheric N under certain conditions. Culture-based studies and genomic data show that many free-living soil diazotrophs can access high-molecular weight organic soil N by releasing N-acquiring enzymes such as proteases and chitinases into the extracellular environment. Here, we formally propose a N acquisition strategy used by free-living diazotrophs that accounts for high-molecular weight N acquisition through exoenzyme release by these organisms. We call this the ‘LAH N-acquisition strategy' for the preferred order of N pools used once inorganic soil N is limiting: (1) low-molecular weight organic N, (2) atmospheric N and (3) high-molecular weight organic N. In this framework, free-living diazotrophs primarily use biological N fixation (BNF) as a short-term N acquisition strategy to offset the cellular N lost in exoenzyme excretion as low-molecular weight N becomes limiting. By accounting for exoenzyme release by free-living diazotrophs within a cost–benefit framework, investigation of the LAH N acquisition strategy will contribute to a process-level understanding of BNF in soil environments.
机译:陆地系统支持多种自由活动的土壤重氮营养菌,可以将氮(N)固定在植物群落之外。但是,由于固氮相关的代谢成本,自由活动的土壤重氮营养菌可能依赖土壤N来满足大部分细胞对氮的需求,并且仅在某些条件下才能固定大气中的N。基于文化的研究和基因组数据表明,许多自由活动的土壤重氮营养菌都可以通过向细胞外环境释放获得氮的酶(例如蛋白酶和几丁质酶)来获得高分子量有机土壤N。在这里,我们正式提出了一种自由活动的重氮营养生物所采用的氮获取策略,该策略通过这些生物体释放出的外切酶来解决高分子量氮的获取问题。一旦无机土壤N受到限制,我们就将N池的优先顺序称为“ LAH N收购策略”:(1)低分子量有机N,(2)大气N和(3)高分子量有机N.在此框架中,自由活动的重氮营养生物主要使用生物N固定(BNF)作为短期N吸收策略,以抵消由于低分子量N变得有限而在外切酶排泄中损失的细胞N。通过考虑在成本效益框架内自由生活的重氮营养菌释放的外酶,对LAH N采集策略的研究将有助于在过程水平上了解土壤环境中的BNF。

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