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Iron Stress in Open-Ocean Cyanobacteria (Synechococcus, Trichodesmium, andCrocosphaera spp.): Identification of the IdiA Protein

机译:大洋蓝藻(Synechococcus,Trichodesmium和Crocosphaera spp。)中的铁胁迫:IdiA蛋白的鉴定

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摘要

Cyanobacteria are prominent constituents of the marine biosphere that account for a significant percentage of oceanic primary productivity. In an effort to resolve how open-ocean cyanobacteria persist in regions where the Fe concentration is thought to be limiting their productivity, we performed a number of Fe stress experiments on axenic cultures of marine Synechococcus spp., Crocosphaera sp., andTrichodesmium sp. Through this work, we determined that all of these marine cyanobacteria mount adaptive responses to Fe stress, which resulted in the induction and/or repression of several proteins. We have identified one of the Fe stress-induced proteins as an IdiA homologue. Genomic observations and laboratory data presented herein from open-ocean Synechococcus spp. are consistent with IdiA having a role in cellular Fe scavenging. Our data indicate that IdiA may make an excellent marker for Fe stress in open-ocean cyanobacterial field populations. By determining how these microorganisms respond to Fe stress, we will gain insight into how and when this important trace element can limit their growth in situ. This knowledge will greatly increase our understanding of how marine Fe cycling impacts oceanic processes, such as carbon and nitrogen fixation.
机译:蓝细菌是海洋生物圈的重要组成部分,占海洋初级生产力的很大比例。为了解决开放性蓝藻细菌如何在铁浓度被认为限制其生产力的地区持续存在的问题,我们对海洋Synechococcus spp。,Crocosphaera sp。和Trichodesmium sp。的无性培养进行了许多Fe胁迫实验。通过这项工作,我们确定所有这些海洋蓝细菌都对Fe胁迫产生了适应性反应,从而导致了几种蛋白质的诱导和/或抑制。我们已经鉴定出铁应激诱导的蛋白质之一是IdiA同源物。本文提供的来自开放海洋Synechococcus spp的基因组观察结果和实验室数据。与在细胞铁清除中起作用的IdiA一致。我们的数据表明,IdiA可能是开放型蓝藻现场种群中铁胁迫的出色标志。通过确定这些微生物如何响应铁胁迫,我们将了解到这种重要的微量元素如何以及何时会限制其原位生长。这些知识将大大增加我们对海洋铁元素循环如何影响海洋过程(例如碳和氮固着)的了解。

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