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The role of siderophores in iron acquisition by photosynthetic marine microorganisms

机译:铁载体在光合海洋微生物获取铁中的作用

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The photosynthetic picocyanobacteria and eukaryotic microorganisms that inhabit the open ocean must be able to supply iron for their photosynthetic and respiratory needs from the subnanomolar concentrations available in seawater. Neither group appears to produce siderophores, although some coastal cyanobacteria do. This is interpreted as an adaptation to the dilute oceanic environment rather than a phylogenetic constraint, since there are cases in which related taxa from different environments have the capacity to produce siderophores. Most photosynthetic marine microorganisms are presumably, however, capable of accessing iron from strong chelates since the majority of dissolved iron in seawater is complexed by organic ligands, including siderophores. Rather than direct internalization of siderophores and other iron chelates, marine organisms primarily appear to use uptake pathways that involve a reduction step to free bound iron, closely coupled with transport into the cell.
机译:居住在开阔海洋中的光合作用微蓝细菌和真核微生物必须能够从海水中的亚纳摩尔浓度为铁的光合和呼吸需要提供铁。尽管有些沿海蓝细菌确实会产生铁载体,但两者均未产生铁载体。这被解释为对稀薄海洋环境的适应,而不是系统发育限制,因为在某些情况下,来自不同环境的相关分类单元具有产生铁载体的能力。但是,大多数光合作用的海洋微生物大概都能从强螯合物中获取铁,因为海水中大部分溶解的铁都被包括铁载体在内的有机配体络合。海洋生物不是直接将铁载体和其他铁螯合物内在化,而是主要使用吸收途径,该途径涉及还原步骤以游离结合的铁,并与转运进入细胞紧密结合。

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