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Role of microbial populations in the release of reduced iron to the water column from marine aggregates

机译:微生物种群在海洋聚集体中还原铁释放到水柱中的作用

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摘要

The release of dissolved iron from artificial aggregates formed from oxic natural coastal water and senescent phytoplankton material was demonstrated under dark conditions. The rate of release was controlled by the amount of reducible Fe(III) available, and appears to be limited by the competing oxidation of Fe(II). Molecular (16S rRNA gene) analyses showed the bacterial community associated with the aggregates, originating from estuarine water, to be dominated by oxic heterorophs. However, it was possible to culture NO3- and Fe (III)-reducing bacteria from the artificial aggregates, and marine particles incubated with Fe(III) under anaerobic conditions contained microorganisms belonging to the genera Desulfovibrio and Marinobacter, bacteria known to reduce Fe(III). Whilst the precise mechanism of reduction is not clear, it is evident that marine aggregates can be a source of Fe(II), and thus ultimately iron in other forms, in coastal waters and most probably other natural water systems.
机译:在黑暗条件下,证明了从含氧天然沿海水和衰老浮游植物形成的人工聚集物中释放出溶解的铁。释放速率受可用的可还原Fe(III)的量控制,似乎受Fe(II)竞争氧化的限制。分子(16S rRNA基因)分析表明,与来自河口水的聚集体相关的细菌群落被有氧异养菌所控制。但是,可以从人工聚集物中培养还原NO3-和Fe(III)的细菌,并且在厌氧条件下与Fe(III)一起孵育的海洋颗粒中含有Desulfovibrio和Marinobacter属的微生物,这些细菌已知会还原Fe( III)。虽然还没有确切的还原机理,但很明显,海洋聚集体可能是Fe(II)的来源,因此最终在沿海水域以及很可能是其他天然水系统中以其他形式的铁。

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