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如何从厌氧氨氧化中获利。

How to make a living from anaerobic ammonium oxidation.

机构信息

Department of Microbiology, Faculty of Science, Institute of Wetland and Water Research, Radboud University of Nijmegen, Nijmegen, The Netherlands.

出版信息

FEMS Microbiol Rev. 2013 May;37(3):428-61. doi: 10.1111/1574-6976.12014. Epub 2013 Jan 21.

Abstract

Anaerobic ammonium-oxidizing (anammox) bacteria primarily grow by the oxidation of ammonium coupled to nitrite reduction, using CO2 as the sole carbon source. Although they were neglected for a long time, anammox bacteria are encountered in an enormous species (micro)diversity in virtually any anoxic environment that contains fixed nitrogen. It has even been estimated that about 50% of all nitrogen gas released into the atmosphere is made by these 'impossible' bacteria. Anammox catabolism most likely resides in a special cell organelle, the anammoxosome, which is surrounded by highly unusual ladder-like (ladderane) lipids. Ammonium oxidation and nitrite reduction proceed in a cyclic electron flow through two intermediates, hydrazine and nitric oxide, resulting in the generation of proton-motive force for ATP synthesis. Reduction reactions associated with CO2 fixation drain electrons from this cycle, and they are replenished by the oxidation of nitrite to nitrate. Besides ammonium or nitrite, anammox bacteria use a broad range of organic and inorganic compounds as electron donors. An analysis of the metabolic opportunities even suggests alternative chemolithotrophic lifestyles that are independent of these compounds. We note that current concepts are still largely hypothetical and put forward the most intriguing questions that need experimental answers.

摘要

厌氧氨氧化(anammox)细菌主要通过将铵氧化与亚硝酸盐还原偶联来生长,使用 CO2 作为唯一的碳源。尽管它们在很长一段时间内被忽视了,但实际上在任何含有固定氮的缺氧环境中,anammox 细菌都以巨大的(微)物种多样性存在。甚至有人估计,大约 50%释放到大气中的氮气都是由这些“不可能”的细菌产生的。anammox 分解代谢很可能存在于一种特殊的细胞细胞器中,即 anammoxosome,它被非常不寻常的梯状(ladderane)脂质包围。铵氧化和亚硝酸盐还原在通过两个中间体(肼和一氧化氮)的循环电子流中进行,从而产生质子动力用于 ATP 合成。与 CO2 固定相关的还原反应从这个循环中消耗电子,它们通过将亚硝酸盐氧化为硝酸盐来补充。除了铵或亚硝酸盐外,anammox 细菌还使用广泛的有机和无机化合物作为电子供体。对代谢机会的分析甚至表明了其他依赖于这些化合物的化能自养生活方式。我们注意到,当前的概念在很大程度上仍然是假设的,并提出了最有趣的需要实验答案的问题。

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