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嗜硫还原地杆菌的一氧化碳营养型生长

Carboxydotrophic growth of Geobacter sulfurreducens.

作者信息

Geelhoed Jeanine S, Henstra Anne M, Stams Alfons J M

机构信息

Laboratory of Microbiology, Wageningen University, Dreijenplein 10, 6703 HB, Wageningen, The Netherlands.

NIOZ Royal Netherlands Institute for Sea Research, Korringaweg 7, 4401 NT, Yerseke, The Netherlands.

出版信息

Appl Microbiol Biotechnol. 2016 Jan;100(2):997-1007. doi: 10.1007/s00253-015-7033-z. Epub 2015 Oct 19.

Abstract

This study shows that Geobacter sulfurreducens grows on carbon monoxide (CO) as electron donor with fumarate as electron acceptor. Geobacter sulfurreducens was tolerant to high CO levels, with up to 150 kPa in the headspace tested. During growth, hydrogen was detected in very slight amounts (∼5 Pa). In assays with cell-free extract of cells grown with CO and fumarate, production of hydrogen from CO was not observed, and hydrogenase activity with benzyl viologen as electron acceptor was very low. Taken together, this suggested that CO is not utilized via hydrogen as intermediate. In the presence of CO, reduction of NADP(+) was observed at a rate comparable to CO oxidation coupled to fumarate reduction in vivo. The G. sulfurreducens genome contains a single putative carbon monoxide dehydrogenase-encoding gene. The gene is part of a predicted operon also comprising a putative Fe-S cluster-binding subunit (CooF) and a FAD-NAD(P) oxidoreductase and is preceded by a putative CO-sensing transcription factor. This cluster may be involved in a novel pathway for CO oxidation, but further studies are necessary to ascertain this. Similar gene clusters are present in several other species belonging to the Deltaproteobacteria and Firmicutes, for which CO utilization is currently not known.

摘要

本研究表明,硫还原地杆菌以一氧化碳(CO)作为电子供体、富马酸作为电子受体进行生长。硫还原地杆菌对高浓度CO具有耐受性,在测试的顶空中CO浓度高达150 kPa。在生长过程中,检测到极少量的氢气(约5 Pa)。在用CO和富马酸培养的细胞的无细胞提取物进行的测定中,未观察到由CO产生氢气的现象,并且以苄基紫精作为电子受体时氢化酶活性非常低。综上所述,这表明CO不是通过氢气作为中间体来利用的。在有CO存在的情况下,观察到NADP(+)的还原速率与体内CO氧化偶联富马酸还原的速率相当。硫还原地杆菌基因组包含一个推定的一氧化碳脱氢酶编码基因。该基因是一个预测操纵子的一部分,该操纵子还包括一个推定的铁硫簇结合亚基(CooF)和一个FAD-NAD(P)氧化还原酶,并且其前面有一个推定的CO感应转录因子。这个簇可能参与了一条新的CO氧化途径,但需要进一步研究来确定这一点。在目前尚不知其是否利用CO的其他几个属于δ-变形菌纲和厚壁菌门的物种中也存在类似的基因簇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a023/4703632/5411bd8c8b06/253_2015_7033_Fig1_HTML.jpg

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