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来自利用氢气的瘤胃产甲烷菌瘤胃短杆菌M1的一种黏附素可结合多种产氢微生物。

An adhesin from hydrogen-utilizing rumen methanogen Methanobrevibacter ruminantium M1 binds a broad range of hydrogen-producing microorganisms.

作者信息

Ng Filomena, Kittelmann Sandra, Patchett Mark L, Attwood Graeme T, Janssen Peter H, Rakonjac Jasna, Gagic Dragana

机构信息

Grasslands Research Centre, AgResearch Ltd, Palmerston North, New Zealand.

Institute of Fundamental Sciences, Massey University, Palmerston North, New Zealand.

出版信息

Environ Microbiol. 2016 Sep;18(9):3010-21. doi: 10.1111/1462-2920.13155. Epub 2016 Jan 18.

Abstract

Symbiotic associations are ubiquitous in the microbial world and have a major role in shaping the evolution of both partners. One of the most interesting mutualistic relationships exists between protozoa and methanogenic archaea in the fermentative forestomach (rumen) of ruminant animals. Methanogens reside within and on the surface of protozoa as symbionts, and interspecies hydrogen transfer is speculated to be the main driver for physical associations observed between the two groups. In silico analyses of several rumen methanogen genomes have previously shown that up to 5% of genes encode adhesin-like proteins, which may be central to rumen interspecies attachment. We hypothesized that adhesin-like proteins on methanogen cell surfaces facilitate attachment to protozoal hosts. Using phage display technology, we have identified a protein (Mru_1499) from Methanobrevibacter ruminantium M1 as an adhesin that binds to a broad range of rumen protozoa (including the genera Epidinium and Entodinium). This unique adhesin also binds the cell surface of the bacterium Butyrivibrio proteoclasticus, suggesting a broad adhesion spectrum for this protein.

摘要

共生关系在微生物世界中无处不在,并且在塑造共生双方的进化过程中发挥着重要作用。反刍动物发酵性前胃(瘤胃)中的原生动物和产甲烷古菌之间存在着最为有趣的互利共生关系之一。产甲烷菌作为共生体存在于原生动物的内部和表面,据推测种间氢转移是这两组生物之间观察到的物理关联的主要驱动力。此前对几种瘤胃产甲烷菌基因组的计算机分析表明,高达5%的基因编码类黏附素蛋白,这可能是瘤胃种间附着的关键因素。我们推测产甲烷菌细胞表面的类黏附素蛋白有助于其附着在原生动物宿主上。利用噬菌体展示技术,我们从反刍甲烷短杆菌M1中鉴定出一种蛋白(Mru_1499)作为黏附素,它能与多种瘤胃原生动物(包括艾氏原虫属和内毛虫属)结合。这种独特的黏附素还能结合解朊丁酸弧菌的细胞表面,表明该蛋白具有广泛的黏附谱。

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