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Unusual Genomic Traits Suggest Methylocystis bryophila S285 to Be Well Adapted for Life in Peatlands

机译:不寻常的基因组特征表明嗜甲基甲基囊藻S285能够很好地适应泥炭地的生活。

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摘要

The genus Methylocystis belongs to the class Alphaproteobacteria, the family Methylocystaceae, and encompasses aerobic methanotrophic bacteria with the serine pathway of carbon assimilation. All Methylocystis species are able to fix dinitrogen and several members of this genus are also capable of using acetate or ethanol in the absence of methane, which explains their wide distribution in various habitats. One additional trait that enables their survival in the environment is possession of two methane-oxidizing isozymes, the conventional particulate methane monooxygenase (pMMO) with low-affinity to substrate (pMMO1) and the high-affinity enzyme (pMMO2). Here, we report the finished genome sequence of Methylocystis bryophila S285, a pMMO2-possessing methanotroph from a Sphagnum-dominated wetland, and compare it to the genome of Methylocystis sp. strain SC2, which is the first methanotroph with confirmed high-affinity methane oxidation potential. The complete genome of Methylocystis bryophila S285 consists of a 4.53 Mb chromosome and one plasmid, 175 kb in size. The genome encodes two types of particulate MMO (pMMO1 and pMMO2), soluble MMO and, in addition, contains a pxmABC-like gene cluster similar to that present in some gammaproteobacterial methanotrophs. The full set of genes related to the serine pathway, the tricarboxylic acid cycle as well as the ethylmalonyl-CoA pathway is present. In contrast to most described methanotrophs including Methylocystis sp. strain SC2, two different types of nitrogenases, that is, molybdenum–iron and vanadium–iron types, are encoded in the genome of strain S285. This unique combination of genome-based traits makes Methylocystis bryophila well adapted to the fluctuation of carbon and nitrogen sources in wetlands.
机译:Methylocystis属属于Alphaproteobacteria属,属于Methylocystaceae科,包括具有丝氨酸碳同化途径的好氧甲烷氧化菌。所有的甲基囊藻物种都能够固定二氮,并且该属的几个成员也能够在不存在甲烷的情况下使用乙酸盐或乙醇,这解释了它们在各种生境中的广泛分布。使它们在环境中生存的另一个特征是拥有两种甲烷氧化同工酶,即对底物具有低亲和力的常规颗粒甲烷单加氧酶(pMMO)和高亲和力酶(pMMO2)。在这里,我们报告完成的基因组序列的嗜麦芽孢杆菌S285,从食草占主导地位的湿地的pMMO2拥有甲烷营养,并将其与甲基囊藻sp。的基因组进行比较。菌株SC2,它是第一个具有高亲和力甲烷氧化潜力的甲烷营养菌。嗜甲基芽孢杆菌S285的完整基因组由4.53 Mb染色体和一个175 plasmidkb大小的质粒组成。该基因组编码两种类型的颗粒MMO(pMMO1和pMMO2),即可溶性MMO,此外,它还包含类似于某些gProteobacterial甲烷异养菌中的pxmABC样基因簇。存在与丝氨酸途径,三羧酸循环以及乙基丙二酰辅酶A途径有关的全套基因。与大多数描述的甲烷营养菌包括甲基囊藻。菌株SC2在菌株S285的基因组中编码了两种不同类型的固氮酶,即钼铁和钒铁。这种基于基因组特征的独特组合使嗜蓝麦芽孢杆菌非常适应湿地中碳和氮源的波动。

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