CNRS/INSU, IRD, MIO, UM 110, Aix-Marseille Université, Université du Sud Toulon-Var, Marseille, France.
Royal Netherlands Institute for Sea Research, Texel, Netherlands.
PLoS One. 2024 Aug 26;19(8):e0308405. doi: 10.1371/journal.pone.0308405. eCollection 2024.
The archaeal isolate J.3.6.1-F.2.7.3T was obtained from an anaerobic enrichment culture, where it may play an important role in methane production during pyrite formation. The new isolate formed a species-level clade with Methanospirillum hungatei strains GP1 and SK, which is separate from the type strain JF-1T. Cultivation-independent surveys indicate the occurrence of this phylogenetic group in sediments and anaerobic digesters. The abundance of this clade appears to be negatively affected by high nitrogen loads, indicating a sensitivity to certain nitrogen compounds that is not known in M. hungatei JF-1T. The relatively large core genome of this Methanospirillum clade is indicative of niche specialization and efficient control of horizontal gene transfer. Genes for nitrogenase and F420-dependent secondary alcohol dehydrogenase contribute to the metabolic versatility of this lineage. Characteristics of the new isolate such as the ability to utilize 2-propanol as an electron donor or the requirement for acetate as a carbon source are found also in the strains GP1 and SK, but not in the type strain M. hungatei JF-1T. Based on the genomic differences to related species, a new species within the genus Methanospirillum is proposed with the name M. purgamenti sp. nov. The determined phenotypic characteristics support this proposal and indicate a metabolic adaptation to a separate ecological niche.
该古菌分离株 J.3.6.1-F.2.7.3T 是从一个厌氧富集培养物中获得的,它可能在黄铁矿形成过程中的甲烷产生中发挥重要作用。新分离株与 Methanospirillum hungatei 菌株 GP1 和 SK 形成了一个种水平的分支,与 JF-1T 模式菌株分开。非培养调查表明,该进化枝存在于沉积物和厌氧消化器中。该分支的丰度似乎受到高氮负荷的负面影响,表明对某些氮化合物的敏感性在 M. hungatei JF-1T 中尚不清楚。该 Methanospirillum 分支相对较大的核心基因组表明其具有生态位特化和有效控制水平基因转移的能力。固氮酶和 F420 依赖的仲醇脱氢酶的基因有助于该谱系的代谢多功能性。新分离株的特征,如利用 2-丙醇作为电子供体的能力或需要乙酸盐作为碳源的能力,也存在于菌株 GP1 和 SK 中,但不存在于 M. hungatei JF-1T 模式菌株中。基于与相关物种的基因组差异,提出了 Methanospirillum 属内的一个新种,命名为 M. purgamenti sp. nov.。所确定的表型特征支持这一建议,并表明其对独立生态位的代谢适应。