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Comprehensive Genomic Analyses of the OM43 Clade Including a Novel Species from the Red Sea Indicate Ecotype Differentiation among Marine Methylotrophs

机译:OM43进化枝的全面基因组分析包括来自红海的新物种表明海洋甲基营养生物之间的生态型差异

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摘要

The OM43 clade within the family Methylophilaceae of Betaproteobacteria represents a group of methylotrophs that play important roles in the metabolism of C1 compounds in marine environments and other aquatic environments around the globe. Using dilution-to-extinction cultivation techniques, we successfully isolated a novel species of this clade (here designated MBRS-H7) from the ultraoligotrophic open ocean waters of the central Red Sea. Phylogenomic analyses indicate that MBRS-H7 is a novel species that forms a distinct cluster together with isolate KB13 from Hawaii (Hawaii-Red Sea [H-RS] cluster) that is separate from the cluster represented by strain HTCC2181 (from the Oregon coast). Phylogenetic analyses using the robust 16S-23S internal transcribed spacer revealed a potential ecotype separation of the marine OM43 clade members, which was further confirmed by metagenomic fragment recruitment analyses that showed trends of higher abundance in low-chlorophyll and/or high-temperature provinces for the H-RS cluster but a preference for colder, highly productive waters for the HTCC2181 cluster. This potential environmentally driven niche differentiation is also reflected in the metabolic gene inventories, which in the case of the H-RS cluster include those conferring resistance to high levels of UV irradiation, temperature, and salinity. Interestingly, we also found different energy conservation modules between these OM43 subclades, namely, the existence of the NADH:quinone oxidoreductase complex I (NUO) system in the H-RS cluster and the nonhomologous NADH:quinone oxidoreductase (NQR) system in the HTCC2181 cluster, which might have implications for their overall energetic yields.
机译:Betaproteobacteria的嗜甲基菌科中的OM43进化枝代表一组甲基营养生物,它们在全球海洋环境和其他水生环境中的C1化合物代谢中起重要作用。使用稀释灭绝栽培技术,我们成功地从中部红海中的超寡营养开放性海水中分离出了该进化枝的一个新物种(此处称为MBRS-H7)。系统发育学分析表明,MBRS-H7是一个新物种,与来自夏威夷(夏威夷-红海[H-RS]簇)的分离株KB13形成了独特的簇,与菌株HTCC2181代表的簇(来自俄勒冈州海岸)分离。系统发育分析使用健壮的16S-23S内部转录间隔子揭示了海洋OM43进化枝成员的潜在生态型分离,其进一步的宏基因组片段募集分析进一步证实,该分析表明低叶绿素和/或高温省的丰度更高。 H-RS群集,但更喜欢HTCC2181群集的较冷,高产水。这种潜在的环境驱动的生态位分化也反映在代谢基因清单中,在H-RS簇的情况下,这些清单包括那些对高水平紫外线辐射,温度和盐度具有抗性的基因。有趣的是,我们还在这些OM43小节中发现了不同的节能模块,即H-RS簇中存在NADH:醌氧化还原酶复合体I(NUO)系统和HTCC2181中存在非同源NADH:醌氧化还原酶(NQR)系统。集群,这可能会对它们的整体能量产量产生影响。

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