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Methanotrophic bacteria in warm geothermal spring sediments identified using stable-isotope probing

机译:使用稳定同位素探测鉴定温暖的地热泉水沉积物中的甲烷营养细菌

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We investigated methanotrophic bacteria in sediments of several warm geothermal springs ranging in temperature from 22 to 45 ℃. Methane oxidation was measured at potential rates up to 141 lmol CH_4 d~(-1) g~(-1) sediment. Active methanotrophs were identified using ~(13)CH_4 stable-isotope probing(SIP) incubations performed at close to in situ temperatures for each site. Quantitative (q) PCR of pmoA genes identified the position of the heavy(~(13)C-labelled) DNA fractions in density gradients, and 16S rRNA gene pyrotag sequencing of the heavy fractions was performed to identify the active methanotrophs. Methanotroph communities identified in heavy fractions of all samples were predominated by species similar (≥ 95% 16S rRNA gene identities) to previously characterized Gammaproteobacteria and Alphaproteobacteria methanotrophs. Among the five hottest samples (45 ℃), members of the Gammaproteobacteria genus Methylocaldum dominated in two cases, while three others were dominated by an OTU closely related (96.8% similarity) to the Alphaproteobacteria genus Methylocapsa. These results suggest that diverse methanotroph groups are adapted to warm environments, including the Methylocapsa-Methylocella-Methyloferula group, which has previously only been detected in cooler sites.
机译:我们调查了温度在22至45℃范围内的几个温暖地热温泉沉积物中的甲烷营养细菌。在最高141 lmol CH_4 d〜(-1)g〜(-1)沉积物的潜在速率下测量甲烷氧化。使用〜(13)CH_4稳定同位素探测(SIP)孵育在每个位置接近原位温度下鉴定出活性甲烷营养生物。对pmoA基因进行定量(q)PCR鉴定了重(〜(13)C标记)DNA馏分在密度梯度中的位置,并对重馏分进行了16S rRNA基因热标记测序,以鉴定活性甲烷营养菌。在所有样品的大部分中鉴定出的甲烷营养菌群落主要由与先前鉴定的γ-变形杆菌和α-变形甲烷菌相似的物种(≥95%16S rRNA基因同一性)组成。在五个最热的样本(45℃)中,丙型杆菌属属甲基化杆菌占优势,其中两个案例占主导地位,而其他三例由与甲型杆菌属甲壳菌属密切相关的OTU占优势(相似性为96.8%)。这些结果表明,各种甲烷营养族都适应了温暖的环境,包括甲壳纲-甲基球菌-甲基化铁基团,该基团以前仅在较凉的地方被发现。

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