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Metatranscriptomic analysis of a high-sulfide aquatic spring reveals insights into sulfur cycling and unexpected aerobic metabolism

机译:高硫化物水生泉的转录组学分析揭示了对硫循环和意想不到的需氧代谢的见解

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摘要

Zodletone spring is a sulfide-rich spring in southwestern Oklahoma characterized by shallow, microoxic, light-exposed spring water overlaying anoxic sediments. Previously, culture-independent 16S rRNA gene based diversity surveys have revealed that Zodletone spring source sediments harbor a highly diverse microbial community, with multiple lineages putatively involved in various sulfur-cycling processes. Here, we conducted a metatranscriptomic survey of microbial populations in Zodletone spring source sediments to characterize the relative prevalence and importance of putative phototrophic, chemolithotrophic, and heterotrophic microorganisms in the sulfur cycle, the identity of lineages actively involved in various sulfur cycling processes, and the interaction between sulfur cycling and other geochemical processes at the spring source. Sediment samples at the spring’s source were taken at three different times within a 24-h period for geochemical analyses and RNA sequencing. In depth mining of datasets for sulfur cycling transcripts revealed major sulfur cycling pathways and taxa involved, including an unexpected potential role of Actinobacteria in sulfide oxidation and thiosulfate transformation. Surprisingly, transcripts coding for the cyanobacterial Photosystem II D1 protein, methane monooxygenase, and terminal cytochrome oxidases were encountered, indicating that genes for oxygen production and aerobic modes of metabolism are actively being transcribed, despite below-detectable levels (<1 µM) of oxygen in source sediment. Results highlight transcripts involved in sulfur, methane, and oxygen cycles, propose that oxygenic photosynthesis could support aerobic methane and sulfide oxidation in anoxic sediments exposed to sunlight, and provide a viewpoint of microbial metabolic lifestyles under conditions similar to those seen during late Archaean and Proterozoic eons.
机译:Zodletone泉是俄克拉荷马州西南部一个富含硫化物的泉,其特征是浅,微氧化,轻度暴露的泉水覆盖在缺氧沉积物上。以前,基于培养物的不依赖16S rRNA基因的多样性调查显示,佐丹酮泉源沉积物具有高度多样性的微生物群落,推测有多个谱系参与各种硫循环过程。在这里,我们对Zodletone泉水源沉积物中的微生物种群进行了转录组学调查,以表征推定的光养,化营养和异养微生物在硫循环中的相对流行度和重要性,活跃参与各种硫循环过程的血统的鉴定以及春季源头硫循环与其他地球化学过程之间的相互作用。在24小时内,在三个不同的时间采集了春季来源的沉积物样本,用于地球化学分析和RNA测序。在深入研究硫循环记录的数据集后,发现了主要的硫循环路径和分类单元,包括放线菌在硫化物氧化和硫代硫酸盐转化中的出乎意料的潜在作用。出乎意料的是,遇到了编码蓝细菌Photosystem II D1蛋白,甲烷单加氧酶和末端细胞色素氧化酶的转录本,表明尽管氧气的含量低于可检测的水平(<1 µM),但仍在积极转录氧气产生和有氧代谢模式的基因。在源沉积物中。结果突出显示了涉及硫,甲烷和氧循环的转录本,表明氧的光合作用可以支持暴露在阳光下的缺氧沉积物中的好氧甲烷和硫化物的氧化,并提供与古生代晚期和元古代类似的条件下微生物代谢生活方式的观点。永世。

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