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Activity and community structures of sulfate-reducing microorganisms in polar temperate and tropical marine sediments

机译:极地温带和热带海洋沉积物中还原硫酸盐的微生物的活性和群落结构

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摘要

Temperature has a fundamental impact on the metabolic rates of microorganisms and strongly influences microbial ecology and biogeochemical cycling in the environment. In this study, we examined the catabolic temperature response of natural communities of sulfate-reducing microorganisms (SRM) in polar, temperate and tropical marine sediments. In short-term sediment incubation experiments with 35S-sulfate, we demonstrated how the cardinal temperatures for sulfate reduction correlate with mean annual sediment temperatures, indicating specific thermal adaptations of the dominant SRM in each of the investigated ecosystems. The community structure of putative SRM in the sediments, as revealed by pyrosequencing of bacterial 16S rRNA gene amplicons and phylogenetic assignment to known SRM taxa, consistently correlated with in situ temperatures, but not with sediment organic carbon concentrations or C:N ratios of organic matter. Additionally, several species-level SRM phylotypes of the class Deltaproteobacteria tended to co-occur at sites with similar mean annual temperatures, regardless of geographic distance. The observed temperature adaptations of SRM imply that environmental temperature is a major controlling variable for physiological selection and ecological and evolutionary differentiation of microbial communities.
机译:温度对微生物的代谢速率具有根本影响,并强烈影响环境中的微生物生态学和生物地球化学循环。在这项研究中,我们检查了极地,温带和热带海洋沉积物中天然存在的硫酸盐还原微生物(SRM)的分解代谢温度响应。在使用 35 S-硫酸盐进行的短期沉积物温育实验中,我们证明了减少硫酸盐的基本温度如何与平均年沉积物温度相关,表明了每个研究生态系统中主要SRM的特定热适应性。细菌16S rRNA基因扩增子的焦磷酸测序和已知SRM分类群的系统发生分配揭示了沉积物中推定的SRM的群落结构,其与原位温度始终相关,但与沉积物中的有机碳浓度或有机物质的C:N比值​​无关。此外,Deltaproteobacteria类的几种物种级SRM系统型往往在年平均温度相似的地点共存,而与地理距离无关。 SRM的温度适应性表明,环境温度是微生物群落的生理选择以及生态和进化分化的主要控制变量。

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