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首页> 外文期刊>Trends in Microbiology >Microbial Metagenomics Reveals Climate-Relevant Subsurface Biogeochemical Processes
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Microbial Metagenomics Reveals Climate-Relevant Subsurface Biogeochemical Processes

机译:微生物代谢基因组学揭示了与气候有关的地下生物地球化学过程

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摘要

Microorganisms play key roles in terrestrial system processes, including the turnover of natural organic carbon, such as leaf litter and woody debris that accumulate in soils and subsurface sediments. What has emerged from a series of recent DNA sequencing-based studies is recognition of the enormous variety of little known and previously unknown microorganisms that mediate recycling of these vast stores of buried carbon in subsoil compartments of the terrestrial system. More importantly, the genome resolution achieved in these studies has enabled association of specific members of these microbial communities with carbon compound transformations and other linked biogeochemical processes-such as the nitrogen cycle-that can impact the quality of groundwater, surface water, and atmospheric trace gas concentrations. The emerging view also emphasizes the importance of organism interactions through exchange of metabolic byproducts (e.g., within the carbon, nitrogen, and sulfur cycles) and via symbioses since many novel organisms exhibit restricted metabolic capabilities and an associated extremely small cell size. New, genome-resolved information reshapes our view of subsurface microbial communities and provides critical new inputs for advanced reactive transport models. These inputs are needed for accurate prediction of feedbacks in watershed biogeochemical functioning and their influence on the climate via the fluxes of greenhouse gases, CO2, CH4, and N2O.
机译:微生物在陆地系统过程中发挥关键作用,包括天然有机碳的周转,例如堆积在土壤和地下沉积物中的枯枝落叶和木屑。最近一系列基于DNA测序的研究表明,人们认识到许多鲜为人知的微生物,这些微生物介导了陆地系统下层土壤隔间中大量埋藏碳的再循环。更重要的是,这些研究中获得的基因组分辨率已使这些微生物群落的特定成员与碳化合物转化和其他相关的生物地球化学过程(例如氮循环)相关联,这可能会影响地下水,地表水和大气痕迹的质量。气体浓度。新出现的观点还强调了通过代谢副产物的交换(例如在碳,氮和硫循环内)和通过共生作用进行生物相互作用的重要性,因为许多新型生物显示出受限的代谢能力和相关的极小的细胞大小。由基因组解析的新信息重塑了我们对地下微生物群落的看法,并为先进的反应性运输模型提供了重要的新输入。这些输入对于准确预测流域生物地球化学功能的反馈及其通过温室气体,CO2,CH4和N2O的通量对气候的影响是必需的。

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