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近地表土壤微生物群落对模拟地下 CO2 储存泄漏的功能反应。

Functional response of a near-surface soil microbial community to a simulated underground CO2 storage leak.

机构信息

Department of Microbiology and Immunology, Otago School of Medical Sciences, University of Otago, Dunedin, New Zealand ; Cellular, Molecular and Microbial Biology Program and Systems Ecology Program, Division of Biological Sciences, The University of Montana, Missoula, Montana, United States of America.

出版信息

PLoS One. 2013 Nov 26;8(11):e81742. doi: 10.1371/journal.pone.0081742. eCollection 2013.

Abstract

Understanding the impacts of leaks from geologic carbon sequestration, also known as carbon capture and storage, is key to developing effective strategies for carbon dioxide (CO2) emissions management and mitigation of potential negative effects. Here, we provide the first report on the potential effects of leaks from carbon capture and storage sites on microbial functional groups in surface and near-surface soils. Using a simulated subsurface CO2 storage leak scenario, we demonstrate how CO2 flow upward through the soil column altered both the abundance (DNA) and activity (mRNA) of microbial functional groups mediating carbon and nitrogen transformations. These microbial responses were found to be seasonally dependent and correlated to shifts in atmospheric conditions. While both DNA and mRNA levels were affected by elevated CO2, they did not react equally, suggesting two separate mechanisms for soil microbial community response to high CO2 levels. The results did not always agree with previous studies on elevated atmospheric (rather than subsurface) CO2 using FACE (Free-Air CO2 Enrichment) systems, suggesting that microbial community response to CO2 seepage from the subsurface might differ from its response to atmospheric CO2 increases.

摘要

了解地质碳封存(又称碳捕获与封存)泄漏的影响,是制定二氧化碳(CO2)排放管理和减轻潜在负面影响的有效策略的关键。在这里,我们首次报告了碳捕获和储存地点泄漏对地表和近地表土壤中微生物功能群的潜在影响。我们利用模拟的地下 CO2 储存泄漏场景,展示了 CO2 通过土壤柱向上流动如何改变了介导碳和氮转化的微生物功能群的丰度(DNA)和活性(mRNA)。这些微生物反应被发现具有季节性依赖性,并与大气条件的变化相关。虽然 DNA 和 mRNA 水平都受到高 CO2 的影响,但它们的反应并不相同,这表明土壤微生物群落对高 CO2 水平的反应存在两种不同的机制。结果并不总是与先前使用 FACE(自由空气 CO2 富集)系统对大气(而非地下)中升高的 CO2 的研究一致,这表明微生物群落对地下 CO2 泄漏的反应可能与对大气 CO2 增加的反应不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c28e/3841170/dc88d7696c2d/pone.0081742.g001.jpg

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