首页> 外文OA文献 >The role of soil microbes in the global carbon cycle: tracking the below-ground microbial processing of plant-derived carbon for manipulating carbon dynamics in agricultural systems.
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The role of soil microbes in the global carbon cycle: tracking the below-ground microbial processing of plant-derived carbon for manipulating carbon dynamics in agricultural systems.

机译:土壤微生物在全球碳循环中的作用:跟踪地下微生物对植物来源碳的处理,以操纵农业系统中的碳动态。

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摘要

It is well known that atmospheric concentrations of carbon dioxide (CO2) (and other greenhouse gases) have increased markedly as a result of human activity since the industrial revolution. It is perhaps less appreciated that natural and managed soils are an important source and sink for atmospheric CO2 and that, primarily as a result of the activities of soil microorganisms, there is a soil-derived respiratory flux of CO2 to the atmosphere that overshadows by tenfold the annual CO2 flux from fossil fuel emissions. Therefore small changes in the soil carbon cycle could have large impacts on atmospheric CO2 concentrations. Here we discuss the role of soil microbes in the global carbon cycle and review the main methods that have been used to identify the microorganisms responsible for the processing of plant photosynthetic carbon inputs to soil. We discuss whether application of these techniques can provide the information required to underpin the management of agro-ecosystems for carbon sequestration and increased agricultural sustainability. We conclude that, although crucial in enabling the identification of plant-derived carbon-utilising microbes, current technologies lack the high-throughput ability to quantitatively apportion carbon use by phylogentic groups and its use efficiency and destination within the microbial metabolome. It is this information that is required to inform rational manipulation of the plant–soil system to favour organisms or physiologies most important for promoting soil carbon storage in agricultural soil.
机译:众所周知,自工业革命以来,由于人类活动,大气中二氧化碳(CO2)(和其他温室气体)的浓度显着增加。也许不那么容易理解,天然土壤和可管理的土壤是大气中CO2的重要来源和汇聚地,并且主要由于土壤微生物的活动,土壤中的CO2向大气中的呼吸通量已被十倍的阴影所掩盖化石燃料排放的年度二氧化碳通量。因此,土壤碳循环的微小变化可能会对大气中的二氧化碳浓度产生较大影响。在这里,我们讨论了土壤微生物在全球碳循环中的作用,并回顾了已用于鉴定负责处理植物光合作用碳输入土壤的微生物的主要方法。我们讨论了这些技术的应用是否可以提供必要的信息,以支持农业生态系统的碳固存管理和提高农业的可持续性。我们得出的结论是,尽管对确定植物来源的碳利用微生物至关重要,但当前的技术仍缺乏高通量的能力,无法量化系统族群对碳的使用量及其在微生物代谢组内的使用效率和目的地。正是这些信息有助于合理地控制植物-土壤系统,从而促进对促进农业土壤中碳储量最重要的生物或生理。

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