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Elevated CO2 impacts ectomycorrhiza-mediated forest soil carbon flow: fungal biomass production, respiration and exudation

机译:CO2浓度升高影响外生菌根介导的森林土壤碳流量:真菌生物量的产生,呼吸和渗出

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摘要

Large quantities of carbon are exchanged between terrestrial ecosystems and the atmosphere, and extensive research efforts are made to understand carbon cycling and the impact of elevated atmospheric CO2 levels. The response of soils to increased carbon availability is largely driven by root associated ectomycorrhizal fungi in forest ecosystems, since they partition host derived carbon belowground. In this review I examine how CO2 enrichment affects ectomycorrhizal fungal biomass production, exudation, respiration, soil carbon fluxes, and other soil microbes, and the importance of the fungal species in these responses. I briefly discuss the significance of CO2 alterations in the mycorrhizal symbiosis in the context of consequences for carbon sequestration, and present research priorities. (C) 2011 Elsevier Ltd and The British Mycological Society. All rights reserved.CT Scientific Sessions on Fungi and Global Change/IMC9 ConferenceCY AUG, 2010CL Edinburgh, SCOTLAND
机译:陆地生态系统与大气之间交换了大量的碳,并进行了广泛的研究工作以了解碳循环和大气中二氧化碳水平升高的影响。土壤对增加的碳可利用性的响应很大程度上是由森林生态系统中与根相关的根外生菌根真菌驱动的,因为它们将宿主衍生的碳分配到地下。在这篇综述中,我研究了CO2富集如何影响外生菌根真菌生物量的产生,渗出,呼吸,土壤碳通量和其他土壤微生物,以及真菌物种在这些反应中的重要性。我简要讨论了在固碳后果的背景下,CO2改变在菌根共生中的重要性,并提出了当前的研究重点。 (C)2011 Elsevier Ltd和英国Mycological Society。保留所有权利.CT关于真菌和全球变化的科学会议/ IMC9会议2010年8月CY苏格兰爱丁堡

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