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一组外生菌根真菌限制了北方森林的有机质积累。

A group of ectomycorrhizal fungi restricts organic matter accumulation in boreal forest.

机构信息

Department of Soil and Environment, Swedish University of Agricultural Sciences, Uppsala, Sweden.

Department of Forest Mycology and Plant Pathology, Swedish University of Agricultural Sciences, Uppsala, Sweden.

出版信息

Ecol Lett. 2021 Jul;24(7):1341-1351. doi: 10.1111/ele.13746. Epub 2021 May 2.

Abstract

Boreal forest soils are important global carbon sinks, with significant storage in the organic topsoil. Decomposition of these stocks requires oxidative enzymes, uniquely produced by fungi. Across Swedish boreal forests, we found that local carbon storage in the organic topsoil was 33% lower in the presence of a group of closely related species of ectomycorrhizal fungi - Cortinarius acutus s.l.. This observation challenges the prevailing view that ectomycorrhizal fungi generally act to increase carbon storage in soils but supports the idea that certain ectomycorrhizal fungi can complement free-living decomposers, maintaining organic matter turnover, nutrient cycling and tree productivity under nutrient-poor conditions. The indication that a narrow group of fungi may exert a major influence on carbon cycling questions the prevailing dogma of functional redundancy among microbial decomposers. Cortinarius acutus s.l. responds negatively to stand-replacing disturbance, and associated population declines are likely to increase soil carbon sequestration while impeding long-term nutrient cycling.

摘要

北方森林土壤是重要的全球碳汇,其有机表土中储存着大量的碳。这些碳储量的分解需要氧化酶,而这些酶是由真菌独特产生的。在瑞典的北方森林中,我们发现一组密切相关的外生菌根真菌——Cortinarius acutus s.l. 的存在会使有机表土中的本地碳储存降低 33%。这一观察结果挑战了外生菌根真菌通常会增加土壤碳储存的普遍观点,但支持了某些外生菌根真菌可以与自由生活的分解者互补的观点,在外源养分贫瘠的条件下维持有机质的转化、养分循环和树木生产力。一小部分真菌可能对碳循环产生重大影响的迹象,对微生物分解者功能冗余的普遍观点提出了质疑。Cortinarius acutus s.l. 对外生菌根真菌群落更替干扰反应消极,相关种群减少可能会增加土壤碳固存,同时阻碍长期的养分循环。

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