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外生菌根菌丝的产量在挪威云杉林郁闭期间达到峰值。

Production of ectomycorrhizal mycelium peaks during canopy closure in Norway spruce forests.

机构信息

Department of Microbial Ecology, Lund University, SE-223 62 Lund, Sweden.

Swedish University of Agricultural Sciences, Tönnersjöheden Experimental Forest, PO Box 17, SE-31038 Simlångsdalen, Sweden.

出版信息

New Phytol. 2010 Sep;187(4):1124-1134. doi: 10.1111/j.1469-8137.2010.03324.x. Epub 2010 Jun 15.

Abstract

*Here, species composition and biomass production of actively growing ectomycorrhizal (EM) mycelia were studied over the rotation period of managed Norway spruce (Picea abies) stands in south-western Sweden. *The EM mycelia were collected using ingrowth mesh bags incubated in the forest soil during one growing season. Fungal biomass was estimated by ergosterol analysis and the EM species were identified by 454 sequencing of internal transcribed spacer (ITS) amplicons. Nutrient availability and the fungal biomass in soil samples were also estimated. *Biomass production peaked in young stands (10-30 yr old) before the first thinning phase. Tylospora fibrillosa dominated the EM community, especially in these young stands, where it constituted 80% of the EM amplicons derived from the mesh bags. Species richness increased in older stands. *The establishment of EM mycelial networks in young Norway spruce stands requires large amounts of carbon, while much less is needed to sustain the EM community in older stands. The variation in EM biomass production over the rotation period has implications for carbon sequestration rates in forest soils.

摘要

*本研究旨在探讨瑞典西南部人工管理挪威云杉(Picea abies)林分轮伐周期内活跃生长的外生菌根(ectomycorrhizal,EM)真菌菌丝的物种组成和生物量生产。*采用生长季内在森林土壤中培养的植入网袋收集 EM 菌丝,通过麦角甾醇分析估算真菌生物量,并通过内部转录间隔区(internal transcribed spacer,ITS)扩增子的 454 测序鉴定 EM 物种。还估算了土壤样本中的养分供应和真菌生物量。*生物量生产在第一次间伐前的幼龄林(10-30 年生)中达到峰值。纤孔菌属(Tylospora)的 T. fibrillosa 主导着 EM 群落,尤其是在这些幼龄林中,它构成了网袋衍生的 EM 扩增子的 80%。在较老的林分中,物种丰富度增加。*年轻的挪威云杉林中 EM 菌丝网络的建立需要大量的碳,而在较老的林分中维持 EM 群落所需的碳要少得多。EM 生物量生产在轮伐周期内的变化对森林土壤中的碳固存速率有影响。

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