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真菌木材腐朽物种的组合成分对气候和木材质量如何影响分解有着重大影响。

Assemblage composition of fungal wood-decay species has a major influence on how climate and wood quality modify decomposition.

作者信息

Venugopal Parvathy, Junninen Kaisa, Edman Mattias, Kouki Jari

机构信息

School of Forest Sciences, University of Eastern Finland, PO Box 111, 80101 Joensuu, Finland.

Metsähallitus Parks and Wildlife Finland, c/o University of Eastern Finland, PO Box 111, FI-80101 Joensuu, Finland.

出版信息

FEMS Microbiol Ecol. 2017 Mar 1;93(3). doi: 10.1093/femsec/fix002.

Abstract

The interactions among saprotrophic fungal species, as well as their interactions with environmental factors, may have a major influence on wood decay and carbon release in ecosystems. We studied the effect that decomposer diversity (species richness and assemblage composition) has on wood decomposition when the climatic variables and substrate quality vary simultaneously. We used two temperatures (16 and 21°C) and two humidity levels (70% and 90%) with two wood qualities (wood from managed and old-growth forests) of Pinus sylvestris. In a 9-month experiment, the effects of fungal diversity were tested using four wood-decaying fungi (Antrodia xantha, Dichomitus squalens, Fomitopsis pinicola and Gloeophyllum protractum) at assemblage levels of one, two and four species. Wood quality and assemblage composition affected the influence of climatic factors on decomposition rates. Fungal assemblage composition was found to be more important than fungal species richness, indicating that species-specific fungal traits are of paramount importance in driving decomposition. We conclude that models containing fungal wood-decay species (and wood-based carbon) need to take into account species-specific and assemblage composition-specific properties to improve predictive capacity in regard to decomposition-related carbon dynamics.

摘要

腐生真菌物种之间的相互作用,以及它们与环境因素的相互作用,可能会对生态系统中的木材腐烂和碳释放产生重大影响。我们研究了在气候变量和底物质量同时变化时,分解者多样性(物种丰富度和组合组成)对木材分解的影响。我们使用了两种温度(16和21°C)、两种湿度水平(70%和90%)以及两种质量的欧洲赤松木材(来自人工林和原始林)。在一个为期9个月的实验中,使用四种木材腐朽真菌(黄多孔菌、鳞皮扇菇、松白腐菌和长喙粘褶菌)在一个、两个和四个物种的组合水平上测试真菌多样性的影响。木材质量和组合组成影响了气候因素对分解速率的影响。发现真菌组合组成比真菌物种丰富度更重要,这表明特定物种的真菌特征在驱动分解方面至关重要。我们得出结论,包含真菌木材腐朽物种(和基于木材的碳)的模型需要考虑特定物种和组合组成特定的属性,以提高对与分解相关的碳动态的预测能力。

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