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Correlations between the composition of modular fungal communities and litter decomposition-associated ecosystem functions

机译:模块化真菌群落组成与凋落物分解相关的生态系统功能之间的相关性

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摘要

Microbial co-occurrence network analyses provide important information on ecological interactions between different microbial Operational Taxonomic Units (OTUs), and often indicate that total microbial communities are sub-structured into modules. Here we investigate the fungal communities associated with beech leaf litter decomposition over 473 days using pyrotag sequencing of the fungal ITS rRNA genes. Our results demonstrate that the total fungal communities present during the two major decomposition stages are sub-structured into four modules each, giving eight modular fungal communities in total. These modular communities displayed different relationships with leaf litter physicochemical properties and ecological functions. During the early decomposition stage, modules 2 (dominated by Gyoerffyella sp.1 and Mycosphaerella sp.) and 4 (Xylariales OTU3, Cylindrosympodium sp.1 and Leotiomycetes OTU12) correlated significantly with both hydrolytic and oxidative enzyme activities (P < 0.05). During the later decomposition stage, module 7 (Clitocybe phaeophthalma and Ceratobasidium sp.) correlated significantly with the activities of laccase and general peroxidase (P < 0.05). Our results demonstrate that individual fungal subcommunities are largely responsible for providing specific ecosystem functions in litter decomposition, which improves our understanding of the factors that determine the distribution patterns of fungi and their potential roles in key ecosystem processes. (C) 2016 Elsevier Ltd and British Mycological Society. All rights reserved.
机译:微生物共生网络分析提供了有关不同微生物操作分类单位(OTU)之间的生态相互作用的重要信息,并且经常表明总的微生物群落亚结构化为模块。在这里,我们使用真菌ITS rRNA基因的热标记测序研究了473天与山毛榉凋落物分解相关的真菌群落。我们的结果表明,在两个主要分解阶段中存在的总真菌群落每个被亚结构化为四个模块,总共提供了八个模块化真菌群落。这些模块化的社区显示出与凋落物理化性质和生态功能的不同关系。在分解的早期阶段,模块2(由Gyoerffyella sp.1和Mycosphaerella sp。主导)和模块4(木霉OTU3,Cylindrosympodium sp.1和Leotiomycetes OTU12)与水解和氧化酶活性均显着相关(P <0.05)。在随后的分解阶段,模块7(食盐眼球藻和角藻属)与漆酶和一般的过氧化物酶的活性显着相关(P <0.05)。我们的结果表明,单个真菌亚群落主要负责提供凋落物分解中的特定生态系统功能,从而增进了我们对决定真菌分布模式的因素及其在关键生态系统过程中的潜在作用的了解。 (C)2016 Elsevier Ltd和英国Mycological Society。版权所有。

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