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天然温带混交林中与枯木分解相关的真菌群落的演替发展

Successional Development of Fungal Communities Associated with Decomposing Deadwood in a Natural Mixed Temperate Forest.

作者信息

Lepinay Clémentine, Jiráska Lucie, Tláskal Vojtěch, Brabcová Vendula, Vrška Tomáš, Baldrian Petr

机构信息

Laboratory of Environmental Microbiology, Institute of Microbiology of the Czech Academy of Sciences, Vídeňská 1083, 14220 Praha 4, Czech Republic.

The School of Biological Sciences, University of Auckland, Auckland 1010, New Zealand.

出版信息

J Fungi (Basel). 2021 May 25;7(6):412. doi: 10.3390/jof7060412.

DOI:10.3390/jof7060412
PMID:34070657
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8228407/
Abstract

Deadwood represents an important carbon stock and contributes to climate change mitigation. Wood decomposition is mainly driven by fungal communities. Their composition is known to change during decomposition, but it is unclear how environmental factors such as wood chemistry affect these successional patterns through their effects on dominant fungal taxa. We analysed the deadwood of and across a deadwood succession series of >40 years in a natural fir-beech forest in the Czech Republic to describe the successional changes in fungal communities, fungal abundance and enzymatic activities and to link these changes to environmental variables. The fungal communities showed high levels of spatial variability and beta diversity. In young deadwood, fungal communities showed higher similarity among tree species, and fungi were generally less abundant, less diverse and less active than in older deadwood. pH and the carbon to nitrogen ratio (C/N) were the best predictors of the fungal community composition, and they affected the abundance of half of the dominant fungal taxa. The relative abundance of most of the dominant taxa tended to increase with increasing pH or C/N, possibly indicating that acidification and atmospheric N deposition may shift the community composition towards species that are currently less dominant.

摘要

倒木是一种重要的碳库,有助于缓解气候变化。木材分解主要由真菌群落驱动。已知其组成在分解过程中会发生变化,但尚不清楚木材化学等环境因素如何通过对优势真菌类群的影响来影响这些演替模式。我们分析了捷克共和国一片天然冷杉 - 山毛榉森林中超过40年的倒木演替系列中的倒木,以描述真菌群落、真菌丰度和酶活性的演替变化,并将这些变化与环境变量联系起来。真菌群落表现出高度的空间变异性和β多样性。在年轻的倒木中,真菌群落在树种之间表现出更高的相似性,并且真菌通常比在年老的倒木中丰度更低、多样性更低且活性更低。pH值和碳氮比(C/N)是真菌群落组成的最佳预测指标,它们影响了一半优势真菌类群的丰度。大多数优势类群的相对丰度倾向于随着pH值或C/N的增加而增加,这可能表明酸化和大气氮沉降可能会使群落组成向目前不太占优势的物种转变。

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Forest Microhabitat Affects Succession of Fungal Communities on Decomposing Fine Tree Roots.森林微生境影响着分解中的细树根上真菌群落的演替。
Front Microbiol. 2021 Jan 28;12:541583. doi: 10.3389/fmicb.2021.541583. eCollection 2021.
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Carbon fractions in the world's dead wood.世界枯木中的碳组分。
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Temperature and pH define the realised niche space of arbuscular mycorrhizal fungi.温度和 pH 值决定丛枝菌根真菌的实际生态位空间。
识别影响户外结构木材上微生物群落组成的环境因素。
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Interaction of oxalate with β-glucan: Implications for the fungal extracellular matrix, and metabolite transport.草酸盐与β-葡聚糖的相互作用:对真菌细胞外基质及代谢物转运的影响
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Factors Controlling Dead Wood Decomposition in an Old-Growth Temperate Forest in Central Europe.中欧一片原始温带森林中控制枯木分解的因素
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Fungal Community Development in Decomposing Fine Deadwood Is Largely Affected by Microclimate.分解中的细死木中的真菌群落发展在很大程度上受小气候影响。
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Exploring the Relationships between Macrofungi Diversity and Major Environmental Factors in Wunvfeng National Forest Park in Northeast China.探索中国东北五女峰国家森林公园大型真菌多样性与主要环境因子之间的关系。
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FungalTraits vs. FUNGuild: Comparison of Ecological Functional Assignments of Leaf- and Needle-Associated Fungi Across 12 Temperate Tree Species.真菌特征与真菌群落:12 个温带树种的叶际和枝际真菌的生态功能分配比较。
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Sheltering Role of Well-Decayed Conifer Logs for Forest Floor Fungi in Long-Term Polluted Boreal Forests.在长期受污染的北方森林中,腐朽良好的针叶树原木对森林地表真菌的庇护作用
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