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土壤真菌群落组成和功能相似性在不同气候条件下发生变化。

Soil fungal community composition and functional similarity shift across distinct climatic conditions.

机构信息

Department of Ecology, Evolution, and Marine Biology, University of California, Santa Barbara, Santa Barbara, CA 93106-9620, USA.

出版信息

FEMS Microbiol Ecol. 2020 Dec 2;96(12). doi: 10.1093/femsec/fiaa193.

Abstract

A large part of ecosystem function in woodland systems depends on soil fungal communities. However, global climate change has the potential to fundamentally alter these communities as fungal species are filtered with changing environmental conditions. In this study, we examined the potential effects of climate on host-associated (i.e. tree-associated) soil fungal communities at climatically distinct sites in the Tehachapi Mountains in California, where more arid conditions represent likely regional climate futures. We found that soil fungal community composition changes strongly across sites, with species richness and diversity being highest at the most arid site. However, host association may buffer the effects of climate on community composition, as host-associated fungal communities are more similar to each other across climatically distinct sites than the whole fungal community. Lastly, an examination of functional traits for ectomycorrhizal fungi, a well-studied guild of fungal mutualist species, showed that stress-tolerant traits were more abundant at arid sites than mesic sites, providing a mechanistic understanding of these community patterns. Taken together, our results indicate that fungal community composition will likely shift with future climate change but that host association may buffer these effects, with shifts in functional traits having implications for future ecosystem function.

摘要

林地系统的大部分生态系统功能取决于土壤真菌群落。然而,随着真菌物种随着环境条件的变化而被筛选,全球气候变化有可能从根本上改变这些群落。在这项研究中,我们研究了气候对加利福尼亚特哈查比山脉不同气候地点与宿主相关(即与树木相关)的土壤真菌群落的潜在影响,在这些地点,更干旱的条件代表了可能的区域气候未来。我们发现,土壤真菌群落组成在不同地点之间发生了强烈的变化,最干旱的地点物种丰富度和多样性最高。然而,宿主的相关性可能会缓冲气候对群落组成的影响,因为与整个真菌群落相比,宿主相关的真菌群落之间在不同气候条件下更为相似。最后,对菌根真菌(一种研究充分的真菌共生种属)的功能特征进行了检查,菌根真菌是一种研究充分的真菌共生种属,结果表明,耐旱特征在干旱地点比湿润地点更为丰富,为这些群落模式提供了一种机制上的理解。总之,我们的研究结果表明,随着未来气候变化,真菌群落组成可能会发生变化,但宿主的相关性可能会缓冲这些影响,功能特征的变化对未来的生态系统功能有影响。

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