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两种菌根真菌类群之间的不对称相互作用及其对宿主植物定植的影响

Asymmetric Interaction Between Two Mycorrhizal Fungal Guilds and Consequences for the Establishment of Their Host Plants.

作者信息

Fernández Natalia, Knoblochová Tereza, Kohout Petr, Janoušková Martina, Cajthaml Tomáš, Frouz Jan, Rydlová Jana

机构信息

Laboratorio de Microbiología Aplicada y Biotecnología, Centro Regional Universitario Bariloche, Universidad Nacional del Comahue - IPATEC, Bariloche, Argentina.

Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Buenos Aires, Argentina.

出版信息

Front Plant Sci. 2022 Jun 9;13:873204. doi: 10.3389/fpls.2022.873204. eCollection 2022.

Abstract

Arbuscular mycorrhiza (AM) and ectomycorrhiza (EcM) are the most abundant and widespread types of mycorrhizal symbiosis, but there is little and sometimes conflicting information regarding the interaction between AM fungi (AMF) and EcM fungi (EcMF) in soils. Their competition for resources can be particularly relevant in successional ecosystems, which usually present a transition from AM-forming herbaceous vegetation to EcM-forming woody species. The aims of this study were to describe the interaction between mycorrhizal fungal communities associated with AM and EcM hosts naturally coexisting during primary succession on spoil banks and to evaluate how this interaction affects growth and mycorrhizal colonization of seedlings of both species. We conducted a greenhouse microcosm experiment with and as EcM and AM hosts, respectively. They were cultivated in three-compartment rhizoboxes. Two lateral compartments contained different combinations of both host plants as sources of fungal mycelia colonizing the middle compartment, where fungal biomass, diversity, and community composition as well as the growth of each host plant species' seedlings were analyzed. The study's main finding was an asymmetric outcome of the interaction between the two plant species: while and associated AMF reduced the abundance of EcMF in soil, modified the composition of EcMF communities, and also tended to decrease growth and mycorrhizal colonization of seedlings, the EcM host did not have such effects on AM plants and associated AMF. In the context of primary succession, these findings suggest that ruderal AM hosts could hinder the development of EcM tree seedlings, thus slowing the transition from AM-dominated to EcM-dominated vegetation in early successional stages.

摘要

丛枝菌根(AM)和外生菌根(EcM)是菌根共生中最为丰富和广泛的类型,但关于土壤中AM真菌(AMF)和EcM真菌(EcMF)之间的相互作用,目前的信息较少,且有时相互矛盾。在演替生态系统中,它们对资源的竞争可能尤为重要,因为演替生态系统通常呈现出从形成AM的草本植被向形成EcM的木本物种的过渡。本研究的目的是描述在废弃土堆上原生演替过程中自然共存的与AM和EcM宿主相关的菌根真菌群落之间的相互作用,并评估这种相互作用如何影响这两个物种幼苗的生长和菌根定殖。我们分别以[具体植物名1]和[具体植物名2]作为EcM和AM宿主进行了温室微宇宙实验。它们种植在三室根箱中。两个侧室包含两种宿主植物的不同组合,作为定殖中间室的真菌菌丝体来源,在中间室分析真菌生物量、多样性、群落组成以及每种宿主植物幼苗的生长情况。该研究的主要发现是这两种植物物种之间相互作用的不对称结果:虽然[具体植物名1]和相关的AMF降低了土壤中EcMF的丰度,改变了EcMF群落的组成,并且还倾向于降低[具体植物名2]幼苗的生长和菌根定殖,但EcM宿主对AM植物和相关的AMF没有这种影响。在原生演替的背景下,这些发现表明杂草性的AM宿主可能会阻碍EcM树木幼苗的发育,从而减缓早期演替阶段从以AM为主的植被向以EcM为主的植被的过渡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bbb/9218742/562066120e78/fpls-13-873204-g001.jpg

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