Road Disturbance Shifts Root Fungal Symbiont Types and Reduces the Connectivity of Plant‐Fungal Co‐Occurrence Networks in Mountains

野生种 生物 物种丰富度 生态学 通才与专种 扰动(地质) 植物群落 嵌套 生态系统 真菌多样性 植被(病理学) 乡土植物 生物多样性 球囊菌门 寄主(生物学) 丛枝菌根 斑块动力学 分类单元 气候变化 社区 栖息地 生态网络 群落结构 引进物种 无脊椎动物 共生 地中海气候 生态系统工程师 元社区 自然(考古学)
作者
Dajana Radujković,Erik Verbruggen,Jan Clavel,Aníbal Pauchard,Eduardo Fuentes‐Lillo,Agustina Barros,Valeria Aschero,Sylvia Haider,Amanda Ratier Backes,Jan Pergl,Michaela Vítková,Anna Lučanová,Martín A. Núñez,Jonathan Lenoir,Ivan Nijs,Jonas J. Lembrechts
出处
期刊:Molecular Ecology [Wiley]
卷期号:34 (20): e17771-e17771 被引量:1
标识
DOI:10.1111/mec.17771
摘要

ABSTRACT Roads are currently one of the most disruptive anthropogenic disturbances to mountain ecosystems worldwide. These disturbances can have a profound effect on roadside soil properties and vegetation, typically favouring fast‐growing and ruderal species. However, their effect on plant‐associated fungal communities and plant‐fungal interactions remains largely unknown. In this study, we examined the changes in root‐associated fungal communities as well as plant‐fungal and fungal‐fungal co‐occurrence networks along mountain roads from four biogeographical regions. We found that roadsides consistently altered plant and fungal community composition, generally favouring arbuscular mycorrhizal fungi and putative plant pathogens at the expense of ectomycorrhizal fungi. Moreover, roadsides consistently reduced the complexity of plant‐fungal and fungal‐fungal co‐occurrence networks (with 66%–95% and 40%–94% reduction in total edge density, respectively), even though the richness of fungal communities was not reduced and many of the naturally occurring highly connected taxa were still present. Our findings suggest that altered and transient conditions in the roadsides may favour more generalist symbionts like AMF and pathogens with low fidelity for particular hosts as opposed to surrounding natural vegetation which is dominated by symbionts with higher specificity for the host (like ectomycorrhizal fungi). We conclude that road disturbance may have a consistent negative imprint on connectivity between plants and fungi; a consequence that deserves attention as it could render mountain roadside systems unstable and vulnerable to further pressures such as climate change and invasive species.
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