Reduced soil multifunctionality and microbial network complexity in degraded and revegetated alpine meadows

环境科学 生态系统 恢复生态学 生态学 土壤水分 微生物种群生物学 土壤退化 生物 土壤科学 遗传学 细菌
作者
Bobo Wu,Mingjun Ding,Hua Zhang,Adam T. Devlin,Peng Wang,Lu Chen,Yueju Zhang,Yang Xia,Jiahong Wen,Linshan Liu,Yili Zhang,Minhuang Wang
出处
期刊:Journal of Environmental Management [Elsevier]
卷期号:343: 118182-118182 被引量:5
标识
DOI:10.1016/j.jenvman.2023.118182
摘要

Understanding how microbial processes develop and change in alpine meadow soils is key to global initiatives toward environmental sustainability and local land management. Yet, how microbial interactions mediate soil multifunctionality in disturbed and managed alpine meadows remains understudied. Here, we investigated multiple community metrics, particularly microbial network properties and assembly processes, of soil bacterial and fungal communities and their links to certain soil functions along a degradation-restoration sequence of alpine meadows in the Qinghai-Tibetan Plateau. Meadow degradation caused significant declines in soil hydraulic conductivity (e.g., higher bulk density, reduced soil porosity and water content) and nitrogen availability, leading to lowered soil multifunctionality. Meadow degradation only caused weak changes in microbial abundance, alpha diversity, and community composition, but remarkably reduced bacterial network complexity, to a less extent for fungal network properties. Short-term artificial restoration with productive grass monocultures did not restore soil multifunctionality, in turn even destabilized bacterial network and favored pathogenic over mutualistic fungi. Soil fungi community are more stable than bacteria in disturbed alpine meadows, and they evolved with distinct assembly strategies (stochastic-dominant versus deterministic-driven processes, respectively). Further, microbial network complexity, positively and better predicts soil multifunctionality than alpha diversity. Our work shows how microbial interaction complexity may enhance soil multifunctionality in degraded alpine meadow ecosystems, noting that meadow restoration with low plant species diversity may failed in restoring multiple ecosystem functions. These findings would help predict the outcomes of global environmental changes and inform management strategies in regional grassland conservation and restoration.
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