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Fungal diversity dominates the response of multifunctionality to the conversion of pure plantations into two-aged mixed plantations

生物多样性 环境科学 生态系统 亚热带 生物地球化学循环 农林复合经营 森林生态学 生态系统服务 植物凋落物 生态学 营养水平 地理 生物
作者
Xu Haidong,Xiaomeng Wei,Xiangrong Cheng
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:866: 161384-161384 被引量:9
标识
DOI:10.1016/j.scitotenv.2022.161384
摘要

Plantation forests are essential in driving global biogeochemical cycling and mitigating climate change. Biodiversity and environmental factors can shape multiple forest ecosystem functions simultaneously (i.e., multifunctionality). However, their effect on multifunctionality when pure plantations are converted into two-aged plantations remains underexplored. Therefore, we assessed above- and below-ground biodiversity and environmental factors and 11 ecosystem functions in different plantation types in subtropical China. The two-aged mixed plantations exhibited higher multifunctionality than did a pure plantation, primarily due to soil fungal diversity and secondarily due to tree diversity, based on the coefficient of variation for tree diameter at breast height (CVD) and community-weighted specific leaf area (CWMSLA). Further analysis revealed saprotrophy as the key soil fungal trophic mode in maintaining multifunctionality. Moreover, structural equation modeling confirmed that soil environmental factors, namely the soil water content and pH, had no direct association with multifunctionality, but were indirectly related to multifunctionality via elevated CVD and CWMSLA, respectively. Our results indicate that the tree and soil fungal diversity, as well as soil environmental factors, resulting from the conversion of pure plantations to two-aged mixed plantations, can enhance multifunctionality, and provide a better comprehensive understanding of the driving mechanisms of multifunctionality, leading to the sustainable management of subtropical plantation forest ecosystems.
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