生态系统
环境科学
土壤碳
生物多样性
固碳
土壤有机质
生态学
土壤健康
营养循环
生态系统服务
土壤生物多样性
农林复合经营
生物
土壤水分
二氧化碳
作者
Abdulkareem Raheem,Paul Yohanna,Guanlin Li,Nam Jin Noh,Babar Iqbal,Tang Jing,Daolin Du,Tahani Awad Alahmadi,Mohammad Javed Ansari,Aibin Zhan,Yowhan Son
标识
DOI:10.1016/j.jenvman.2024.120556
摘要
Invasive alien plants (IAPs) pose significant threats to native ecosystems and biodiversity worldwide. However, the understanding of their precise impact on soil carbon (C) dynamics in invaded ecosystems remains a crucial area of research. This review comprehensively explores the mechanisms through which IAPs influence soil C pools, fluxes, and C budgets, shedding light on their effects and broader consequences. Key mechanisms identified include changes in litter inputs, rates of organic matter decomposition, alterations in soil microbial communities, and shifts in nutrient cycling, all driving the impact of IAPs on soil C dynamics. These mechanisms affect soil C storage, turnover rates, and ecosystem functioning. Moreover, IAPs tend to increase gross primary productivity and net primary productivity leading to the alterations in fluxes and C budgets. The implications of IAP-induced alterations in soil C dynamics are significant and extend to plant-soil interactions, ecosystem structure, and biodiversity. Additionally, they have profound consequences for C sequestration, potentially impacting climate change mitigation. Restoring native plant communities, promoting soil health, and implementing species-specific management are essential measures to significantly mitigate the impacts of IAPs on soil C dynamics. Overall, understanding and mitigating the effects of IAPs on soil C storage, nutrient cycling, and related processes will contribute to the conservation of native biodiversity and complement global C neutrality efforts.
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