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Changes in soil microbial metabolic limitations after half-century forest restoration in degraded tropical lands

Dados Bibliográficos

ID15544765
AutoresMinghui Hu (0000-0002-3658-0890, Chinese Academy of Sciences), Yiren Zhu (0000-0001-8260-9810, Chinese Academy of Sciences), Jianling Li (0000-0002-6362-3956, Chinese Academy of Sciences), Xianyu Yao (0000-0001-8825-6702, Chinese Academy of Sciences), Yuanliu Hu (0000-0003-4137-225X, Chinese Academy of Sciences), Xiaolin Huang (0000-0003-0121-3342, Chinese Academy of Sciences), Yonghui Li (0000-0003-4320-0806, Chinese Academy of Sciences), Deqiang Zhang (0000-0002-8849-2366, Chinese Academy of Sciences), Qi Deng (0000-0002-1150-3098, Chinese Academy of Sciences, autor correspondente)
Ano2024
Volume19
Fascículo7
Páginas074060-074060
Data de publicação2024-06-25
Peer ReviewedSim
Open AccessSim
TipoARTICLE
PeriódicoEnvironmental Research Letters (JOURNAL)
Identificadores do periódicoISSN: 1748-9326 • E-ISSN: 1748-9326
EditoraIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/ad5b75
OpenAlexW4399993291
IdiomaEN
Citações recebidas1
Referências citadas58

Due to increasing anthropogenic pressure, over half of the world’s tropical forests are reforested or afforested secondary forests or plantations. The recovery pace and potential of these forests depend largely on soil microbially-mediated biogeochemical cycling. Here we measured soil extracellular enzyme activities and quantified microbial metabolic limitations using a vector analysis in a bare land (BL, representing the original state before restoration), two afforested sites [i.e. a restored secondary forest (MF) and a managed Eucalyptus exserta plantation (EP)] and a nearby undisturbed forest (UF) in south China. Results showed that soil microbial metabolisms were co-limited by carbon (C) and phosphorus (P) across the four forests. Both microbial C and P limitations were higher in BL than UF. Microbial C limitation significantly reduced after restoration only in MF when compared to BL, but it was still higher than that in UF. Interestingly, microbial P limitation significantly enhanced after restoration in both EP and MF when compared to BL, and it did not differ between the two restored forests. Structural equation modeling (SEM) showed that microbial C limitation was primarily attributed to microbial C use efficiency, while microbial P limitation was co-driven by plant biomass, microbial C use efficiency and soil P availability. These findings suggest microbial C limitation could be gradually recovered after forest restoration in southern China, which would facilitate soil organic carbon accumulation. However, the enhanced microbial P limitation after forest restoration underlines the necessity to develop optimal P management in these restored forests

Agroforestry · Biology · Forest degradation · Geography · Land degradation · Land use · Tropical forest · Tropics · Conservation, Biodiversity, and Resource Management · Environmental Science · Forest Ecology and Biodiversity Studies · Ecology · Forestry · Soil Science

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    Open Access•Xu Yue, Ge Sun et al.•Environmental Research Letters•2025

  • An extraction method for measuring soil microbial biomass C

    Open Access•Eric D Vance, Philip C Brookes et al.•Soil Biology and Biochemistry•1987

  • Biomass resilience of Neotropical secondary forests

    Open Access•Lourens Poorter, Frans Bongers et al.•Nature•2016

  • A Large and Persistent Carbon Sink in the World’s Forests

    Open Access•Yude Pan, Richard A Birdsey et al.•Science•2011

  • Managing Forests for Climate Change Mitigation

    Open Access•Josep G Canadell, Michael Raupach et al.•Science•2008

  • Random Forests

    Open Access•Leo Breiman•Machine Learning•2001

  • Effect of stand age on soil microbial metabolic limitation and enzyme activities in Robinia pseudoacacia L. plantations in the loess hilly‐gully region, China

    Open Access•Min Zhao, Yarong Sun et al.•Land Degradation and Development•2024

Obras citantes distintas1
Citações por ano1
Intervalo de citações2025 - 2025 (1)
Velocidade de citaçãorecent
Altamente citadoNão
Tipos de citaçãoNeutras: 1
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