Drivers of soil organic carbon stock during tropical forest succession

Author:

Satdichanh Manichanh12ORCID,Dossa Gbadamassi G. O.234ORCID,Yan Kai125,Tomlinson Kyle W.6ORCID,Barton Kasey E.7ORCID,Crow Susan E.8ORCID,Winowiecki Leigh9ORCID,Vågen Tor‐G9ORCID,Xu Jianchu12ORCID,Harrison Rhett D.10ORCID

Affiliation:

1. Centre for Mountain Futures Kunming Institute of Botany Kunming China

2. CIFOR‐ICRAF China Program World Agroforestry Centre Kunming China

3. CAS Key Laboratory of Tropical Forest Ecology, Xishuangbanna Tropical Botanical Garden Chinese Academy of Sciences Menglun China

4. Center of Plant Ecology, Xishuangbanna Tropical Botanical Garden Chinese Academy of Sciences Menglun China

5. College of Resources and Environment Yunnan Agricultural University Kunming China

6. Centre for Integrative Conservation, Xishuangbanna Tropical Botanical Garden Chinese Academy of Sciences Menglun People's Republic of China

7. Botany Department University of Hawai'i at Mānoa Honolulu Hawaii USA

8. Department of Natural Resources and Environmental Management University of Hawai'i at Mānoa Honolulu Hawaii USA

9. World Agroforestry Centre Nairobi Kenya

10. CIFOR‐ICRAF Lusaka Zambia

Abstract

Abstract Soil organic matter contributes to productivity in terrestrial ecosystems and contains more carbon than is found in the atmosphere. Yet, there is little understanding of soil organic carbon (SOC) sequestration processes during tropical forest succession, particularly after land abandonment from agriculture practices. Here, we used vegetation and environmental data from two large‐scale surveys covering a total landscape area of 20,000 ha in Southeast Asia to investigate the effects of plant species diversity, functional trait diversity, phylogenetic diversity, above‐ground biomass and environmental factors on SOC sequestration during forest succession. We found that functional trait diversity plays an important role in determining SOC sequestration across successional trajectories. Increases in SOC carbon storage were associated with indirect positive effects of species diversity and succession age via functional trait diversity, but phylogenetic diversity and above‐ground biomass showed no significant relationship with SOC stock. Furthermore, the effects of soil properties and functional trait diversity on SOC carbon storage shift across elevation. Synthesis. Our results suggest that reforestation and restoration management practices that implement a trait‐based approach by combining long‐lived and short‐lived species (conservative and acquisitive traits) to increase plant functional diversity could enhance SOC sequestration for climate change mitigation and adaptation efforts, as well as accelerate recovery of healthy soils.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Plant Science,Ecology,Ecology, Evolution, Behavior and Systematics

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