Recovery in soil carbon stocks but reduced carbon stabilization after near-natural restoration in degraded alpine meadows

Abstract Near-natural restoration is acknowledged as an effective strategy for enhancing soil organic carbon (SOC) sequestration in degraded grasslands. However, the alterations in SOC fractions, stability, and relative sequestration capacity after restoration of degraded alpine meadows remain uncer...

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Main Authors: Guoxing He, Xiaoni Liu, Yali Li, Heguang Xu, Tong Ji, Zhuoli Yang, Hao Qi, Chenglong Ma, Yunjun Wang, Degang Zhang, Dong Lin, Yafei Shi, Jiachang Jiang
Format: Article
Language:English
Published: Nature Portfolio 2024-12-01
Series:Scientific Reports
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Online Access:https://doi.org/10.1038/s41598-024-82434-3
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author Guoxing He
Xiaoni Liu
Yali Li
Heguang Xu
Tong Ji
Zhuoli Yang
Hao Qi
Chenglong Ma
Yunjun Wang
Degang Zhang
Dong Lin
Yafei Shi
Jiachang Jiang
author_facet Guoxing He
Xiaoni Liu
Yali Li
Heguang Xu
Tong Ji
Zhuoli Yang
Hao Qi
Chenglong Ma
Yunjun Wang
Degang Zhang
Dong Lin
Yafei Shi
Jiachang Jiang
author_sort Guoxing He
collection DOAJ
description Abstract Near-natural restoration is acknowledged as an effective strategy for enhancing soil organic carbon (SOC) sequestration in degraded grasslands. However, the alterations in SOC fractions, stability, and relative sequestration capacity after restoration of degraded alpine meadows remain uncertain. In this study, we utilized the degraded alpine meadows on the northeastern edge of the Tibetan Plateau as a research area, with grazing as the control (CK) and restoration of 20 years of banned grazing (BG) and growing season resting grazing (RG). We analyzed the characteristics of SOC, SOC fractions, recalcitrant index (RI), and relative capacity of soil C sequestration (SCScapacity) under near-natural restoration measures. The objective of this study was to assess the recovery of SOC following near-natural restoration. The results showed that soil water content (SWC), SOC, soil total nitrogen (TN), and soil total phosphorus (TP) increased, while bulk density (BD) decreased in the degraded alpine meadow after near-natural restoration. In addition, near-natural restoration led to significant increases in particulate organic carbon (POC), readily oxidizable carbon (ROC), dissolved organic carbon (DOC), and microbial biomass carbon (MBC) content (P < 0.05). The SOC stock significantly increased, while the RI decreased. Compared to RG, BG had a greater increase in SOC stock. The study showed that 20 years of near-natural restoration in degraded alpine meadows mainly enhanced soil active carbon pools, while short-term restoration did not increase soil carbon stability. Therefore, avoiding re-exposure to overgrazing is essential to maintaining the restoration effect.
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spelling doaj-art-781dd1ca801d4a4db095df5caa58f3b62024-12-29T12:21:26ZengNature PortfolioScientific Reports2045-23222024-12-0114111010.1038/s41598-024-82434-3Recovery in soil carbon stocks but reduced carbon stabilization after near-natural restoration in degraded alpine meadowsGuoxing He0Xiaoni Liu1Yali Li2Heguang Xu3Tong Ji4Zhuoli Yang5Hao Qi6Chenglong Ma7Yunjun Wang8Degang Zhang9Dong Lin10Yafei Shi11Jiachang Jiang12College of Grassland Science, Gansu Agricultural UniversityCollege of Grassland Science, Gansu Agricultural UniversityCollege of Grassland Science, Gansu Agricultural UniversityCollege of Grassland Science, Gansu Agricultural UniversityCollege of Grassland Science, Gansu Agricultural UniversityCollege of Grassland Science, Gansu Agricultural UniversityCollege of Grassland Science, Gansu Agricultural UniversityCollege of Grassland Science, Gansu Agricultural UniversityCollege of Grassland Science, Gansu Agricultural UniversityCollege of Grassland Science, Gansu Agricultural UniversityCollege of Grassland Science, Gansu Agricultural UniversityCollege of Grassland Science, Gansu Agricultural UniversityGrassland Technique Extension Station of Gansu ProvinceAbstract Near-natural restoration is acknowledged as an effective strategy for enhancing soil organic carbon (SOC) sequestration in degraded grasslands. However, the alterations in SOC fractions, stability, and relative sequestration capacity after restoration of degraded alpine meadows remain uncertain. In this study, we utilized the degraded alpine meadows on the northeastern edge of the Tibetan Plateau as a research area, with grazing as the control (CK) and restoration of 20 years of banned grazing (BG) and growing season resting grazing (RG). We analyzed the characteristics of SOC, SOC fractions, recalcitrant index (RI), and relative capacity of soil C sequestration (SCScapacity) under near-natural restoration measures. The objective of this study was to assess the recovery of SOC following near-natural restoration. The results showed that soil water content (SWC), SOC, soil total nitrogen (TN), and soil total phosphorus (TP) increased, while bulk density (BD) decreased in the degraded alpine meadow after near-natural restoration. In addition, near-natural restoration led to significant increases in particulate organic carbon (POC), readily oxidizable carbon (ROC), dissolved organic carbon (DOC), and microbial biomass carbon (MBC) content (P < 0.05). The SOC stock significantly increased, while the RI decreased. Compared to RG, BG had a greater increase in SOC stock. The study showed that 20 years of near-natural restoration in degraded alpine meadows mainly enhanced soil active carbon pools, while short-term restoration did not increase soil carbon stability. Therefore, avoiding re-exposure to overgrazing is essential to maintaining the restoration effect.https://doi.org/10.1038/s41598-024-82434-3Tibetan PlateauAlpine meadowDegradationNear-natural restoration measuresSoil organic carbon fractionsSoil carbon stability
spellingShingle Guoxing He
Xiaoni Liu
Yali Li
Heguang Xu
Tong Ji
Zhuoli Yang
Hao Qi
Chenglong Ma
Yunjun Wang
Degang Zhang
Dong Lin
Yafei Shi
Jiachang Jiang
Recovery in soil carbon stocks but reduced carbon stabilization after near-natural restoration in degraded alpine meadows
Scientific Reports
Tibetan Plateau
Alpine meadow
Degradation
Near-natural restoration measures
Soil organic carbon fractions
Soil carbon stability
title Recovery in soil carbon stocks but reduced carbon stabilization after near-natural restoration in degraded alpine meadows
title_full Recovery in soil carbon stocks but reduced carbon stabilization after near-natural restoration in degraded alpine meadows
title_fullStr Recovery in soil carbon stocks but reduced carbon stabilization after near-natural restoration in degraded alpine meadows
title_full_unstemmed Recovery in soil carbon stocks but reduced carbon stabilization after near-natural restoration in degraded alpine meadows
title_short Recovery in soil carbon stocks but reduced carbon stabilization after near-natural restoration in degraded alpine meadows
title_sort recovery in soil carbon stocks but reduced carbon stabilization after near natural restoration in degraded alpine meadows
topic Tibetan Plateau
Alpine meadow
Degradation
Near-natural restoration measures
Soil organic carbon fractions
Soil carbon stability
url https://doi.org/10.1038/s41598-024-82434-3
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