Species-specific herbivore grazing of type-specific grassland can assist with promotion of shallow layer of soil carbon sequestration

放牧 食草动物 草原 草原 沙漠和干旱灌木丛 土壤碳 保护性放牧 生态学 生态系统 固碳 农学 环境科学 牧场 农林复合经营 生物 土壤水分 栖息地 二氧化碳
作者
Jie Li,Hua Chai,Shiwen Ding,Jinsong Wang,Xincheng Li,Yinong Li,Tianyun Li,Jushan Liu,Hongjun Wang,Cunzhu Liang,Chengjie Wang,Yuan Liu,Yiqi Luo,Ling Wang,Deli Wang
出处
期刊:Environmental Research Letters [IOP Publishing]
卷期号:16 (11): 114033-114033 被引量:6
标识
DOI:10.1088/1748-9326/ac302f
摘要

Abstract Grassland soils represent a significant potential pool for the sequestering of atmospheric CO 2 ; however, the magnitude of this pool depends to a certain extent on the grazing management of the grassland. Whether different herbivore species and combinations (herbivore assemblage) influence the soil organic carbon (SOC) in various grasslands remains unclear. Here we have investigated the impacts of herbivore assemblages (NG, no grazing; SG, sheep grazing; CG, cattle grazing; and MG, mixed grazing of sheep and cattle) under moderate grazing intensity on a shallow layer of SOC storage across the three different grassland types (meadow steppe, typical steppe, and desert steppe) in the temperate steppes of Eastern Eurasia. We found that herbivore-species-specific effects on SOC storage depended on the grassland type. In mesic grasslands (i.e. meadow steppe and typical steppe), CG enhanced SOC storage, but there were no effects from SG. In contrast, SG in the xeric grassland (i.e. desert steppe) dramatically increased SOC storage while no effects were observed for CG. Importantly, MG of sheep and cattle consistently increased SOC storage across all grassland types. We suggest that adopting herbivore-type-specific stewardship in different grasslands could assist with the enhancement of ecosystem C functionality and services; large herbivores and small herbivores are suitable for grazing in mesic grasslands and xeric grasslands, respectively. Moreover, MG with diverse herbivores may be the optimal moderate grazing mode for soil C sequestration in most grasslands of northern China.

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