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首页> 外文期刊>Global change biology >Light grazing facilitates carbon accumulation in subsoil in Chinese grasslands: A meta-analysis
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Light grazing facilitates carbon accumulation in subsoil in Chinese grasslands: A meta-analysis

机译:轻微放牧促进中国草原泥土中的碳积累:荟萃分析

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Grazing by livestock greatly affects the soil carbon (C) cycle in grassland ecosystems. However, the effects of grazing at different intensities and durations on the dynamics of soil C in its subsoil layers are not clearly understood. Here, we compiled data from 78 sites (in total 122 published studies) to examine the effects of varying grazing intensities and durations on soil C content at different depths for grasslands in China. Our meta-analysis revealed that grazing led to an overall decrease in soil C content and productivity of above-ground vegetation (e.g., above-ground biomass and litter) but an increase in below-ground biomass. Specifically, the effects of grazing on soil C content became less negative or even positive with increasing soil depths. An increase of soil C content was consequently found under light grazing (LG), although soil C content still decreased under moderate and heavy grazing. The increase in soil C content under LG could be largely attributed to the increase of soil C content in subsoil layers (>20 cm), despite that soil C content in surface soil layer (0-20 cm) decreased. Moreover, the magnitude of increase in soil C content under LG in subsoil layers increased with grazing duration. A possible reason of the increase in soil C content in the subsoil layers was due to the increases in below-ground biomass. Our study highlights that LG may modify the allocation of C input and promote its accumulation in subsoil layers, thus offsetting the negative impact of grazing on surface soil C content, a finding that has significant implications for C sequestration in grasslands.
机译:牲畜放牧极大地影响了草原生态系统中的土壤碳(c)循环。然而,在其底层层中,在土壤中的不同强度和持续时间内放牧的影响不会清楚地理解。在这里,我们从78个网站编制数据(共122项公布的研究),检查不同深度含量和持续时间对我国草原草原不同深度土壤C含量的影响。我们的荟萃分析显示,放牧导致土壤C含量和地面植被(例如,地上生物质和垃圾的生产率的总体降低,而是增加了地下生物质的增加。具体而言,在越来越多的土壤深度增加,放牧对土壤C含量的影响变得较小甚至是正的。因此,在光放射(LG)下发现了土壤C含量的增加,尽管土壤C含量仍然在中等和重放牧中降低。尽管表面土壤层(0-20cm)的土壤C含量降低,但LG下的土壤C含量的增加可能主要归因于底土层(> 20cm)中的土壤C含量的增加。此外,在沉积持续时间内,Subsoil层中LG下的土壤C含量的增加幅度增加。底土层中土壤C含量增加的可能原因是由于低于地生物质的增加。我们的研究突出显示LG可以修改C输入的分配并促进其在底层层中的积累,从而抵消了在地表土C含量上放牧的负面影响,这是对草地C隔离的显着影响。

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