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首页> 外文期刊>Soil Biology & Biochemistry >Potential of crop-livestock integration to enhance carbon sequestration and agroecosystem functioning in semi-arid croplands
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Potential of crop-livestock integration to enhance carbon sequestration and agroecosystem functioning in semi-arid croplands

机译:作物牲畜集成的潜力,以增强半干旱农作物中的碳封存和农业生物系统

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摘要

While characteristics of semi-arid climates place limitations on soil organic carbon (SOC) storage, there is opportunity and urgency for increasing the quality and long-term persistence of cropland SOC content within these agroecosystems. Livestock re-integration into cropland shows potential to improve semi-arid agroecosystem functioning through shifts in biogeochemical processes and the facilitation of multiple ecosystem services involved in carbon and nutrient cycling and use-efficiency. Here we review the characteristics of grazing-based Integrated Crop-Livestock (ICL) systems and how various associated management practices may interplay with semi-arid agroecological and biogeochemical dynamics to influence soil microbial ecology and SOC accumulation and stabilization. We argue that livestock re-integration holds notable potential to increase cropland SOC through controls on landscape net primary productivity, allocation of biomass belowground, efficient recycling of residual crop nutrients, and soil biological activity related to a suite of soil ecosystem services. Achieving the full SOC accumulation potential of ICL management will require site-specific consideration of feedbacks between herbivory, soil microbial ecology, soil disturbance, and forage species interactions. Future research should focus on optimizing plant-soil-grazer feedbacks and understanding of mechanistic drivers of ICL system outcomes to optimize the design and management of semi-arid regional ICL systems for enhanced SOC quality and persistence.
机译:虽然半干旱气候的特点是土壤有机碳(SoC)储存的限制,但有机会和紧迫性地增加了这些农业体系内农田SoC内容的质量和长期持久性。畜牧业重新融入农田,表明通过生物地球化学工艺的转变以及涉及碳和养分循环和使用效率的多种生态系统服务的促进来改善半干旱农樟脑系统的潜力。在这里,我们审查了基于放牧的综合作物 - 牲畜(ICL)系统的特征以及各种相关的管理实践如何与半干旱农生生态化学和生物地球化学动力学相互作用,以影响土壤微生物生态和SOC积累和稳定性。我们认为牲畜重新整合通过对景观净初级生产力,地下地下,生物量分配,低于残留作物养分的有效回收,以及与土壤生态系统服务套件相关的土壤生物活性的控制。实现ICL管理的完整SoC累积潜力将需要特定于食草动物,土壤微生物生态生态,土壤干扰和饲料物种相互作用之间反馈的特定于反馈。未来的研究应侧重于优化植物 - 土壤格拉塞尔反馈和对ICL系统成果的机械驱动程序的理解,以优化半干旱区域ICL系统的设计和管理,以提高SOC质量和持久性。

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