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首页> 外文期刊>Journal of Cleaner Production >Exploring rhizospheric interactions for agricultural sustainability: the need of integrative research on multi-trophic interactions
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Exploring rhizospheric interactions for agricultural sustainability: the need of integrative research on multi-trophic interactions

机译:探索根际相互作用以实现农业可持续性:需要对多营养相互作用进行综合研究

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摘要

Large scale exploitation of rhizospheric interactions is essential for enhancing the agroecosystems resilience to climate change and also for adopting inventive adaptation strategies for maximizing the food production under such adverse conditions. Successful exploitation of rhizospheric interactions can be used for improving the soil fertility and organic carbon pool while minimizing the trace gases emission from agrosystems. Most importantly, such knowledge can be used to enhance the plant microbe interactions, conferring diseases resistance to host plants, bioremediation and restoration of marginal and degraded lands. However, recent studies proved that changing climatic conditions can alter the rhizosphere biology by modifying the root exudation rate, resource availability and biogeochemical cycling. Therefore, strategic and applied researches are essential to explore the rhizosphere biology under changing climatic conditions and harnessing all beneficial interactions as a low-input biotechnology for sustainable agriculture, ecosystem restoration and environmental sustainability. (C) 2015 Elsevier Ltd. All rights reserved.
机译:根际相互作用的大规模开发对于增强农业生态系统对气候变化的适应力,以及采用创造性的适应策略使这种不利条件下的粮食产量最大化至关重要。成功利用根际相互作用可以改善土壤肥力和有机碳库,同时最大程度地减少农业系统中的微量气体排放。最重要的是,这些知识可用于增强植物微生物的相互作用,赋予植物抗病能力,生物修复能力以及边缘和退化土地的恢复。然而,最近的研究证明,改变气候条件可以通过改变根系渗出速率,资源可利用性和生物地球化学循环来改变根际生物学。因此,战略和应用研究对于在不断变化的气候条件下探索根际生物学并利用所有有益的相互作用作为可持续农业,生态系统恢复和环境可持续性的低投入生物技术至关重要。 (C)2015 Elsevier Ltd.保留所有权利。

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