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Future challenges and perspectives for applying microbial biotechnology in sustainable agriculture based on a better understanding of plant-microbiome interactions

机译:在更好地了解植物-微生物组相互作用的基础上,将微生物生物技术应用于可持续农业的未来挑战和前景

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An intensive agricultural production is necessary to satisfy food requirements for the growing world population. However, its realization is associated with the mass consumption of non-renewable natural resources and with the emission of greenhouse gases causing climate changes. The research challenge is to meet sustainable environmental and economical issues without compromising yields. In this context, exploiting the agro-ecosystem services ofsoil microbial communities appears as a promising effective approach. This chapter reviews the research efforts aimed atimproving a sustainable and healthy agricultural production through the appropriate management of soil microorganisms.First, the plant-associated microbiome is briefly described. Then, the current research technologies for formulation and application of inocula based on specific beneficial plant-associated microbesare summarized. Finally, the perspectives and opportunities to manage naturally existing microbial populations, including those non-culturable, are analyzed. This analysis concerns: (i) a description of the already available, culture-independent, molecular techniques addressed at increasing our understanding of root-microbiome interactions; (ii) how to improve the ability of soil microbes for alleviating the negative impacts of stress factors on crop productivity; and (iii) whether plants can structure their root-associated microbial communities and, leading on from this, whether the rhizosphere can be engineered (biased) to encourage beneficial organisms, while prevent presence of pathogens.
机译:为了满足不断增长的世界人口的粮食需求,集约化农业生产是必要的。但是,其实现与不可再生自然资源的大量消费以及引起气候变化的温室气体排放有关。研究的挑战是在不影响产量的情况下满足可持续的环境和经济问题。在这种情况下,开发土壤微生物群落的农业生态系统服务似乎是一种有前途的有效方法。本章回顾了旨在通过适当管理土壤微生物来改善可持续和健康农业生产的研究工作。首先,简要介绍了与植物相关的微生物组。然后,总结了基于特定有益植物相关微生物的接种物配方和应用的当前研究技术。最后,分析了管理自然存在的微生物种群(包括那些不可培养的微生物)的观点和机会。该分析涉及:(i)对增加我们对根-微生物组相互作用的了解而解决的,已经存在的,与培养无关的分子技术的描述; (ii)如何提高土壤微生物缓解压力因素对作物生产力的不利影响的能力; (iii)植物是否可以构建其根系相关的微生物群落,并以此为根基,是否可以对根际进行改造(偏向)以促进有益生物,同时防止病原体的存在。

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