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Research priorities for harnessing plant microbiomes in sustainable agriculture

机译:在可持续农业中利用植物微生物群落的研究重点

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摘要

Feeding a growing world population amidst climate change requires optimizing the reliability, resource use, and environmental impacts of food production. One way to assist in achieving these goals is to integrate beneficial plant microbiomes—i.e., those enhancing plant growth, nutrient use efficiency, abiotic stress tolerance, and disease resistance—into agricultural production. This integration will require a large-scale effort among academic researchers, industry researchers, and farmers to understand and manage plant-microbiome interactions in the context of modern agricultural systems. Here, we identify priorities for research in this area: (1) develop model host–microbiome systems for crop plants and non-crop plants with associated microbial culture collections and reference genomes, (2) define core microbiomes and metagenomes in these model systems, (3) elucidate the rules of synthetic, functionally programmable microbiome assembly, (4) determine functional mechanisms of plant-microbiome interactions, and (5) characterize and refine plant genotype-by-environment-by-microbiome-by-management interactions. Meeting these goals should accelerate our ability to design and implement effective agricultural microbiome manipulations and management strategies, which, in turn, will pay dividends for both the consumers and producers of the world food supply.
机译:在气候变化中养活不断增长的世界人口,需要优化粮食生产的可靠性,资源利用和环境影响。有助于实现这些目标的一种方法是将有益的植物微生物组(即那些增强植物生长,营养利用效率,非生物胁迫耐受性和抗病性的微生物组)整合到农业生产中。这种整合将需要学术研究人员,行业研究人员和农民进行大规模的努力,以了解和管理现代农业系统中植物-微生物组的相互作用。在这里,我们确定了该领域的研究重点:(1)为具有相关微生物培养物收集和参考基因组的农作物和非农作物开发模型宿主-微生物组系统,(2)在这些模型系统中定义核心微生物组和元基因组, (3)阐明合成的,功能可编程的微生物组装配的规则,(4)确定植物与微生物组相互作用的功能机制,(5)按环境,按微生物组,按管理方式表征和完善植物基因型。达到这些目标将加快我们设计和实施有效的农业微生物组操纵和管理策略的能力,从而为世界粮食供应的消费者和生产者带来红利。

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