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Unraveling Plant-Rhizosphere-Microbe Interactions: An Overview

机译:解开植物 - 根际 - 微生物相互作用:概述

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The 'Rhizosphere' is a biologically active zone of the soils around plant roots that contains soil borne microbes including bacteria and fungi. Plant-microbe interactions in the rhizosphere can be beneficial to the plants, the microbes or to neither of them. Biogeochemicals processes in the rhizosphere influence a host of landscape and global scale processes. A better understanding of these processes is critical for maintaining the health of the planet and feeding the organisms that live on it. Thereis a small but concerted effort under way to harness the root system of plants in an attempt to increase field potentials of staple food crops in order to meet the projected doubling in global food demand in next 30 years. The efforts are being done inthe face of a critical of a changing global climate and increasing global population which will inevitably require more productively grown food, feed and fiber on less optimal lands; a condition already encountered in many developing countries. One of the major difficulties that plant biologists and microbiologists vis-a-vis ecologists and environmentalists face when studying the plant-soil interactions in the rhizosphere that inhabit this zone is that they are not cultivable in the laboratories. Recentdevelopments in molecular biology methods are shedding some light on rhizosphere microbial diversity. Meeting the global challenges of climate and population growth with a better understanding and control, rhizosphere processes will be one of the most important science frontiers of the next decade for which a diverse interdisciplinary trained workforce will be required.
机译:“根际”是植物根周围土壤的生物活性区,含有土壤传承的微生物,包括细菌和真菌。根际的植物微生物相互作用可能有利于植物,微生物或其两者。根际的生物地球化学过程影响了一系列景观和全球规模过程。更好地理解这些过程对于维持地球的健康并喂养生活的生物至关重要。其中有一个小但齐心的努力来利用植物的根系制度,试图增加主食粮食作物的现场潜力,以便在未来30年内满足全球粮食需求的预计加倍。努力正在面对批判性的全球气候和越来越多的全球人口,这将不可避免地需要更具效率的食物,饲料和纤维在不太最佳的土地上;许多发展中国家已经遇到的情况。植物生物学家和微生物学家的主要困难之一是在研究居住的根际的植物 - 土壤相互作用时,植入生态学家和环保主义者面临的困难之一是他们在实验室中无法耕种。分子生物学方法中的最佳开发是对根际微生物多样性的一些光。迎接气候和人口增长的全球挑战,以更好的理解和控制,根际流程将是未来十年中最重要的科学边界之一,需要各种跨学科培训的劳动力。

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