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微生物对水稻生产的贡献:从常规作物管理到“组学”技术的应用。

Microbial Contributions for Rice Production: From Conventional Crop Management to the Use of 'Omics' Technologies.

机构信息

Department of Biology, Faculty of Mathematics and Natural Sciences, Universitas Padjadjaran, Jatinangor 45363, West Java, Indonesia.

Institute of Biological Sciences, Faculty of Science, University of Malaya, Kuala Lumpur 50603, Malaysia.

出版信息

Int J Mol Sci. 2022 Jan 10;23(2):737. doi: 10.3390/ijms23020737.

Abstract

Rice, the main staple food for about half of the world's population, has had the growth of its production stagnate in the last two decades. One of the ways to further improve rice production is to enhance the associations between rice plants and the microbiome that exists around, on, and inside the plant. This article reviews recent developments in understanding how microorganisms exert positive influences on plant growth, production, and health, focusing particularly on rice. A variety of microbial species and taxa reside in the rhizosphere and the phyllosphere of plants and also have multiple roles as symbiotic endophytes while living within plant tissues and even cells. They alter the morphology of host plants, enhance their growth, health, and yield, and reduce their vulnerability to biotic and abiotic stresses. The findings of both agronomic and molecular analysis show ways in which microorganisms regulate the growth, physiological traits, and molecular signaling within rice plants. However, many significant scientific questions remain to be resolved. Advancements in high-throughput multi-omics technologies can be used to elucidate mechanisms involved in microbial-rice plant associations. Prospectively, the use of microbial inoculants and associated approaches offers some new, cost-effective, and more eco-friendly practices for increasing rice production.

摘要

水稻是世界上约一半人口的主要主食,其产量在过去二十年中停滞不前。进一步提高水稻产量的方法之一是增强水稻植株与其周围、表面和内部微生物组之间的联系。本文综述了近年来人们对微生物如何对植物生长、生产和健康产生积极影响的理解进展,重点关注水稻。多种微生物物种和分类群存在于植物的根际和叶际,并且在植物组织内甚至细胞内作为共生内生菌也具有多种作用。它们改变宿主植物的形态,促进其生长、健康和产量,并降低其对生物和非生物胁迫的脆弱性。农业和分子分析的研究结果表明,微生物如何调节水稻植物内部的生长、生理特征和分子信号。然而,仍有许多重大的科学问题有待解决。高通量多组学技术的进步可用于阐明微生物-水稻植物相互作用中的机制。展望未来,微生物接种剂的使用和相关方法为提高水稻产量提供了一些新的、具有成本效益的、更环保的实践方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93d0/8775878/384849ac6fc3/ijms-23-00737-g001.jpg

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