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了解非生物胁迫环境下的植物-微生物相互作用:综述

Understanding the plant-microbe interactions in environments exposed to abiotic stresses: An overview.

作者信息

Fadiji Ayomide Emmanuel, Yadav Ajar Nath, Santoyo Gustavo, Babalola Olubukola Oluranti

机构信息

Food Security and Safety Focus Area, Faculty of Natural and Agricultural Sciences, North-West University, Private Bag X2046, Mmabatho 2735, South Africa.

Microbial Biotechnology Laboratory, Department of Biotechnology, Dr. Khem Singh Gill Akal College of Agriculture, Eternal University, Baru Sahib, India.

出版信息

Microbiol Res. 2023 Jun;271:127368. doi: 10.1016/j.micres.2023.127368. Epub 2023 Mar 22.

Abstract

Abiotic stress poses a severe danger to agriculture since it negatively impacts cellular homeostasis and eventually stunts plant growth and development. Abiotic stressors like drought and excessive heat are expected to occur more frequently in the future due to climate change, which would reduce the yields of important crops like maize, wheat, and rice which may jeopardize the food security of human populations. The plant microbiomes are a varied and taxonomically organized microbial community that is connected to plants. By supplying nutrients and water to plants, and regulating their physiology and metabolism, plant microbiota frequently helps plants develop and tolerate abiotic stresses, which can boost crop yield under abiotic stresses. In this present study, with emphasis on temperature, salt, and drought stress, we describe current findings on how abiotic stresses impact the plants, microbiomes, microbe-microbe interactions, and plant-microbe interactions as the way microorganisms affect the metabolism and physiology of the plant. We also explore crucial measures that must be taken in applying plant microbiomes in agriculture practices faced with abiotic stresses.

摘要

非生物胁迫对农业构成严重威胁,因为它会对细胞内稳态产生负面影响,并最终阻碍植物的生长和发育。由于气候变化,未来干旱和高温等非生物胁迫预计会更频繁地发生,这将降低玉米、小麦和水稻等重要作物的产量,可能危及人类的粮食安全。植物微生物群是一个多样且分类有序的与植物相关的微生物群落。通过为植物提供养分和水分,并调节其生理和代谢,植物微生物群常常帮助植物生长并耐受非生物胁迫,这可以提高非生物胁迫下的作物产量。在本研究中,我们着重关注温度、盐和干旱胁迫,描述了关于非生物胁迫如何影响植物、微生物群、微生物-微生物相互作用以及植物-微生物相互作用(即微生物影响植物代谢和生理的方式)的当前研究结果。我们还探讨了在面临非生物胁迫的农业实践中应用植物微生物群时必须采取的关键措施。

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