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植物根际促生细菌介导的对干旱和盐胁迫交互作用的抗性研究新进展

Recent advances in PGPR-mediated resilience toward interactive effects of drought and salt stress in plants.

作者信息

Al-Turki Ahmad, Murali M, Omar Ayman F, Rehan Medhat, Sayyed R Z

机构信息

Department of Plant Production and Protection, College of Agriculture and Veterinary Medicine, Qassim University, Buraydah, Saudi Arabia.

Department of Studies in Botany, University of Mysore, Mysore, India.

出版信息

Front Microbiol. 2023 Sep 27;14:1214845. doi: 10.3389/fmicb.2023.1214845. eCollection 2023.

Abstract

The present crisis at hand revolves around the need to enhance plant resilience to various environmental stresses, including abiotic and biotic stresses, to ensure sustainable agriculture and mitigate the impact of climate change on crop production. One such promising approach is the utilization of plant growth-promoting rhizobacteria (PGPR) to mediate plant resilience to these stresses. Plants are constantly exposed to various stress factors, such as drought, salinity, pathogens, and nutrient deficiencies, which can significantly reduce crop yield and quality. The PGPR are beneficial microbes that reside in the rhizosphere of plants and have been shown to positively influence plant growth and stress tolerance through various mechanisms, including nutrient solubilization, phytohormone production, and induction of systemic resistance. The review comprehensively examines the various mechanisms through which PGPR promotes plant resilience, including nutrient acquisition, hormonal regulation, and defense induction, focusing on recent research findings. The advancements made in the field of PGPR-mediated resilience through multi-omics approaches (, genomics, transcriptomics, proteomics, and metabolomics) to unravel the intricate interactions between PGPR and plants have been discussed including their molecular pathways involved in stress tolerance. Besides, the review also emphasizes the importance of continued research and implementation of PGPR-based strategies to address the pressing challenges facing global food security including commercialization of PGPR-based bio-formulations for sustainable agricultural.

摘要

当前的危机主要围绕增强植物对各种环境胁迫(包括非生物胁迫和生物胁迫)的抗性,以确保可持续农业并减轻气候变化对作物生产的影响。一种很有前景的方法是利用植物促生根际细菌(PGPR)来介导植物对这些胁迫的抗性。植物不断受到各种胁迫因素的影响,如干旱、盐度、病原体和养分缺乏,这些都会显著降低作物产量和质量。PGPR是存在于植物根际的有益微生物,已证明它们通过各种机制(包括养分溶解、植物激素产生和系统抗性诱导)对植物生长和胁迫耐受性产生积极影响。本综述全面研究了PGPR促进植物抗性的各种机制,包括养分获取、激素调节和防御诱导,并重点关注了近期的研究发现。讨论了通过多组学方法(基因组学、转录组学、蛋白质组学和代谢组学)在PGPR介导的抗性领域取得的进展,以揭示PGPR与植物之间复杂的相互作用,包括它们参与胁迫耐受性的分子途径。此外,该综述还强调了持续研究和实施基于PGPR的策略以应对全球粮食安全面临的紧迫挑战的重要性,包括基于PGPR的生物制剂商业化以实现可持续农业。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ce2/10565232/ecddd5b4795c/fmicb-14-1214845-g001.jpg

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