Microbial Allies in Agriculture: Harnessing Plant Growth-Promoting Microorganisms as Guardians against Biotic and Abiotic Stresses

IF 3.1 3区 农林科学 Q1 HORTICULTURE Horticulturae Pub Date : 2023-12-23 DOI:10.3390/horticulturae10010012
Islam I. Teiba, Emad H. El-Bilawy, N. I. Elsheery, A. Rastogi
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Abstract

Plants face many biological and non-biological challenges throughout their life cycle, from seed to harvest. These challenges have recently increased due to climate changes. Strategies for confronting different types of stresses depend on the type of stress, the cultivated plant, climatic conditions, soil characteristics, water variables, cost, and management system. Chemical methods (fertilizers and pesticides) have been widely used to manage abiotic and biotic stresses, but they raise concerns about environmental contamination, toxic residues, and the development of resistant pathogens. Eco-friendly strategies have recently become one of the most important approaches to obtaining high-quality and quantitative plant-based products. Microbial inoculants, such as plant growth-promoting microorganisms (PGPM), offer a sustainable alternative to chemical methods. PGPM can augment plant growth and nutrition, improve plant tolerance to abiotic stresses, and reduce the growth of certain pathogens. They employ a variety of mechanisms to alleviate stressors and boost plant resilience, including nutrient assimilation, production of metabolites, and activation of systemic resistance. This review aims to elucidate the impact of PGPM, with a particular focus on plant growth-promoting bacteria (PGPB), and their mechanisms of action on plants under varying stressors, while also identifying areas for further research in both PGPB and other non-bacterial organisms.
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农业中的微生物盟友:利用促进植物生长的微生物作为抵御生物和非生物压力的卫士
植物从播种到收获的整个生命周期都面临着许多生物和非生物挑战。由于气候变化,这些挑战最近有所增加。应对不同类型胁迫的策略取决于胁迫类型、栽培植物、气候条件、土壤特性、水分变量、成本和管理系统。化学方法(化肥和杀虫剂)已被广泛用于管理非生物和生物胁迫,但它们引起了对环境污染、有毒残留物和抗性病原体发展的担忧。最近,生态友好型策略已成为获得高质量、高产量植物产品的最重要方法之一。微生物接种剂,如植物生长促进微生物(PGPM),为化学方法提供了一种可持续的替代方法。PGPM 可促进植物生长和营养,提高植物对非生物性胁迫的耐受性,并减少某些病原体的生长。它们采用多种机制来缓解胁迫,提高植物的抗逆性,包括营养同化、产生代谢产物和激活系统抗性。本综述旨在阐明 PGPM 的影响,尤其侧重于植物生长促进细菌 (PGPB),以及它们在不同胁迫下对植物的作用机制,同时还确定了 PGPB 和其他非细菌生物有待进一步研究的领域。
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来源期刊
Horticulturae
Horticulturae HORTICULTURE-
CiteScore
3.50
自引率
19.40%
发文量
998
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