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内生微生物的现状和未来前景:农业和环境可持续性的生物和非生物胁迫管理的有前途的候选者。

Current Scenario and Future Prospects of Endophytic Microbes: Promising Candidates for Abiotic and Biotic Stress Management for Agricultural and Environmental Sustainability.

机构信息

Zuckerberg Institute for Water Research, The Jacob Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Sede Boqer Campus, 8499000, Midreshet Ben-Gurion, Israel.

French Associates Institute for Agriculture and Biotechnology of Drylands, The Jacob Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Sde Boker Campus, 8499000, Midreshet Ben-Gurion, Israel.

出版信息

Microb Ecol. 2023 Oct;86(3):1455-1486. doi: 10.1007/s00248-023-02190-1. Epub 2023 Mar 14.

Abstract

Globally, substantial research into endophytic microbes is being conducted to increase agricultural and environmental sustainability. Endophytic microbes such as bacteria, actinomycetes, and fungi inhabit ubiquitously within the tissues of all plant species without causing any harm or disease. Endophytes form symbiotic relationships with diverse plant species and can regulate numerous host functions, including resistance to abiotic and biotic stresses, growth and development, and stimulating immune systems. Moreover, plant endophytes play a dominant role in nutrient cycling, biodegradation, and bioremediation, and are widely used in many industries. Endophytes have a stronger predisposition for enhancing mineral and metal solubility by cells through the secretion of organic acids with low molecular weight and metal-specific ligands (such as siderophores) that alter soil pH and boost binding activity. Finally, endophytes synthesize various bioactive compounds with high competence that are promising candidates for new drugs, antibiotics, and medicines. Bioprospecting of endophytic novel secondary metabolites has given momentum to sustainable agriculture for combating environmental stresses. Biotechnological interventions with the aid of endophytes played a pivotal role in crop improvement to mitigate biotic and abiotic stress conditions like drought, salinity, xenobiotic compounds, and heavy metals. Identification of putative genes from endophytes conferring resistance and tolerance to crop diseases, apart from those involved in the accumulation and degradation of contaminants, could open new avenues in agricultural research and development. Furthermore, a detailed molecular and biochemical understanding of endophyte entry and colonization strategy in the host would better help in manipulating crop productivity under changing climatic conditions. Therefore, the present review highlights current research trends based on the SCOPUS database, potential biotechnological interventions of endophytic microorganisms in combating environmental stresses influencing crop productivity, future opportunities of endophytes in improving plant stress tolerance, and their contribution to sustainable remediation of hazardous environmental contaminants.

摘要

全球范围内,大量研究人员正在深入研究内生微生物,以提高农业和环境的可持续性。内生微生物如细菌、放线菌和真菌普遍存在于所有植物物种的组织内,而不会对其造成任何伤害或疾病。内生菌与多种植物物种形成共生关系,可以调节宿主的许多功能,包括抗逆性、生长发育和免疫系统刺激。此外,植物内生菌在养分循环、生物降解和生物修复中发挥着主导作用,广泛应用于许多行业。内生菌通过分泌低分子量的有机酸和具有金属特异性的配体(如铁载体),更倾向于增强细胞对矿物质和金属的溶解性,从而改变土壤 pH 值并提高结合活性。最后,内生菌合成了各种具有高竞争力的生物活性化合物,是新药、抗生素和药物的有前途的候选物。内生新颖次生代谢产物的生物勘探为应对环境压力促进了可持续农业的发展。在生物技术的帮助下,内生菌在改善作物方面发挥了关键作用,以减轻干旱、盐度、外来化合物和重金属等生物和非生物胁迫条件。从内生菌中鉴定出赋予作物对疾病抗性和耐受性的假定基因,除了那些参与污染物的积累和降解的基因外,可能会为农业研究和开发开辟新途径。此外,深入了解内生菌进入和定植宿主的分子和生化策略,将有助于更好地在气候变化条件下操纵作物生产力。因此,本综述基于 SCOPUS 数据库,强调了当前的研究趋势,内生微生物在应对影响作物生产力的环境胁迫方面的潜在生物技术干预措施,内生菌在提高植物抗逆性方面的未来机遇,以及它们对危险环境污染物可持续修复的贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/923a/10497456/5c88b6e9fa53/248_2023_2190_Fig1_HTML.jpg

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