Harnessing Trichoderma Species for Sustainable Biocontrol: Mechanisms, Formulation Strategies, Commercialization, and Field Applications

木霉菌 生物技术 生物 生物病虫害防治 非生物成分 生化工程 寄主(生物学) 竞赛(生物学) 植物病害 可持续农业 植物生长 非生物胁迫 农业 抗性(生态学) 植物抗病性 领域(数学) 代谢组学 系统获得性抵抗 根际细菌 植物种类 生态学
作者
Sidratul Muntaha Binta Anam Otithi,Md. Sohel Rana,Md Shariful Islam,Randa Mohammed Zaki,Sajad Ali,Muhammad Fazle Rabbee,Md. Mohidul Hasan,Kwang-Hyun Baek
出处
期刊:Plants [Multidisciplinary Digital Publishing Institute]
卷期号:15 (15): 2260-2260
标识
DOI:10.3390/plants15152260
摘要

Trichoderma species are widely investigated and commercially applied as eco-friendly biocontrol agents in sustainable agriculture. These filamentous fungi protect plants through multiple complementary mechanisms, including mycoparasitism, antibiosis, competition for nutrients and ecological niches, and induction of systemic resistance in host plants. These activities are mediated by a diverse array of secondary metabolites, hydrolytic enzymes, and signaling pathways that collectively suppress pathogens and enhance plant health. Beyond disease control, selected Trichoderma strains promote plant growth by improving nutrient acquisition, modulating phytohormone signaling, and increasing tolerance to abiotic stresses. This review summarizes recent advances in the mechanisms underlying Trichoderma spp. mediated biocontrol, with particular emphasis on secondary metabolites, formulation strategies, commercialization, and field applications. Commercial products are available in various formulations, including wettable powders, granules, and liquid preparations, and have demonstrated efficacy against several economically important plant diseases under field conditions. However, their performance remains highly dependent on strain characteristics, host species, environmental conditions and agricultural practices, resulting in inconsistent efficacy across agroecosystems. Recent progress in genomics, transcriptomics, and metabolomics has substantially improved our understanding of Trichoderma–plant–pathogen interactions and revealed considerable strain-specific variation in biocontrol and plant growth-promoting traits. Future research should prioritize strain-specific optimization, formulation stability, microbiome-informed applications, and improved field predictability. Overall, Trichoderma spp. Represents a valuable component of integrated disease management, offering an effective and sustainable alternative to synthetic pesticides.
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