Department of Plant Protection, Hebei Agricultural University, Lingyusi Street, Hebei, 071001, China.
International Centre for Genetic Engineering and Biotechnology, Cape Town, South Africa.
F1000Res. 2025 Mar 11;13:1071. doi: 10.12688/f1000research.154392.2. eCollection 2024.
Biopesticides are pest control products derived from natural sources such as microbes, macro-organisms (insects and pathogens), plant extracts, and certain minerals. Many biopesticides are considered environmentally safe and can complement or substitute conventional chemical pesticides. They can also be highly specific or broad spectrum with a unique mode of action controlling a wide range of pest species. Due to their target-specificity and low to no environmental residuality, biopesticides conform to the 3 pillars of Climate-Smart Agriculture, the Sustainable Development Goals, and, ultimately, the Paris Agreement. This review focuses largely on microbial biopesticides derived from fungi, bacteria, viruses, and nematodes. It discusses (i) the various microbial biopesticide formulations, (ii) the mode of microbial biopesticide action, (iii) the factors that affect the potential efficacy of biopesticides, (iv) challenges to the adoption of microbial biopesticides, and (v) the role of microbial biopesticides in Integrated Pest Management programs. Finally, advancements in application techniques, as well as future research directions and gaps, are highlighted.
生物农药是从微生物、大型生物(昆虫和病原体)、植物提取物和某些矿物质等天然来源中提取的害虫防治产品。许多生物农药被认为对环境安全,可作为传统化学农药的补充或替代品。它们也可以具有独特的作用模式,对广泛的害虫物种进行高度特异性或广谱控制。由于其针对特定目标且环境残留性低或无,生物农药符合气候智能型农业、可持续发展目标以及最终的《巴黎协定》的三大支柱。本综述主要集中在真菌、细菌、病毒和线虫等微生物生物农药上。它讨论了(i)各种微生物生物农药制剂,(ii)微生物生物农药的作用模式,(iii)影响生物农药潜在功效的因素,(iv)采用微生物生物农药的挑战,以及(v)微生物生物农药在病虫害综合治理计划中的作用。最后,强调了应用技术的进步以及未来的研究方向和差距。