Department of Biotechnology, Mizoram University, Aizawl, Mizoram, India.
Department of Biotechnology/Life Sciences, Pachhunga University College, Aizawl, Mizoram, India.
PeerJ. 2024 Aug 20;12:e17882. doi: 10.7717/peerj.17882. eCollection 2024.
Plants and bacteria are co-evolving and interact with one another in a continuous process. This interaction enables the plant to assimilate the nutrients and acquire protection with the help of beneficial bacteria known as plant growth-promoting bacteria (PGPB). These beneficial bacteria naturally produce bioactive compounds that can assist plants' stress tolerance. Moreover, they employ various direct and indirect processes to induce plant growth and protect plants against pathogens. The direct mechanisms involve phytohormone production, phosphate solubilization, zinc solubilization, potassium solubilization, ammonia production, and nitrogen fixation while, the production of siderophores, lytic enzymes, hydrogen cyanide, and antibiotics are included under indirect mechanisms. This property can be exploited to prepare bioformulants for biofertilizers, biopesticides, and biofungicides, which are convenient alternatives for chemical-based products to achieve sustainable agricultural practices. However, the application and importance of PGPB in sustainable agriculture are still debatable despite its immense diversity and plant growth-supporting activities. Moreover, the performance of PGPB varies greatly and is dictated by the environmental factors affecting plant growth and development. This review emphasizes the role of PGPB in plant growth-promoting activities (stress tolerance, production of bioactive compounds and phytohormones) and summarises new formulations and opportunities.
植物和细菌在不断进化的过程中相互作用。这种相互作用使植物能够在有益细菌(称为植物促生菌)的帮助下吸收营养并获得保护。这些有益细菌自然产生生物活性化合物,帮助植物提高抗逆性。此外,它们采用各种直接和间接的过程来诱导植物生长并保护植物免受病原体侵害。直接机制包括植物激素的产生、磷酸盐的溶解、锌的溶解、钾的溶解、氨的产生和氮的固定,而间接机制则包括铁载体、裂解酶、氢氰酸和抗生素的产生。这种特性可用于制备生物肥料、生物农药和生物杀菌剂的生物制剂,这些制剂是化学产品的方便替代品,可实现可持续农业实践。然而,尽管植物促生菌具有巨大的多样性和支持植物生长的活动,但它在可持续农业中的应用和重要性仍存在争议。此外,植物促生菌的性能差异很大,这取决于影响植物生长和发育的环境因素。本综述强调了植物促生菌在植物生长促进活动(抗逆性、生物活性化合物和植物激素的产生)中的作用,并总结了新的制剂和机会。