Verma Vinita, Srivastava Alok, Garg Sanjay Kumar, Singh Vijay Pal, Arora Pankaj Kumar
Department of Environmental Microbiology, Babasaheb Bhimrao Ambedkar University, Lucknow, 226025, India.
Department of Plant Science, MJP Rohilkhand University, Bareilly, India.
Biotechnol Notes. 2023 Dec 31;5:1-7. doi: 10.1016/j.biotno.2023.12.006. eCollection 2024.
Fungal endophytes are valuable sources of bioactive compounds with diverse applications. The exploration of these compounds not only contributes to our understanding of ecological interactions but also holds promise for the development of novel products with agricultural, medicinal, and industrial significance. Continued exploration of fungal endophyte diversity and understanding the ecological roles of bioactive compounds present opportunities for new discoveries and applications. Omics techniques, which include genomics, transcriptomics, proteomics, and metabolomics, contribute to the discovery of novel bioactive compounds produced by fungal endophytes with their potential applications. The omics techniques play a critical role in unraveling the complex interactions between fungal endophytes and their host plants, providing valuable insights into the molecular mechanisms and potential applications of these relationships. This review provides an overview of how omics techniques contribute to the study of fungal endophytes.
真菌内生菌是具有多种应用的生物活性化合物的宝贵来源。对这些化合物的探索不仅有助于我们理解生态相互作用,而且有望开发出具有农业、医药和工业意义的新产品。持续探索真菌内生菌的多样性并了解生物活性化合物的生态作用,为新发现和应用提供了机会。组学技术,包括基因组学、转录组学、蛋白质组学和代谢组学,有助于发现真菌内生菌产生的新型生物活性化合物及其潜在应用。组学技术在揭示真菌内生菌与其宿主植物之间的复杂相互作用方面发挥着关键作用,为这些关系的分子机制和潜在应用提供了有价值的见解。本综述概述了组学技术如何有助于真菌内生菌的研究。