Research Centre for Plant Growth and Development, School of Life Sciences, University of KwaZulu-Natal Pietermaritzburg, Private Bag X01, Scottsville 3209, South Africa.
Department of Biological Sciences, College of Basic Sciences and Humanities, G. B. Pant University of Agriculture and Technology, Pantnagar, Uttarakhand, India.
Biotechnol Adv. 2020 Mar-Apr;39:107462. doi: 10.1016/j.biotechadv.2019.107462. Epub 2019 Oct 24.
The escalating demand for secondary metabolites in international markets poses a severe threat to many plant species. An unscrupulous collection is also the immediate challenge to the survival of many unthreatened as well as vulnerable plants. Fungal endophytes have emerged in recent years as a promising substitute for sources of plant secondary metabolites. Many appealing secondary metabolites with potent antibacterial, antifungal, insecticidal, antioxidant, cytotoxic and anticancer properties have been discovered from endophytic fungi. Concerning their distinctive genetic and metabolic diversity and promising activities, they hold a plausible application in medicine and industry. However, there is little success in utilizing the pharmaceutical potential of fungal endophytes. Cutting-edge research is desirable to establish and bolster in vitro biosynthetic proficiency of fungal endophytes. Modern biotechnological techniques [such as multilocus sequence typing (MLST), metabolomics, metagenomics and next-generation sequencing (NGS) technologies] and bioinformatics approaches can fill a gap in fungal endophyte research. The present review focuses on how advanced chemical, biotechnological and computational molecular biology methods can be used for robust exploitation of bioactive compounds from these microorganisms.
国际市场对次生代谢物的需求不断增长,这对许多植物物种构成了严重威胁。肆无忌惮的采集也直接威胁到许多没有受到威胁和脆弱的植物的生存。近年来,真菌内生菌已成为植物次生代谢物来源的有前途的替代品。从内生真菌中发现了许多具有强大抗菌、抗真菌、杀虫、抗氧化、细胞毒性和抗癌特性的吸引人的次生代谢物。鉴于它们独特的遗传和代谢多样性以及有希望的活性,它们在医学和工业中有合理的应用前景。然而,利用真菌内生菌的药用潜力方面几乎没有成功。需要进行前沿研究,以建立和增强真菌内生菌的体外生物合成能力。现代生物技术技术[如多位点序列分型(MLST)、代谢组学、宏基因组学和下一代测序(NGS)技术]和生物信息学方法可以填补真菌内生菌研究的空白。本综述重点介绍了如何使用先进的化学、生物技术和计算分子生物学方法来从这些微生物中稳健地开发生物活性化合物。