Toppo Prabha, Kagatay Lahasang Lamu, Gurung Ankita, Singla Priyanka, Chakraborty Rakhi, Roy Swarnendu, Mathur Piyush
Microbiology Laboratory, Department of Botany, University of North Bengal, Rajarammohunpur, Dist. Darjeeling, Siliguri, West Bengal India.
Department of Botany, Mount Carmel College, Bengaluru, Karnataka India.
3 Biotech. 2023 Jun;13(6):191. doi: 10.1007/s13205-023-03605-z. Epub 2023 May 14.
Endophytic fungi stimulate the production of an enormous number of bioactive metabolites in medicinal plants and affect the different steps of biosynthetic pathways of these secondary metabolites. Endophytic fungi possess a number of biosynthetic gene clusters that possess genes for various enzymes, transcription factors, etc., in their genome responsible for the production of secondary metabolites. Additionally, endophytic fungi also modulate the expression of various genes responsible for the synthesis of key enzymes involved in metabolic pathways of such as , , etc. involved in the production of a large number of phenolic compounds as well as regulate the expression of genes involved in the production of alkaloids and terpenoids in different plants. This review aims to provide a comprehensive overview of gene expression related to endophytes and their impact on metabolic pathways. Additionally, this review will emphasize the studies done to isolate these secondary metabolites from endophytic fungi in large quantities and assess their bioactivity. Due to ease in synthesis of secondary metabolites and their huge application in the medical industry, these bioactive metabolites are now being extracted from strains of these endophytic fungi commercially. Apart from their application in the pharmaceutical industry, most of these metabolites extracted from endophytic fungi also possess plant growth-promoting ability, bioremediation potential, novel bio control agents, sources of anti-oxidants, etc. The review will comprehensively shed a light on the biotechnological application of these fungal metabolites at the industrial level.
内生真菌刺激药用植物中大量生物活性代谢物的产生,并影响这些次生代谢物生物合成途径的不同步骤。内生真菌拥有许多生物合成基因簇,其基因组中含有负责次生代谢物产生的各种酶、转录因子等的基因。此外,内生真菌还调节负责合成参与代谢途径关键酶的各种基因的表达,如参与大量酚类化合物产生的酶等,以及调节不同植物中参与生物碱和萜类化合物产生的基因的表达。本综述旨在全面概述与内生菌相关的基因表达及其对代谢途径的影响。此外,本综述将强调为大量从内生真菌中分离这些次生代谢物并评估其生物活性所做的研究。由于次生代谢物合成容易且在医药行业有巨大应用,这些生物活性代谢物现在正从这些内生真菌菌株中进行商业提取。除了在制药行业的应用外,从内生真菌中提取的大多数这些代谢物还具有促进植物生长的能力、生物修复潜力、新型生物防治剂、抗氧化剂来源等。本综述将全面揭示这些真菌代谢物在工业层面的生物技术应用。