Abuyusuf Md, Rubel Mehede Hassan, Kim Hoy-Taek, Jung Hee-Jeong, Nou Ill-Sup, Park Jong-In
Department of Horticulture, Sunchon National University, 255 Jungang-ro, Suncheon, Jeonnam, 57922, Republic of Korea.
Department of Agronomy, Patuakhali Science and Technology University, Patuakhali, 8602, Bangladesh.
Biochem Genet. 2023 Apr;61(2):451-470. doi: 10.1007/s10528-022-10269-6. Epub 2022 Sep 4.
Glucosinolates (GSLs) and GSL-associated genes are receiving increasing attention from molecular biologists due to their multifunctional properties. GSLs are secondary metabolites considered to be highly active in most Brassica species. Their importance has motivated the discovery and functional analysis of the GSLs and GSL hydrolysis products involved in disease development in brassicas and other plants. Comprehensive knowledge of the GSL content of Brassica species and the molecular details of GSL-related genes will help elucidate the molecular control of this plant defense system. This report provides an overview of the current status of knowledge on GSLs, GSL biosynthesis, as well as hydrolysis related genes, and GSL hydrolysis products that regulate fungal, bacterial, and insect resistance in cabbage and other brassicas.
由于其多功能特性,硫代葡萄糖苷(GSLs)和与GSL相关的基因正受到分子生物学家越来越多的关注。GSLs是次生代谢产物,被认为在大多数十字花科物种中具有高活性。它们的重要性促使人们对参与芸苔属和其他植物疾病发展的GSLs及其水解产物进行发现和功能分析。全面了解十字花科物种的GSL含量以及与GSL相关基因的分子细节,将有助于阐明这种植物防御系统的分子调控机制。本报告概述了关于GSLs、GSL生物合成、水解相关基因以及调节甘蓝和其他十字花科植物对真菌、细菌和昆虫抗性的GSL水解产物的现有知识状况。