Specialized metabolites as versatile tools in shaping plant-microbe associations
作者机构:Institute of Bioorganic ChemistryPolish Academy of SciencesNoskowskiego 12/1461-704 PoznańPoland
出 版 物:《Molecular Plant》 (分子植物(英文版))
年 卷 期:2023年第16卷第1期
页 面:122-144页
核心收录:
学科分类:1008[医学-中药学(可授医学、理学学位)] 1006[医学-中西医结合] 100602[医学-中西医结合临床] 10[医学]
基 金:National Science Centre OPUS grant 2019/35/B/NZ1/03731
主 题:microbiome nitrogen/sulfur-containing compounds phenylpropanoids plant immunity symbiosis terpenoids
摘 要:Plants are rich repository of a large number of chemical compounds collectively referred to as specialized *** compounds are of importance for adaptive processes including responses against changing abiotic conditions and interactions with various co-existing *** of the strikingly affirmed functions of these specialized metabolites is their involvement in plants’life-long interactions with complex multi-kingdom microbiomes including both beneficial and harmful *** developments in genomic and molecular biology tools not only help to generate well-curated information about regulatory and structural components of biosynthetic pathways of plant specialized metabolites but also to create and screen mutant lines defective in their *** this review,we have comprehensively surveyed the function of these specialized metabolites and discussed recent research findings demonstrating the responses of various microbes on tested mutant lines having defective biosynthesis of particular *** addition,we attempt to provide key clues about the impact of these metabolites on the assembly of the plant microbiome by summarizing the major findings of recent comparative metagenomic analyses of available mutant lines under customized and natural microbial ***,we delineate benchmark initiatives that aim to engineer or manipulate the biosynthetic pathways to produce specialized metabolites in heterologous systems but also to diversify their immune *** denoting the function of these metabolites,we also discuss the critical bottlenecks associated with understanding and exploiting their function in improving plant adaptation to the environment.