Sugiyama Akifumi
Research Institute for Sustainable Humanosphere, Kyoto University, Gokasho, Uji, Kyoto 611-0011, Japan.
Plant Biotechnol (Tokyo). 2023 Jun 25;40(2):123-133. doi: 10.5511/plantbiotechnology.23.0227a.
Plant specialized metabolites (PSMs) are considerably diverse compounds with multifaceted roles in the adaptation of plants to various abiotic and biotic stresses. PSMs are frequently secreted into the rhizosphere, a small region around the roots, where they facilitate interactions between plants and soil microorganisms. PSMs shape the host-specific rhizosphere microbial communities that potentially influence plant growth and tolerance to adverse conditions. Plant mutants defective in PSM biosynthesis contribute to reveal the roles of each PSM in plant-microbiota interactions in the rhizosphere. Recently, various approaches have been used to directly supply PSMs to soil by in vitro methods or through addition in pots with plants. This review focuses on the feasibility of the direct PSM application methods to reveal rhizospheric plant-microbiota interactions and discusses the possibility of applying the knowledge gained to future engineering of rhizospheric traits.
植物特殊代谢产物(PSMs)是种类繁多的化合物,在植物适应各种非生物和生物胁迫中发挥着多方面的作用。PSMs经常分泌到根际,即根周围的一个小区域,在那里它们促进植物与土壤微生物之间的相互作用。PSMs塑造了宿主特异性的根际微生物群落,这些群落可能影响植物生长和对不利条件的耐受性。PSM生物合成有缺陷的植物突变体有助于揭示每种PSM在根际植物-微生物群相互作用中的作用。最近,人们采用了各种方法,通过体外方法或在种植植物的花盆中添加PSMs,将其直接供应到土壤中。本综述重点关注直接应用PSMs方法以揭示根际植物-微生物群相互作用的可行性,并讨论将所获知识应用于未来根际性状工程的可能性。