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生物相互作用期间植物多胺代谢的生理和分子影响

Physiological and molecular implications of plant polyamine metabolism during biotic interactions.

作者信息

Jiménez-Bremont Juan F, Marina María, Guerrero-González María de la Luz, Rossi Franco R, Sánchez-Rangel Diana, Rodríguez-Kessler Margarita, Ruiz Oscar A, Gárriz Andrés

机构信息

División de Biología Molecular, Instituto Potosino de Investigación Científica y Tecnológica, San Luis Potosí México.

UB3, Instituto de Investigaciones Biotecnológicas, Instituto Tecnológico de Chascomús, Universidad Nacional de San Martín, Consejo Nacional de Investigaciones Científicas y Técnicas Chascomús, Argentina.

出版信息

Front Plant Sci. 2014 Mar 18;5:95. doi: 10.3389/fpls.2014.00095. eCollection 2014.

Abstract

During ontogeny, plants interact with a wide variety of microorganisms. The association with mutualistic microbes results in benefits for the plant. By contrast, pathogens may cause a remarkable impairment of plant growth and development. Both types of plant-microbe interactions provoke notable changes in the polyamine (PA) metabolism of the host and/or the microbe, being each interaction a complex and dynamic process. It has been well documented that the levels of free and conjugated PAs undergo profound changes in plant tissues during the interaction with microorganisms. In general, this is correlated with a precise and coordinated regulation of PA biosynthetic and catabolic enzymes. Interestingly, some evidence suggests that the relative importance of these metabolic pathways may depend on the nature of the microorganism, a concept that stems from the fact that these amines mediate the activation of plant defense mechanisms. This effect is mediated mostly through PA oxidation, even though part of the response is activated by non-oxidized PAs. In the last years, a great deal of effort has been devoted to profile plant gene expression following microorganism recognition. In addition, the phenotypes of transgenic and mutant plants in PA metabolism genes have been assessed. In this review, we integrate the current knowledge on this field and analyze the possible roles of these amines during the interaction of plants with microbes.

摘要

在个体发育过程中,植物与各种各样的微生物相互作用。与互利微生物的关联给植物带来益处。相比之下,病原体可能会显著损害植物的生长和发育。这两种类型的植物 - 微生物相互作用都会引发宿主和/或微生物的多胺(PA)代谢的显著变化,每种相互作用都是一个复杂而动态的过程。有充分的文献记载,在与微生物相互作用期间,植物组织中游离和结合态多胺的水平会发生深刻变化。一般来说,这与多胺生物合成和分解代谢酶的精确且协调的调节相关。有趣的是,一些证据表明这些代谢途径的相对重要性可能取决于微生物的性质,这一概念源于这些胺介导植物防御机制激活这一事实。这种效应主要通过多胺氧化介导,尽管部分反应是由未氧化的多胺激活的。在过去几年中,大量的努力致力于描绘微生物识别后植物基因的表达情况。此外,还评估了多胺代谢基因的转基因和突变植物的表型。在本综述中,我们整合了该领域的现有知识,并分析了这些胺在植物与微生物相互作用过程中的可能作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/041b/3957736/1ac2ec54b9e3/fpls-05-00095-g001.jpg

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