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与玉米根相互作用期间的质外体分泌组显示出对植物防御的抑制和对氧化应激分泌蛋白的清除作用。

The Apoplastic Secretome of During Interaction With Maize Roots Shows an Inhibition of Plant Defence and Scavenging Oxidative Stress Secreted Proteins.

作者信息

Nogueira-Lopez Guillermo, Greenwood David R, Middleditch Martin, Winefield Christopher, Eaton Carla, Steyaert Johanna M, Mendoza-Mendoza Artemio

机构信息

Bio-Protection Research Centre, Lincoln University, Lincoln, New Zealand.

School of Biological Sciences, The University of Auckland, Auckland, New Zealand.

出版信息

Front Plant Sci. 2018 Apr 5;9:409. doi: 10.3389/fpls.2018.00409. eCollection 2018.

Abstract

In Nature, almost every plant is colonized by fungi. is a biocontrol fungus which has the capacity to behave as an opportunistic plant endophyte. Even though many plants are colonized by this symbiont, the exact mechanisms by which masks its entrance into its plant host remain unknown, but likely involve the secretion of different families of proteins into the apoplast that may play crucial roles in the suppression of plant immune responses. In this study, we investigated colonization of maize roots under hydroponic conditions, evidencing inter- and intracellular colonization by the fungus and modifications in root morphology and coloration. Moreover, we show that upon host penetration, secretes into the apoplast an arsenal of proteins to facilitate inter- and intracellular colonization of maize root tissues. Using a gel-free shotgun proteomics approach, 95 and 43 secretory proteins were identified from maize and , respectively. A reduction in the maize secretome (36%) was induced by , including two major groups, glycosyl hydrolases and peroxidases. Furthermore, secreted proteins were mainly involved in cell wall hydrolysis, scavenging of reactive oxygen species and secondary metabolism, as well as putative effector-like proteins. Levels of peroxidase activity were reduced in the inoculated roots, suggesting a strategy used by to manipulate host immune responses. The results provide an insight into the crosstalk in the apoplast which is essential to maintain the -plant interaction.

摘要

在自然界中,几乎每种植物都有真菌定殖。[具体真菌名称]是一种具有作为机会性植物内生菌能力的生防真菌。尽管许多植物都被这种共生体定殖,但它掩盖其进入植物宿主的确切机制仍不清楚,但可能涉及向质外体分泌不同家族的蛋白质,这些蛋白质可能在抑制植物免疫反应中起关键作用。在本研究中,我们研究了[具体真菌名称]在水培条件下对玉米根的定殖情况,证明了该真菌在细胞间和细胞内的定殖以及根形态和颜色的改变。此外,我们表明,在穿透宿主时,[具体真菌名称]向质外体分泌一系列蛋白质,以促进玉米根组织的细胞间和细胞内定殖。使用无胶鸟枪法蛋白质组学方法,分别从玉米和[具体真菌名称]中鉴定出95种和43种分泌蛋白。[具体真菌名称]诱导玉米分泌组减少(36%),包括两个主要类别,即糖基水解酶和过氧化物酶。此外,[具体真菌名称]分泌的蛋白质主要参与细胞壁水解清除活性氧和次生代谢,以及假定的效应样蛋白。接种根中的过氧化物酶活性水平降低,表明[具体真菌名称]用于操纵宿主免疫反应的一种策略。这些结果为深入了解质外体中的相互作用提供了线索,这对于维持[具体真菌名称]与植物的相互作用至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86c7/5896443/b0c6a6455cde/fpls-09-00409-g0002.jpg

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