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基于蛋白质组学的小麦品种应对菌株的数据整合揭示了控制赤霉病的核心响应模式。

Proteomics-Based Data Integration of Wheat Cultivars Facing Strains Revealed a Core-Responsive Pattern Controlling Fusarium Head Blight.

作者信息

Fabre Francis, Urbach Serge, Roche Sylvie, Langin Thierry, Bonhomme Ludovic

机构信息

Université Clermont Auvergne, INRAE, UMR 1095 Génétique Diversité Ecophysiologie des Céréales, Clermont-Ferrand, France.

Institut de Génomique Fonctionnelle, Université de Montpellier, CNRS, INSERM, Montpellier, France.

出版信息

Front Plant Sci. 2021 May 31;12:644810. doi: 10.3389/fpls.2021.644810. eCollection 2021.

Abstract

Fusarium head blight (FHB), mainly occurring upon infection in a wide variety of small-grain cereals, is supposed to be controlled by a range of processes diverted by the fungal pathogen, the so-called susceptibility factors. As a mean to provide relevant information about the molecular events involved in FHB susceptibility in bread wheat, we studied an extensive proteome of more than 7,900 identified wheat proteins in three cultivars of contrasting susceptibilities during their interaction with three strains of different aggressiveness. No cultivar-specific proteins discriminated the three wheat genotypes, demonstrating the establishment of a core proteome regardless of unequivocal FHB susceptibility differences. Quantitative protein analysis revealed that most of the FHB-induced molecular adjustments were shared by wheat cultivars and occurred independently of the strain aggressiveness. Although subtle abundance changes evidenced genotype-dependent responses to FHB, cultivar distinction was found to be mainly due to basal abundance differences, especially regarding the chloroplast functions. Integrating these data with previous proteome mapping of the three strains facing the three same wheat cultivars, we demonstrated strong correlations between the wheat protein abundance changes and the adjustments of fungal proteins supposed to interfere with host molecular functions. Together, these results provide a resourceful dataset that expands our understanding of the specific molecular events taking place during the wheat- interaction.

摘要

小麦赤霉病(FHB)主要发生在多种小粒谷物受到感染时,据推测它受一系列由真菌病原体引发的过程控制,即所谓的感病因子。为了提供有关面包小麦对FHB感病性所涉及分子事件的相关信息,我们研究了三种感病性不同的小麦品种在与三种致病力不同的菌株相互作用期间,超过7900种已鉴定小麦蛋白的广泛蛋白质组。没有品种特异性蛋白能够区分这三种小麦基因型,这表明无论FHB感病性存在明确差异,都建立了一个核心蛋白质组。蛋白质定量分析表明,大多数FHB诱导的分子调节在小麦品种中是共有的,并且独立于菌株致病力发生。尽管细微的丰度变化证明了对FHB的基因型依赖性反应,但发现品种区分主要是由于基础丰度差异,特别是在叶绿体功能方面。将这些数据与之前三种菌株面对三种相同小麦品种的蛋白质组图谱相结合,我们证明了小麦蛋白质丰度变化与推测会干扰宿主分子功能的真菌蛋白质调节之间存在强相关性。总之,这些结果提供了一个丰富的数据集,扩展了我们对小麦相互作用过程中发生的特定分子事件的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e9e/8201412/84229c9745f4/fpls-12-644810-g006.jpg

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