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感病小麦对赤霉病的转录组动态变化表明,其对禾谷镰刀菌感染的分子反应与籽粒发育过程相适应。

Transcriptome dynamics of a susceptible wheat upon Fusarium head blight reveals that molecular responses to Fusarium graminearum infection fit over the grain development processes.

作者信息

Chetouhi Cherif, Bonhomme Ludovic, Lasserre-Zuber Pauline, Cambon Florence, Pelletier Sandra, Renou Jean-Pierre, Langin Thierry

机构信息

INRA, UMR1095, Genetics, Diversity and Ecophysiology of Cereals, Clermont-Ferrand, F-63100, France.

Université Blaise Pascal, UMR Genetics, Diversity and Ecophysiology of Cereals, Clermont-Ferrand, F-63100, France.

出版信息

Funct Integr Genomics. 2016 Mar;16(2):183-201. doi: 10.1007/s10142-016-0476-1. Epub 2016 Jan 21.

Abstract

In many plant/pathogen interactions, host susceptibility factors are key determinants of disease development promoting pathogen growth and spreading in plant tissues. In the Fusarium head blight (FHB) disease, the molecular basis of wheat susceptibility is still poorly understood while it could provide new insights into the understanding of the wheat/Fusarium graminearum (Fg) interaction and guide future breeding programs to produce cultivars with sustainable resistance. To identify the wheat grain candidate genes, a genome-wide gene expression profiling was performed in the French susceptible wheat cultivar, Recital. Gene-specific two-way ANOVA of about 40 K transcripts at five grain developmental stages identified 1309 differentially expressed genes. Out of these, 536 were impacted by the Fg effect alone. Most of these Fg-responsive genes belonged to biological and molecular functions related to biotic and abiotic stresses indicating the activation of common stress pathways during susceptibility response of wheat grain to FHB. This analysis revealed also 773 other genes displaying either specific Fg-responsive profiles along with grain development stages or synergistic adjustments with the grain development effect. These genes were involved in various molecular pathways including primary metabolism, cell death, and gene expression reprogramming. An increasingly complex host response was revealed, as was the impact of both Fg infection and grain ontogeny on the transcription of wheat genes. This analysis provides a wealth of candidate genes and pathways involved in susceptibility responses to FHB and depicts new clues to the understanding of the susceptibility determinism in plant/pathogen interactions.

摘要

在许多植物与病原体的相互作用中,宿主感病因子是疾病发展的关键决定因素,可促进病原体在植物组织中的生长和传播。在小麦赤霉病(FHB)中,小麦感病性的分子基础仍知之甚少,而这可能为理解小麦与禾谷镰刀菌(Fg)的相互作用提供新的见解,并指导未来的育种计划,以培育出具有可持续抗性的品种。为了鉴定小麦籽粒中的候选基因,对法国感病小麦品种Recital进行了全基因组基因表达谱分析。在五个籽粒发育阶段对约40K转录本进行基因特异性双向方差分析,鉴定出1309个差异表达基因。其中,536个仅受Fg效应影响。这些对Fg有响应的基因大多属于与生物和非生物胁迫相关的生物学和分子功能,表明小麦籽粒对FHB感病反应期间共同胁迫途径被激活。该分析还揭示了另外773个基因,它们在籽粒发育阶段呈现出特定的Fg响应谱,或者与籽粒发育效应存在协同调节。这些基因参与了包括初级代谢、细胞死亡和基因表达重编程在内的各种分子途径。研究揭示了宿主反应日益复杂,以及Fg感染和籽粒个体发育对小麦基因转录的影响。该分析提供了大量参与对FHB感病反应的候选基因和途径,并为理解植物与病原体相互作用中的感病决定因素描绘了新的线索。

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