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鉴定和描述控制. 数量抗性的去甲基化 DNA 位点。

Identification and characterisation of hypomethylated DNA loci controlling quantitative resistance in .

机构信息

P3 Centre for Plant and Soil Biology, Department of Animal and Plant Sciences, University of Sheffield, Sheffield, United Kingdom.

Department of Animal, Plant and Soil Science, ARC Centre of Excellence in Plant Energy Biology, La Trobe University, Melbourne, Australia.

出版信息

Elife. 2019 Jan 4;8:e40655. doi: 10.7554/eLife.40655.

Abstract

Variation in DNA methylation enables plants to inherit traits independently of changes to DNA sequence. Here, we have screened an population of epigenetic recombinant inbred lines (epiRILs) for resistance against . These lines share the same genetic background, but show variation in heritable patterns of DNA methylation. We identified four epigenetic quantitative trait loci (epiQTLs) that provide quantitative resistance without reducing plant growth or resistance to other (a)biotic stresses. Phenotypic characterisation and RNA-sequencing analysis revealed that resistant epiRILs are primed to activate defence responses at the relatively early stages of infection. Collectively, our results show that hypomethylation at selected pericentromeric regions is sufficient to provide quantitative disease resistance, which is associated with genome-wide priming of defence-related genes. Based on comparisons of global gene expression and DNA methylation between the wild-type and resistant epiRILs, we discuss mechanisms by which the pericentromeric epiQTLs could regulate the defence-related transcriptome.

摘要

DNA 甲基化的变异使植物能够独立于 DNA 序列的变化来遗传性状。在这里,我们筛选了一组表观遗传重组自交系(epiRILs),以寻找对 的抗性。这些系具有相同的遗传背景,但表现出可遗传的 DNA 甲基化模式的变异。我们鉴定了四个表观遗传数量性状位点(epiQTLs),它们在不降低植物生长或对其他(非生物)胁迫的抗性的情况下提供定量抗性。表型特征和 RNA 测序分析表明,抗性 epiRILs 在感染的相对早期阶段就被激活防御反应。总的来说,我们的结果表明,选定的着丝粒周围区域的低甲基化足以提供定量的疾病抗性,这与与防御相关基因的全基因组启动有关。基于对野生型和抗性 epiRILs 之间的全基因表达和 DNA 甲基化的比较,我们讨论了着丝粒 epiQTL 如何调节与防御相关的转录组的机制。

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