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Genome-Wide Analysis of Genes Induced by Fusarium graminearum Infection in Resistant and Susceptible Wheat Cultivars

机译:抗性和敏感性小麦品种禾本科镰刀菌感染诱导基因的全基因组分析

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摘要

Fusarium head blight (FHB) caused by Fusarium graminearum is one of the most serious diseases in wheat (Triticum aestivum) and barley (Hordeum vulgare). Dahongmil is an elite Korean wheat cultivar with relatively high resistance to FHB. To identify differentially expressed genes in the resistant cultivar Dahongmil and the susceptible cultivar Urimil after inoculation of F. graminearum, we used the Affymetrix GeneChip® Wheat Genome Array to identify 328 ESTs that were differentially expressed in inoculated seedling tissues of the two cultivars. From these, we selected 16 induced genes and found that they have defense functions, such as genes encoding pathogen resistance proteins, oxidative stress-related proteins, metabolism, and proteins involved in defense mechanisms. To verify the DNA microarray results, we tested seven of these genes by semiquantitative RT-PCR and confirmed that these defense- and stress-related genes were expressed at much higher levels in the resistant Dahongmil cultivar. We next developed a hypothetical functional gene network and identified 89 interaction pairs mediated by four of the differentially expressed genes in the hypothetical network. We further refined the network by identifying nine genes showing significant up- or down-regulation after FHB challenge in the resistant cultivar and two genes having multiple interactions with queried proteins. We hope that the set of induced genes identified in this study can be used for development of new wheat and barley cultivars with improved resistance to FHB.
机译:禾谷镰刀菌引起的镰刀菌枯萎病是小麦(Triticum aestivum)和大麦(Hordeum vulgare)中最严重的疾病之一。 Dahongmil是韩国小麦优良品种,对FHB的抗性较高。为了在接种禾谷镰孢后鉴定抗性品种Dahongmil和易感品种Urimil中的差异表达基因,我们使用AffymetrixGeneChip®小麦基因组阵列来鉴定328个EST,它们在两个品种的接种苗组织中差异表达。从这些中,我们选择了16个诱导基因,发现它们具有防御功能,例如编码病原体抗性蛋白,氧化应激相关蛋白,新陈代谢和参与防御机制的蛋白的基因。为了验证DNA芯片结果,我们通过半定量RT-PCR测试了其中的七个基因,并证实了这些与防御和胁迫相关的基因在抗性大红hong品种中的表达水平更高。接下来,我们开发了一个假设的功能基因网络,并确定了由假设网络中的四个差异表达基因介导的89个相互作用对。我们通过鉴定在抗性品种中FHB攻击后显示显着上调或下调的9个基因和两个与查询蛋白具有多重相互作用的基因,进一步完善了网络。我们希望本研究中鉴定出的一组诱导基因可用于开发对FHB具有增强抗性的新小麦和大麦品种。

著录项

  • 来源
    《Journal of Plant Biology》 |2012年第1期|p.64-72|共9页
  • 作者单位

    Department of Plant Science, Plant Genomics and Breeding Institute, and Research Institute for Agriculture and Life Sciences, Seoul National University, Seoul, 151-921, South Korea;

    Department of Applied Biology and Chemistry, Seoul National University, Seoul, 151-921, South Korea;

    Department of Plant Molecular Systems Biotechnology and Crop Biotech Institute, Kyung Hee University, Yongin, 446-701, South Korea;

    Department of Applied Biology and Chemistry, Seoul National University, Seoul, 151-921, South Korea;

    Department of Rice and Winter Cereal Crop, National Institute of Crop Science, Rural Development Administration, Iksan, 570-080, South Korea;

    Department of Plant Science, Plant Genomics and Breeding Institute, and Research Institute for Agriculture and Life Sciences, Seoul National University, Seoul, 151-921, South Korea;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    Fusarium graminearum; Fusarium head blight; Gibberella zeae; Microarray analysis; Resistant genes; Wheat;

    机译:禾谷镰刀菌;枯萎病;玉米赤霉病;芯片分析;抗性基因;小麦;

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