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首页> 外文期刊>Plant Molecular Biology Reporter >Expression and Functional Analysis of a Pathogenesis-Related Protein 1 Gene, TcLr19PR1, Involved in Wheat Resistance Against Leaf Rust Fungus
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Expression and Functional Analysis of a Pathogenesis-Related Protein 1 Gene, TcLr19PR1, Involved in Wheat Resistance Against Leaf Rust Fungus

机译:发病相关蛋白1基因TcLr19PR1在小麦抗叶锈病中的表达及功能分析

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摘要

Pathogenesis-related (PR) proteins encoded by plant defense genes play key roles in plant disease-resistance responses, specialized in systemic-acquired resistance. However, their roles in the response of wheat to fungal infection are still not well known. Our earlier studies have reported that a full-length TcLr19PR1 gene (818 bp) was isolated from wheat infected by leaf rust (Puccinia triticina). Here, we showed that TcLr19PR1 was induced earlier and its expression level was higher in the incompatible interaction between seedling stage of wheat and P. triticina than in compatible interactions. TcLr19PR1 was strongly induced after P. triticina inoculation and ABA and SA treatments, in which the expression level of TcLr19PR1 significantly increased and reached the maximum at 12 and 72 h, respectively. Furthermore, the transgenic T1-stable TcLr19PR1 lines generated in the susceptible wheat cultivar Zhengzhou 5389 background exhibited certain extent disease resistance against P. triticina infection by preventing disease development. In addition, Western blotting was conducted to confirm that TcLr19PR1 protein was induced by P. triticina infection in positive transgenic plants at the protein expression level. These findings suggest that TcLr19PR1 gene plays an important role in wheat development and resistance to leaf rust pathogen attack.
机译:植物防御基因编码的病程相关(PR)蛋白在植物抗病性反应中起关键作用,专门针对系统获得性抗性。然而,它们在小麦对真菌感染的反应中的作用仍不为人所知。我们较早的研究表明,从被铁锈感染的小麦中分离出全长TcLr19PR1基因(818bp)。在这里,我们表明,TcLr19PR1的诱导较早,并且在小麦和小麦的苗期之间的不相容相互作用中其表达水平高于相容性相互作用。 TcLr19PR1在小麦黄萎病菌接种以及ABA和SA处理后被强烈诱导,其中TcLr19PR1的表达水平显着增加并分别在12h和72h达到最大值。此外,在易感小麦品种郑州5389背景中产生的转基因T1稳定TcLr19PR1品系通过预防疾病的发展,在一定程度上显示出对小麦的感染。另外,进行蛋白质印迹法以证实TcLr19PR1蛋白在蛋白质表达水平上被转基因植物中的小麦疫霉感染所诱导。这些发现表明,TcLr19PR1基因在小麦发育和对叶锈病病原体侵袭的抵抗中起重要作用。

著录项

  • 来源
    《Plant Molecular Biology Reporter》 |2015年第4期|797-805|共9页
  • 作者单位

    Center of Plant Disease and Plant Pests of Hebei Province College of Plant Protection Agricultural University of Hebei">(1);

    Center of Plant Disease and Plant Pests of Hebei Province College of Plant Protection Agricultural University of Hebei">(1);

    Center of Plant Disease and Plant Pests of Hebei Province College of Plant Protection Agricultural University of Hebei">(1);

    Center of Plant Disease and Plant Pests of Hebei Province College of Plant Protection Agricultural University of Hebei">(1);

    Center of Plant Disease and Plant Pests of Hebei Province College of Plant Protection Agricultural University of Hebei">(1);

    Center of Plant Disease and Plant Pests of Hebei Province College of Plant Protection Agricultural University of Hebei">(1);

    Center of Plant Disease and Plant Pests of Hebei Province College of Plant Protection Agricultural University of Hebei">(1);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    TcLr19PR1; Real-time quantitative RT-PCR; Transcripts expression profiles; Gene gun transformation;

    机译:TcLr19PR1;实时定量RT-PCR;转录本表达谱;基因枪改造;

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