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Ectopic expression of MgSM1, a Cerato-platanin family protein from Magnaporthe grisea, confers broad-spectrum disease resistance in Arabidopsis

机译:Mgsm1的异位表达,Magnaporthe Grisea的Cerato-platanin家族蛋白质,拟拟拟拟拟症状抗病症

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摘要

Proteins belonging to the newly identified Cerato-platanin (CP) family have been shown to have elicitor activity in inducing disease resistance responses in various plants. In this study, we characterized a gene, MgSM1, from Magnaporthe grisea, encoding a putative small protein belonging to the CP family. MgSM1 was constitutively expressed not only in different fungal growth stages but also during its infection process in rice plants. Agrobacterium-mediated transient expression of MgSM1 in Arabidopsis resulted in hypersensitive response in the infiltrated local leaves and enhanced disease resistance against Botrytis cinerea and Pseudomonas syringae pv. tomato (Pst) DC3000 in upper leaves of plants, accompanyed by up-regulated expression of defense genes (PR-1, PR-5 and PDF1.2). Transgenic Arabidopsis plants expressing MgSM1 under control of a dexamethasone (DEX)-inducible promoter were generated. Expression of MgSM1 in transgenic plants was induced by exogenous application of DEX. MgSM1-expressing plants showed normal growth with application of <10 microm DEX. After DEX induction, the MgSM1-expressing plants showed enhanced disease resistance against B. cinerea, Alternaria brassicicola and Psto DC3000 as well as up-regulated expression of some of defense genes. Moreover, accumulation of reactive oxygen species was observed in MgSM1-expressing plants. These results collectively suggest that ectopic expression of MgSM1 in transgenic plants confers broad-spectrum resistance against different types of pathogens. Our study also provides a novel strategy to generate environment-friendly crops with enhanced broad-spectrum resistance through ectopic expression of microbe-derived disease resistance-inducing proteins.
机译:已经显示属于新鉴定的Cerato-platain(CP)家族的蛋白质在各种植物中诱导疾病抵抗反应中具有引发活性。在这项研究中,我们以Magnaporthe Grisea为特征,Mgsm1,编码属于CP家族的推定的小蛋白质。 MGSM1不仅在不同的真菌生长阶段而表达,而且在水稻植物的感染过程中表达。农杆菌介导的拟南芥MGSM1的瞬时表达导致浸润的局部叶片中的过敏反应,并针对Botrytis Cinerea和Pseudomonas inringae PV的增强疾病抗性。番茄(PST)DC3000在植物上部叶片中,伴随着上调的防御基因表达(PR-1,PR-5和PDF1.2)。产生了在对甲基塞内酮(DEX) - 可促进剂的控制下表达MGSM1的转基因拟南芥植物。通过外源应用德克斯施用MGSM1在转基因植物中的表达。 MGSM1表达植物显示出正常生长<10微米DEX。在DEX诱导之后,MGSM1的表达植物表现出增强的疾病抗性,对抗B. cinerea,alertaria Brassicicola和Psto DC3000以及一些防御基因的上调表达。此外,在MGSM1表达植物中观察到反应性氧物质的积累。这些结果共同提出了MGSM1在转基因植物中的异位表达赋予不同类型病原体的广谱抗性。我们的研究还提供了一种新的策略,可以通过异位表达诱导诱导蛋白质的异位表达产生环保型作物。

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  • 来源
    《Plant Biotechnology Journal》 |2009年第8期|共15页
  • 作者单位

    State Key Laboratory for Rice Biology Institute of Biotechnology Zhejiang China.;

    State Key Laboratory for Rice Biology Institute of Biotechnology Zhejiang China.;

    State Key Laboratory for Rice Biology Institute of Biotechnology Zhejiang China.;

    State Key Laboratory for Rice Biology Institute of Biotechnology Zhejiang China.;

    State Key Laboratory for Rice Biology Institute of Biotechnology Zhejiang China.;

    State Key Laboratory for Rice Biology Institute of Biotechnology Zhejiang China.;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

    disease resistance;

    机译:抗病性;

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