首页> 外文期刊>Fortschritte der Physik >Inoculation of Malus genotypes with a set of Erwinia amylovora strains indicates a gene-for-gene relationship between the effector gene eop1 and both Malus floribunda 821 and Malus 'Evereste'
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Inoculation of Malus genotypes with a set of Erwinia amylovora strains indicates a gene-for-gene relationship between the effector gene eop1 and both Malus floribunda 821 and Malus 'Evereste'

机译:用一组Erwinia氨基莫洛拉菌株接种Malus基因型表明效应基因EOP1和Malus floribunda 821和Malus“evereste”之间的基因基因关系。

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摘要

The Gram-negative bacterium Erwinia amylovora, causal agent of fire blight disease in pome fruit trees, encodes a type three secretion system (T3SS) that translocates effector proteins into plant cells that collectively function to suppress host defences and enable pathogenesis. Until now, there has only been limited knowledge about the interaction of effector proteins and host resistance presented in several wild Malus species. This study tested disease responses in several Malus wild species with a set of effector deletion mutant strains and several highly virulent E.amylovora strains, which are assumed to influence the host resistance response of fire blight-resistant Malus species. The findings confirm earlier studies that deletion of the T3SS abolished virulence of the pathogen. Furthermore, a new gene-for-gene relationship was established between the effector protein Eop1 and the fire blight resistant ornamental apple cultivar Evereste and the wild species Malus floribunda 821. The results presented here provide new insights into the host-pathogen interactions between Malus sp. and E.amylovora.
机译:革兰氏阴性细菌Erwinia Amylovora,墨水果树中的火焰枯萎病的因果剂编码了三种分泌系统(T3S),将效应蛋白转化为植物细胞,其共同抑制宿主防御和使能发病机制能够进行致病。到目前为止,关于效应蛋白的相互作用以及在几种野生麦芽物种中呈现的效应蛋白的相互作用,只有有限的知识。该研究通过一组效应缺失突变体菌株和几种高毒力的抗诱导突变体菌株和几种高毒力的抗腐蚀性菌株测试了疾病反应,其假设影响火焰抗性靶毒性物种的宿主抗性响应。调查结果证实了早期的研究,即删除T3SS废除病原体的毒力。此外,在效应蛋白EOP1和火焰抗性观赏苹果品种珠霉灰和野生物种Malus Floribunda 821之间建立了新的基因型相关关系。此处提出的结果为Malus SP之间的宿主病原体相互作用提供了新的见解。和e.amylovora。

著录项

  • 来源
    《Fortschritte der Physik》 |2018年第4期|共10页
  • 作者单位

    Julius Kuhn Inst JKI Fed Res Ctr Cultivated Plants Inst Breeding Res Fruit Crops Pillnitzer Pl 3a D-01326 Dresden Germany;

    Julius Kuhn Inst JKI Fed Res Ctr Cultivated Plants Inst Resistance Res &

    Stress Tolerance Erwin Baur Str 27 D-06484 Quedlinburg Germany;

    Michigan State Univ Dept Plant Soil &

    Microbial Sci 578 Wilson Rd E Lansing MI 48824 USA;

    288 ER Madigan Lab Dept Crop Sci 1201 W Gregory Dr Urbana IL 61801 USA;

    ARS Hort Crops Res Unit USDA 3420 NW Orchard Ave Corvallis OR 97330 USA;

    Julius Kuhn Inst JKI Fed Res Ctr Cultivated Plants Data Proc Dept Stahnsdorfer Damm 81 D-14532 Kleinmachnow Germany;

    Julius Kuhn Inst JKI Fed Res Ctr Cultivated Plants Inst Breeding Res Fruit Crops Pillnitzer Pl 3a D-01326 Dresden Germany;

    Julius Kuhn Inst JKI Fed Res Ctr Cultivated Plants Inst Breeding Res Fruit Crops Pillnitzer Pl 3a D-01326 Dresden Germany;

    Julius Kuhn Inst JKI Fed Res Ctr Cultivated Plants Inst Breeding Res Fruit Crops Pillnitzer Pl 3a D-01326 Dresden Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
  • 关键词

    effector; eop1; eop3; Erwinia amylovora; gene-for-gene relationship; Malus;

    机译:效应器;EOP1;EOP3;ERWINIA AMYLOVORA;基因 - 基因关系;马鲁斯;

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