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首页> 外文期刊>Molecular Plant-Microbe Interactions >The Beneficial Root-Colonizing Fungus Mortierella hyalina Promotes the Aerial Growth of Arabidopsis and Activates Calcium-Dependent Responses That Restrict Alternaria brassicae-Induced Disease Development in Roots
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The Beneficial Root-Colonizing Fungus Mortierella hyalina Promotes the Aerial Growth of Arabidopsis and Activates Calcium-Dependent Responses That Restrict Alternaria brassicae-Induced Disease Development in Roots

机译:有益的根部殖民菌鹿耳菌冠状动脉促进了拟南芥的空中生长,并激活钙依赖性反应,限制了根系中的alceraria brassicaf诱导的疾病发育

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摘要

The endophytic fungus Mortierella hyalina colonizes the roots of Arabidopsis thaliana and stimulates growth and biomass production of the aerial parts but not of roots. An exudate fraction from the fungus induces rapid and transient cytoplasmic Ca2+ elevation in the roots. The Ca2+ response does not require the well-characterized (co)receptors BAK1, CERK1, and FLS2 for pathogen-associated molecular patterns, and the Ca2+ channels GLR-2.4, GLR-2.5, and GLR-3.3 or the vacuolar TWO PORE CHANNEL1, which might be involved in cytoplasmic Ca2+ elevation. We isolated an ethyl-methane-sulfonate-induced Arabidopsis mutant that is impaired in this Ca2+ response. The roots of the mutant are impaired in M. hyalina-mediated suppression of immune responses after Alternaria brassicae infection, i.e., jasmonate accumulation, generation of reactive oxygen species, as well as the activation of jasmonate-related defense genes. Furthermore, they are more colonized by M. hyalina than wild-type roots. We propose that the mutant gene product is involved in a Ca2+-dependent signaling pathway activated by M. hyalina to suppress immune responses in Arabidopsis roots.
机译:内皮菌真菌凯丽娜叙利亚植物殖民扎根拟南芥的根源,并刺激了空中零件的生长和生物量产量,但不是根。来自真菌的渗出物分数诱导根部的快速和瞬时细胞质Ca2 +升高。 CA2 +响应不需要良好表征的(CO)受体Bak1,Cerk1和FLS2用于病原体相关的分子模式,以及Ca2 +通道GLR-2.4,GLR-2.5和GLR-3.3或真空两孔通道1,这可能参与细胞质Ca2 +升高。我们分离出乙基甲烷 - 磺酸盐诱导的拟南芥突变体,其在该CA2 +反应中受损。突清体的根源在露华介导的免疫应答抑制后突出,即八月酸盐积累,反应性氧物种的产生以及与之相关的防御基因的激活。此外,它们由M.缘明显多于野生型根部殖民。我们提出突变基因产物参与由M.凯丽娜激活的Ca2 +依赖性信号通路,以抑制拟南芥中的免疫应答。

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    Friedrich Schiller Univ Dept Plant Physiol Matthias Schleiden Inst Bioinformat Genet &

    Mol B Dornburger Str 159 D-07743 Jena Germany;

    Friedrich Schiller Univ Dept Plant Physiol Matthias Schleiden Inst Bioinformat Genet &

    Mol B Dornburger Str 159 D-07743 Jena Germany;

    Friedrich Schiller Univ Dept Plant Physiol Matthias Schleiden Inst Bioinformat Genet &

    Mol B Dornburger Str 159 D-07743 Jena Germany;

    Max Planck Inst Chem Ecol Dept Bioorgan Chem Hans Knoll Str 8 D-07745 Jena Germany;

    Friedrich Schiller Univ Dept Plant Physiol Matthias Schleiden Inst Bioinformat Genet &

    Mol B Dornburger Str 159 D-07743 Jena Germany;

    Max Planck Inst Chem Ecol Dept Bioorgan Chem Hans Knoll Str 8 D-07745 Jena Germany;

    Friedrich Schiller Univ Dept Plant Physiol Matthias Schleiden Inst Bioinformat Genet &

    Mol B Dornburger Str 159 D-07743 Jena Germany;

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  • 正文语种 eng
  • 中图分类 植物学;
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