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有益根际真菌球毛壳菌促进拟南芥地上生长,并激活钙依赖性反应,从而限制根中芸薹生链格孢诱导的病害发展。

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.

机构信息

1 Matthias-Schleiden-Institute for Bioinformatics, Genetics and Molecular Botany, Department of Plant Physiology, Friedrich-Schiller-University, Dornburger Str. 159, 07743 Jena, Germany.

2 Department of Bioorganic Chemistry, Max Planck Institute for Chemical Ecology.

出版信息

Mol Plant Microbe Interact. 2019 Mar;32(3):351-363. doi: 10.1094/MPMI-05-18-0115-R. Epub 2019 Feb 4.

Abstract

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 Caelevation in the roots. The Ca response does not require the well-characterized (co)receptors BAK1, CERK1, and FLS2 for pathogen-associated molecular patterns, and the Ca channels GLR-2.4, GLR-2.5, and GLR-3.3 or the vacuolar TWO PORE CHANNEL1, which might be involved in cytoplasmic Ca elevation. We isolated an ethyl-methane-sulfonate-induced Arabidopsis mutant that is impaired in this Ca 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 Ca-dependent signaling pathway activated by M. hyalina to suppress immune responses in Arabidopsis roots.

摘要

内生真菌米赫毛霉(Mortierella hyalina)定殖于拟南芥(Arabidopsis thaliana)的根部,并刺激地上部分的生长和生物量产生,但不刺激根部。真菌的一种分泌物可在根部诱导快速和瞬时的细胞质钙离子升高。钙离子反应不需要已知的(共)受体 BAK1、CERK1 和 FLS2 来识别病原体相关分子模式,也不需要钙离子通道 GLR-2.4、GLR-2.5 和 GLR-3.3 或液泡双孔通道 TWO PORE CHANNEL1,这些可能参与细胞质钙离子升高。我们分离到一个由乙基甲磺酸诱导的拟南芥突变体,该突变体在这种钙离子反应中受损。突变体的根部在黄曲霉菌(Alternaria brassicae)感染后,米赫毛霉介导的免疫反应抑制受损,即茉莉酸积累、活性氧生成以及茉莉酸相关防御基因的激活。此外,与野生型根相比,突变体的根被米赫毛霉更多地定殖。我们提出,突变基因产物参与了米赫毛霉激活的依赖于钙离子的信号通路,以抑制拟南芥根部的免疫反应。

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