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一种用于确定外囊菌感染分子基础的、以模式植物拟南芥为对象的新型病理系统。

A Novel Pathosystem With the Model Plant Arabidopsis thaliana for Defining the Molecular Basis of Taphrina Infections.

作者信息

Auzane Agate, Christita Margaretta, Wang Kai, Sipilä Timo, Rajaraman Sitaram, Eswaran Gugan, Kemppinen Jasmin, De La Fuente Alejandro, Bouwmeester Klaas, Auvinen Petri, Paulin Lars, Salojärvi Jarkko, Sierla Maija, Broché Mikael, Overmyer Kirk

机构信息

Organismal and Evolutionary Biology Research Program, Faculty of Biological and Environmental Sciences, and Viikki Plant Science Centre, University of Helsinki, Helsinki, Finland.

Biosystematics Group, Wageningen University & Research, Wageningen, the Netherlands.

出版信息

Environ Microbiol Rep. 2025 Jun;17(3):e70118. doi: 10.1111/1758-2229.70118.

Abstract

Plant-associated yeasts modulate host immunity to promote or prevent disease. Mechanisms of yeast perception by the plant innate immune system remain unknown, with progress hindered by lack of a model system with the model plant Arabidopsis thaliana (Arabidopsis). A yeast strain of Taphrina tormentillae, named M11, was previously isolated from wild Arabidopsis. Taphrina have been found on many non-host plants, and their complex ecology remains understudied. Here, the interaction of M11 with Arabidopsis was characterised. Infection of Arabidopsis with the birch pathogen T. betulina, used as a non-host control, triggered typical defence activation features but did not multiply, demonstrating Arabidopsis had immunity against a non-adapted yeast. M11 triggered attenuated defence activation features, grew in planta, and caused subtle but clear leaf deformation symptoms, demonstrating it is pathogenic. M11 was widely distributed in environmental sequencing data and found on multiple non-host plants, suggesting Taphrina play previously unrecognised ecological roles on multiple plant species. M11 genome features involved in host interaction were analysed, and potential immune stimulatory molecules in chitin-free cell walls were identified. A pilot screen demonstrated the utility of reverse genetics with Arabidopsis and identified that the BAK1 co-receptor is involved in the perception of M11 Taphrina cell walls.

摘要

与植物相关的酵母可调节宿主免疫力,以促进或预防疾病。植物先天免疫系统对酵母的识别机制尚不清楚,由于缺乏以模式植物拟南芥为模型的系统,相关研究进展受阻。一种名为M11的畸形外囊菌酵母菌株先前是从野生拟南芥中分离出来的。外囊菌已在许多非宿主植物上被发现,但其复杂的生态学仍未得到充分研究。在此,对M11与拟南芥的相互作用进行了表征。用桦树病原体桦外囊菌感染拟南芥作为非宿主对照,引发了典型的防御激活特征,但未繁殖,这表明拟南芥对非适应性酵母具有免疫力。M11引发了减弱的防御激活特征,在植物体内生长,并导致轻微但明显的叶片变形症状,表明它具有致病性。M11在环境测序数据中广泛分布,并在多种非宿主植物上被发现,这表明外囊菌在多种植物物种上发挥着以前未被认识的生态作用。分析了M11基因组中与宿主相互作用相关的特征,并鉴定了无几丁质细胞壁中的潜在免疫刺激分子。初步筛选证明了拟南芥反向遗传学的实用性,并确定BAK1共受体参与了对M11外囊菌细胞壁的识别。

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