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首页> 外文期刊>Frontiers in Plant Science >Genome-Wide Study of the Tomato SlMLO Gene Family and Its Functional Characterization in Response to the Powdery Mildew Fungus Oidium neolycopersici
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Genome-Wide Study of the Tomato SlMLO Gene Family and Its Functional Characterization in Response to the Powdery Mildew Fungus Oidium neolycopersici

机译:番茄 SlMLO 基因家族的全基因组研究及其功能特性对白粉病真菌 Oidium neolycopersici 的响应

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The MLO ( Mildew Locus O ) gene family encodes plant-specific proteins containing seven transmembrane domains and likely acting in signal transduction in a calcium and calmodulin dependent manner. Some members of the MLO family are susceptibility factors toward fungi causing the powdery mildew disease. In tomato, for example, the loss-of-function of the MLO gene SlMLO1 leads to a particular form of powdery mildew resistance, called ol-2 , which arrests almost completely fungal penetration. This type of penetration resistance is characterized by the apposition of papillae at the sites of plant-pathogen interaction. Other MLO homologs in Arabidopsis regulate root response to mechanical stimuli ( AtMLO4 and AtMLO11 ) and pollen tube reception by the female gametophyte ( AtMLO7 ). However, the role of most MLO genes remains unknown. In this work, we provide a genome-wide study of the tomato SlMLO gene family. Besides SlMLO1 , other 15 SlMLO homologs were identified and characterized with respect to their structure, genomic organization, phylogenetic relationship, and expression profile. In addition, by analysis of transgenic plants, we demonstrated that simultaneous silencing of SlMLO1 and two of its closely related homologs, SlMLO5 and SlMLO8 , confer higher level of resistance than the one associated with the ol-2 mutation. The outcome of this study provides evidence for functional redundancy among tomato homolog genes involved in powdery mildew susceptibility. Moreover, we developed a series of transgenic lines silenced for individual SlMLO homologs, which lay the foundation for further investigations aimed at assigning new biological functions to the MLO gene family.
机译:MLO(霉菌基因座O)基因家族编码包含七个跨膜结构域的植物特异性蛋白质,并可能以钙和钙调蛋白依赖性方式参与信号转导。 MLO家族的一些成员是引起白粉病的真菌的易感性因素。例如,在番茄中,MLO基因SlMLO1的功能丧失导致一种特殊形式的白粉病抗性,称为ol-2,它几乎完全阻止了真菌的渗透。这种类型的抗穿透性的特征是在植物-病原体相互作用的部位并置乳头。拟南芥中的其他MLO同源物调节雌性配子体(AtMLO7)对机械刺激的根反应(AtMLO4和AtMLO11)和花粉管的接收。但是,大多数MLO基因的作用仍然未知。在这项工作中,我们提供了番茄SlMLO基因家族的全基因组研究。除SlMLO1外,还鉴定和表征了其他15个SlMLO同源物的结构,基因组组织,系统发生关系和表达谱。另外,通过对转基因植物的分析,我们证明了同时沉默SlMLO1及其两个密切相关的同源物SlMLO5和SlMLO8,使其沉默水平高于与ol-2突变相关的水平。这项研究的结果为涉及白粉病敏感性的番茄同源基因之间的功能冗余提供了证据。此外,我们开发了一系列针对单个SlMLO同源物沉默的转基因品系,为进一步研究奠定了基础,这些研究旨在为MLO基因家族赋予新的生物学功能。

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