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首页> 外文期刊>Eukaryotic cell >Pheromone-Induced G2 Arrest in the Phytopathogenic Fungus Ustilago maydis
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Pheromone-Induced G2 Arrest in the Phytopathogenic Fungus Ustilago maydis

机译:信息素诱导的植物致病真菌Ustilago maydis中的G2逮捕。

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In the corn smut fungus Ustilago maydis, pathogenic development is initiated when two compatible haploid cells fuse and form the infectious dikaryon. Mating is dependent on pheromone recognition by compatible cells. In this report, we set out to evaluate the relationship between the cell cycle and the pheromone response in U. maydis. To achieve this, we designed a haploid pheromone-responsive strain that is able to faithfully reproduce the native mating response in nutrient-rich medium. Addition of synthetic pheromone to the responsive strain induces the formation of mating structures, and this response is abolished by mutations in genes encoding components of the pheromone signal transduction cascade. After recognition of pheromone, U. maydis cells arrest the cell cycle in a postreplicative stage. Visualization of the nucleus and microtubule organization indicates that the arrest takes place at the G2 phase. Chemical-induced cell cycle arrest and release in the presence of pheromone further support this conclusion.
机译:在玉米黑穗病菌中,当两个相容的单倍体细胞融合并形成传染性双核细胞时,就开始了病原体的发展。交配取决于相容性细胞对信息素的识别。在本报告中,我们着手评估 U中细胞周期与信息素反应之间的关系。 maydis 。为了实现这一目标,我们设计了一种单倍体信息素应答菌株,该菌株能够在营养丰富的培养基中忠实地再现天然的交配应答。将合成信息素添加到响应菌株中诱导形成交配结构,并且该响应被编码信息素信号转导级联成分的基因突变所消除。识别信息素后, U。 maydis 细胞会在复制后的阶段阻止细胞周期。核和微管组织的可视化表明逮捕发生在G 2 阶段。在信息素存在下化学诱导的细胞周期阻滞和释放进一步支持了这一结论。

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