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首页> 外文期刊>Molecular Microbiology >The hgl1 gene is required for dimorphism and teliospore formation in the fungal pathogen Ustilago maydis.
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The hgl1 gene is required for dimorphism and teliospore formation in the fungal pathogen Ustilago maydis.

机译:hgl1基因是真菌病原菌乌头菌(Ustilago maydis)中的双态性和端孢子形成所必需的。

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摘要

The fungal pathogen Ustilago maydis causes a dramatic disease in maize involving the induction of tumours and the formation of masses of black teliospores. In this fungus, mating between haploid, budding cells results in the formation of the infectious, filamentous cell type that invades host tissue. Mating and filamentous growth are governed by the mating-type loci and by cAMP signalling, perhaps in response to signals from maize. To dissect the involvement of cAMP signalling further, the constitutive filamentous phenotype of a mutant with a defect in the catalytic subunit of protein kinase A was used to isolate suppressor mutations that restore budding growth. One such mutation identified the hgl1 gene, which is shown to be required for both the switch between budding and filamentous growth and teliospore formation during infection. In addition, the hgl1 gene product may be a target of phosphorylation by protein kinase A, and transcript levels for the gene are elevated during mating. Thus, the hgl1 gene provides a connection between mating, cAMP signalling and two important aspects of virulence: filamentous growth and the formation of teliospores.
机译:真菌病原体乌斯季亚哥可能会在玉米中引起严重的疾病,涉及诱导肿瘤和形成黑色毛孔孢子。在这种真菌中,在单倍体,出芽的细胞之间交配导致侵入宿主组织的感染性丝状细胞类型的形成。交配和丝状生长受交配型基因座和cAMP信号支配,也许响应于玉米信号。为了进一步剖析cAMP信号传导的参与,蛋白激酶A催化亚基缺陷的突变体的组成型丝状表型用于分离恢复萌芽生长的抑制突变。一个这样的突变鉴定出hgl1基因,该基因被证明是在感染过程中出芽和丝状生长之间的转换以及芽孢形成所必需的。此外,hgl1基因产物可能是蛋白激酶A磷酸化的目标,并且该基因的转录物水平在交配过程中升高。因此,hgl1基因提供了交配,cAMP信号传导和毒力的两个重要方面之间的联系:丝状生长和芽孢的形成。

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