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鉴定fuz7,一种玉米黑粉菌MEK/MAPKK同源物,它是真菌生命周期中a位点依赖性和非依赖性步骤所必需的。

Identification of fuz7, a Ustilago maydis MEK/MAPKK homolog required for a-locus-dependent and -independent steps in the fungal life cycle.

作者信息

Banuett F, Herskowitz I

机构信息

Department of Biochemistry and Biophysics, School of Medicine, University of California San Francisco 94143-0448.

出版信息

Genes Dev. 1994 Jun 15;8(12):1367-78. doi: 10.1101/gad.8.12.1367.

Abstract

Ustilago maydis is a plant pathogenic Basidiomycete fungus that exhibits dimorphism--it has a haploid, yeast-like phase and a dikaryotic, filamentous phase that is pathogenic. Establishment and maintenance of these two forms are controlled by two mating type loci, a and b. The a locus is thought to govern fusion of haploid cells to form a dikaryon and is also required for filamentous growth of the dikaryon. It encodes two components of a pheromone response pathway: pheromones and receptors. We report the identification of the U. maydis fuz7 gene, which codes for a putative dual specificity serine/threonine tyrosine kinase of the MAP kinase kinase (MAPKK/MEK) family, by homology with other members of the family. Analysis of mutants deleted for fuz7 shows that it participates in different facets of the life cycle: It is necessary for a-locus-dependent processes, such as conjugation tube formation, filament formation, and maintenance of filamentous growth, and for a-locus-independent processes, such as tumor induction and teliospore germination. fuz7 is the first U. maydis gene distinct from the b locus required for fungal pathogenicity. We propose that fuz7 is involved in at least two pathways, one of which responds to the pheromones coded by the a locus and the other to putative signals from the plant.

摘要

玉蜀黍黑粉菌是一种植物病原担子菌纲真菌,具有二态性——它有一个单倍体、酵母样阶段和一个双核、丝状的致病阶段。这两种形态的建立和维持由两个交配型位点a和b控制。a位点被认为控制单倍体细胞融合形成双核体,也是双核体丝状生长所必需的。它编码信息素反应途径的两个组分:信息素和受体。我们通过与该家族其他成员的同源性,报告了对玉蜀黍黑粉菌fuz7基因的鉴定,该基因编码一种假定的丝裂原活化蛋白激酶激酶(MAPKK/MEK)家族的双特异性丝氨酸/苏氨酸酪氨酸激酶。对缺失fuz7的突变体的分析表明,它参与生命周期的不同方面:对于a位点依赖的过程,如接合管形成、丝状形成和丝状生长的维持,以及对于a位点独立的过程,如肿瘤诱导和冬孢子萌发,它都是必需的。fuz7是第一个不同于b位点的、真菌致病性所需的玉蜀黍黑粉菌基因。我们提出,fuz7至少参与两条途径,其中一条对a位点编码的信息素作出反应,另一条对来自植物的假定信号作出反应。

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