Karlsruhe Institute of Technology, Institute for Applied Biosciences, Department of Genetics, D-76187 Karlsruhe, Germany.
Mol Microbiol. 2010 Jan;75(1):208-20. doi: 10.1111/j.1365-2958.2009.06984.x. Epub 2009 Nov 25.
Sexual development in fungi is controlled by mating type loci that prevent self-fertilization. In the phytopathogenic fungus Ustilago maydis, the b mating type locus encodes two homeodomain proteins, termed bE and bW. After cell fusion, a heterodimeric bE/bW complex is formed if the proteins are derived from different alleles. The bE/bW complex is required and sufficient to initiate pathogenic development and sexual reproduction; for the stages of pathogenic development succeeding plant penetration, however, its role was unclear. To analyse b function during in planta development, we generated a temperature-sensitive bE(ts) protein by exchange of a single amino acid. bE(ts) strains are stalled in pathogenic development at restrictive temperature in planta, and hyphae develop enlarged, bulbous cells at their tips that contain multiple nuclei, indicating a severe defect in the control and synchronization of cell cycle and cytokinesis. DNA array analysis of bE(ts) mutant strains in planta revealed a b-dependent regulation of genes encoding secreted proteins that were shown to influence fungal virulence. Our data demonstrate that in U. maydis the b heterodimer is not only essential to establish the heterodikaryon after mating of two compatible sporidia and to initiate fungal pathogenicity, but also to sustain in planta proliferation and ensure sexual reproduction.
真菌的性发育受交配型基因座控制,这些基因座防止自体受精。在植物病原菌玉米黑粉菌中,b 交配型基因座编码两种同源域蛋白,称为 bE 和 bW。细胞融合后,如果蛋白质来自不同的等位基因,则会形成异源二聚体 bE/bW 复合物。bE/bW 复合物是启动致病发育和有性生殖所必需且充分的;然而,对于继植物穿透之后的致病发育阶段,其作用尚不清楚。为了分析 b 在植物体内发育过程中的功能,我们通过交换单个氨基酸生成了一种温度敏感型 bE(ts) 蛋白。bE(ts) 菌株在限制温度下的植物体内发育过程中停滞不前,并且菌丝在其顶端发育出扩大的、球状细胞,其中包含多个核,表明细胞周期和胞质分裂的控制和同步存在严重缺陷。对植物体内 bE(ts) 突变株的 DNA 芯片分析显示,b 依赖性调控编码分泌蛋白的基因,这些蛋白被证明会影响真菌的毒力。我们的数据表明,在玉米黑粉菌中,b 异源二聚体不仅对于两个相容孢子交配后建立异核体以及启动真菌致病性是必需的,而且对于维持植物体内增殖和确保有性生殖也是必需的。