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A Ferroxidation/Permeation Iron Uptake System Is Required for Virulence in Ustilago maydis[W]

机译:马齿Us的毒力需要铁氧化/渗透铁吸收系统[W]

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摘要

In the smut fungus Ustilago maydis, a tightly regulated cAMP signaling cascade is necessary for pathogenic development. Transcriptome analysis using whole genome microarrays set up to identify putative target genes of the protein kinase A catalytic subunit Adr1 revealed nine genes with putative functions in two high-affinity iron uptake systems. These genes locate to three gene clusters on different chromosomes and include the previously identified complementing siderophore auxotroph genes sid1 and sid2 involved in siderophore biosynthesis. Transcription of all nine genes plus three additional genes associated with the gene clusters was also coregulated by iron through the Urbs1 transcription factor. Two components of a high-affinity iron uptake system were characterized in more detail: fer2, encoding a high-affinity iron permease; and fer1, encoding an iron multicopper oxidase. Fer2 localized to the plasma membrane and complemented an ftr1 mutant of Saccharomyces cerevisiae lacking a high-affinity iron permease. During pathogenic development, fer2 expression was confined to the phase of hyphal proliferation inside the plant. fer2 as well as fer1 deletion mutants were strongly affected in virulence. These data highlight the importance of the high-affinity iron uptake system via an iron permease and a multicopper oxidase for biotrophic development in the U. maydis/maize (Zea mays) pathosystem.
机译:在黑穗病菌Ustilago maydis中,严格调控的cAMP信号级联对于病原体发育是必要的。使用全基因组微阵列建立的转录组分析可确定蛋白激酶A的假定靶基因,催化亚基Adr1揭示了在两个高亲和力铁吸收系统中具有假定功能的9个基因。这些基因位于不同染色体上的三个基因簇上,包括先前鉴定的参与铁载体生物合成的互补铁载体营养缺陷型基因sid1和sid2。铁还通过Urbs1转录因子对所有九个基因以及与基因簇相关的三个其他基因的转录进行了共调节。高亲和力铁吸收系统的两个组成部分进行了更详细的表征:fer2,编码高亲和力的铁通透酶;和fer1,编码铁多铜氧化酶。 Fer2定位于质膜并补充了缺乏高亲和性铁通透酶的酿酒酵母的ftr1突变体。在病原体发育过程中,fer2的表达仅限于植物内部菌丝增殖的阶段。 fer2以及fer1缺失突变体的毒力受到很大影响。这些数据凸显了通过铁渗透酶和多铜氧化酶的高亲和力铁吸收系统对于玉米(玉米)病原菌生物营养发展的重要性。

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