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首页> 外文期刊>Fungal biology and biotechnology. >A flavoprotein supports cell wall properties in the necrotrophic fungus Alternaria brassicicola
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A flavoprotein supports cell wall properties in the necrotrophic fungus Alternaria brassicicola

机译:黄素蛋白支持坏死性真菌Alternaria braciicicola的细胞壁特性

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BackgroundFlavin-dependent monooxygenases are involved in key biological processes as they catalyze a wide variety of chemo-, regio- and enantioselective oxygenation reactions. Flavoprotein monooxygenases are frequently encountered in micro-organisms, most of which require further functional and biocatalytic assessment. Here we investigated the function of the AbMak1 gene, which encodes a group A flavin monooxygenase in the plant pathogenic fungus Alternaria brassicicola , by generating a deficient mutant and examining its phenotype. ResultsFunctional analysis indicates that the AbMak1 protein is involved in cell wall biogenesis and influences the melanization process. We documented a significant decrease in melanin content in the Δ abmak1 strain compared to the wild-type and complemented strains. We investigated the cell wall morphology and physical properties in the wild-type and transformants using electron and atomic force microscopy. These approaches confirmed the aberrant morphology of the conidial wall structure in the Δ abmak1 strain which had an impact on hydrophilic adhesion and conidial surface stiffness. However, there was no significant impairment in growth, conidia formation, pathogenicity or susceptibility to various environmental stresses in the Δ abmak1 strain. ConclusionThis study sheds new light on the function of a fungal flavin-dependent monooxygenase, which plays an important role in melanization.
机译:背景黄素依赖性单加氧酶参与了关键的生物过程,因为它们催化多种化学,区域和对映选择性的氧化反应。黄酮蛋白单加氧酶经常在微生物中遇到,其中大多数需要进一步的功能和生物催化评估。在这里,我们通过产生缺陷突变体并检查其表型,研究了AbMak1基因的功能,该基因编码植物病原性真菌Alternaria braciicicola中的A组黄素单加氧酶。结果功能分析表明AbMak1蛋白参与细胞壁的生物发生并影响黑色素化过程。我们记录了与野生型和互补型菌株相比,Δabmak1菌株中黑色素含量显着降低。我们使用电子和原子力显微镜研究了野生型和转化株中的细胞壁形态和物理性质。这些方法证实了Δabmak1菌株中分生孢子壁结构的异常形态,这对亲水性粘附和分生孢子表面硬度有影响。但是,Δabmak1菌株的生长,分生孢子形成,致病性或对各种环境胁迫的敏感性均无明显损害。结论本研究为真菌黄素依赖性单加氧酶的功能提供了新的思路,该酶在黑色素化中起重要作用。

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