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首页> 外文期刊>Molecular Microbiology >Snf2 controls pulcherriminic acid biosynthesis and antifungal activity of the biocontrol yeast Metschnikowia pulcherrima Metschnikowia pulcherrima
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Snf2 controls pulcherriminic acid biosynthesis and antifungal activity of the biocontrol yeast Metschnikowia pulcherrima Metschnikowia pulcherrima

机译:SNF2对照控制润滑脂酸生物合成和生物控制酵母Metschnikowia pulcherrima metschnikowia pulcherrima的生物合成和抗真菌活性

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摘要

Summary Metschnikowia pulcherrima synthesises the pigment pulcherrimin, from cyclodileucine (cyclo(Leu‐Leu)) as a precursor, and exhibits strong antifungal activity against notorious plant pathogenic fungi. This yeast therefore has great potential for biocontrol applications against fungal diseases; particularly in the phyllosphere where this species is frequently found. To elucidate the molecular basis of the antifungal activity of M. pulcherrima , we compared a wild‐type strain with a spontaneously occurring, pigmentless, weakly antagonistic mutant derivative. Whole genome sequencing of the wild‐type and mutant strains identified a point mutation that creates a premature stop codon in the transcriptional regulator gene SNF2 in the mutant. Complementation of the mutant strain with the wild‐type SNF2 gene restored pigmentation and recovered the strong antifungal activity. Mass spectrometry (UPLC HR HESI‐MS) proved the presence of the pulcherrimin precursors cyclo(Leu‐Leu) and pulcherriminic acid and identified new precursor and degradation products of pulcherriminic acid and/or pulcherrimin. All of these compounds were identified in the wild‐type and complemented strain, but were undetectable in the pigmentless snf2 mutant strain. These results thus identify Snf2 as a regulator of antifungal activity and pulcherriminic acid biosynthesis in M. pulcherrima and provide a starting point for deciphering the molecular functions underlying the antagonistic activity of this yeast.
机译:发明内容Metschnikowia Pulcherrima合成颜料脉冲蛋白,来自环氨硅氨氨酸(Cyclo(Leu-Leu))作为前体,并且对臭名昭着的植物病原真菌表现出强烈的抗真菌活性。因此,这种酵母对真菌疾病的生物控制应用具有很大的潜力;特别是在经常发现该物种的文学圈中。为了阐明M. pulcherrima的抗真菌活性的分子基础,我们将野生型菌株与自发的,可染色的弱抗拮抗突变体衍生物进行比较。野生型和突变菌株的全基因组测序鉴定了一种点突变,其在突变体中在转录调节剂基因SNF2中产生过早止芯密码子。突变株与野生型SNF2基因的互补恢复着色,回收强抗真菌活性。质谱(UPLCHR HESI-MS)证明了润滑蛋白前体环氯(Leu-Leu)和润浆酸的存在,并确定了润滑脂酸和/或润滑蛋白的新前体和降解产物。在野生型和互补的菌株中鉴定所有这些化合物,但在含有无颜料的SNF2突变菌株中不可检测。因此,这些结果将SNF2鉴定为M. pulcherrima中抗真菌活性和润润浆酸生物合成的调节剂,并提供解密该酵母拮抗活性的分子函数的起点。

著录项

  • 来源
    《Molecular Microbiology》 |2019年第1期|共16页
  • 作者单位

    Department of Biology &

    BiochemistryUniversity of BathBath BA2 7AY UK;

    Agroscope Research Division Plant ProtectionMüller‐Thurgau‐Strasse 29 8820 W?denswil Switzerland;

    Institute of MicrobiologyEidgen?ssische Technische Hochschule (ETH) Zürich8093 Zürich Switzerland;

    Competence Division Method Development and AnalyticsMüller‐Thurgau‐Strasse 29 8820 W?denswil;

    Conway Institute University College DublinDublin 4 Ireland;

    Department of Biology &

    BiochemistryUniversity of BathBath BA2 7AY UK;

    Agroscope Research Division Plant ProtectionMüller‐Thurgau‐Strasse 29 8820 W?denswil Switzerland;

    Agroscope Research Division Plant ProtectionMüller‐Thurgau‐Strasse 29 8820 W?denswil Switzerland;

    Agroscope Research Division Plant ProtectionMüller‐Thurgau‐Strasse 29 8820 W?denswil Switzerland;

    Agroscope Research Division Plant ProtectionMüller‐Thurgau‐Strasse 29 8820 W?denswil Switzerland;

    Competence Division Method Development and AnalyticsMüller‐Thurgau‐Strasse 29 8820 W?denswil;

    Conway Institute University College DublinDublin 4 Ireland;

    Institute of MicrobiologyEidgen?ssische Technische Hochschule (ETH) Zürich8093 Zürich Switzerland;

    Competence Division Method Development and AnalyticsMüller‐Thurgau‐Strasse 29 8820 W?denswil;

    Department of Biology &

    BiochemistryUniversity of BathBath BA2 7AY UK;

    Agroscope Research Division Plant ProtectionMüller‐Thurgau‐Strasse 29 8820 W?denswil Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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