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串珠镰刀菌和产毒镰刀菌中镰刀菌素C的生物合成。

Fusarin C biosynthesis in Fusarium moniliforme and Fusarium venenatum.

作者信息

Song Zhongshu, Cox Russell J, Lazarus Colin M, Simpson TJ Thomas J

机构信息

School of Chemistry, University of Bristol, Cantock's Close, Clifton, Bristol, BS8 1TS, UK.

出版信息

Chembiochem. 2004 Sep 6;5(9):1196-1203. doi: 10.1002/cbic.200400138.

Abstract

Fragments of polyketide synthase (PKS) genes were amplified from complementary DNA (cDNA) of the fusarin C producing filamentous fungi Fusarium moniliforme and Fusarium venenatum by using degenerate oligonucleotides designed to select for fungal PKS C-methyltransferase (CMeT) domains. The PCR products, which were highly homologous to fragments of known fungal PKS CMeT domains, were used to probe cDNA and genomic DNA (gDNA) libraries of F. moniliforme and F. venenatum. A 4.0 kb cDNA clone from F. venenatum was isolated and used to prepare a hygromycin-resistance knockout cassette, which was used to produce a fusarin-deficient strain of F. venenatum (kb = 1000 bp). Similarly, a 26 kb genomic fragment, isolated on two overlapping clones from F. moniliforme, encoded a complete iterative Type I PKS fused to an unusual nonribosomal peptide synthase module. Once again, targeted gene disruption produced a fusarin-deficient strain, thereby proving that this synthase is responsible for the first steps of fusarin biosynthesis.

摘要

通过使用设计用于选择真菌聚酮合酶(PKS)C-甲基转移酶(CMeT)结构域的简并寡核苷酸,从产生镰刀菌素C的丝状真菌串珠镰刀菌和产毒镰刀菌的互补DNA(cDNA)中扩增出聚酮合酶(PKS)基因片段。这些与已知真菌PKS CMeT结构域片段高度同源的PCR产物,被用于探测串珠镰刀菌和产毒镰刀菌的cDNA和基因组DNA(gDNA)文库。从产毒镰刀菌中分离出一个4.0 kb的cDNA克隆,并用于制备潮霉素抗性敲除盒,该敲除盒用于产生产毒镰刀菌的镰刀菌素缺陷菌株(kb = 1000碱基对)。同样,从串珠镰刀菌的两个重叠克隆中分离出的一个26 kb基因组片段,编码一个与一个不寻常的非核糖体肽合成酶模块融合的完整迭代型I型聚酮合酶。再一次,靶向基因破坏产生了一个镰刀菌素缺陷菌株,从而证明这种合成酶负责镰刀菌素生物合成的第一步。

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