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Functional Characterization of Genes Located at the Aurofusarin BiosynthesisGene Cluster in Gibberella zeae
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  • Functional Characterization of Genes Located at the Aurofusarin BiosynthesisGene Cluster in Gibberella zeae
저자명
Jung Eun Kim, Jin Cheol Kim, Jian Ming Jin, Sung Hwan Yun, Yin Won Lee
간행물명
The Plant Pathology Journal KCI
권/호정보
2008년|24권 1호(통권105호)|pp.8-16 (9 pages)
발행정보
한국식물병리학회|한국
파일정보
정기간행물|ENG|
PDF텍스트(0.91MB)
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영문초록

Aurofusarin is a polyketide pigment produced by some Fusarium species. The PKS12 and GIP1 genes, which encode a putative type I polyketide synthase (PKS) and a fungal laccase, respectively, are known to be required for aurofusarin biosynthesis in Gibberella zeae (anamorph: Fusarium graminearum). The ten additional genes, which are located within a 30 kb region of PKS12 and GIP1 and regulated by a putative transcription factor (GIP2), organize the aurofusarin biosynthetic cluster. To determine if they are essential for aurofusarin production in G. zeae, we have employed targeted gene deletion, complementation, and chemical analyses. GIP7, which encodes O-methyltransferase, is confirmed to be required for the conversion of norrubrofusarin to rubrofusarin, an intermediate of aurofusarin. GIP1-, GIP3-, and GIP8-deleted strains accumulated rubrofusarin, indicating those gene products are essential enzymes for the conversion of rubrofusarin to aurofusarin. Based on the phenotypic changes in the gene deletion strains examined, we propose a possible pathway for aurofusarin biosynthesis in G. zeae. Our results would provide important information for better understanding of naphthoquinone biosynthesis in other filamentous fungi as well as the aurofusarin biosynthesis in G. zeae.

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