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Biosynthesis of Fusarubins Accounts for Pigmentation of Fusarium fujikuroi Perithecia

机译:镰刀菌素的生物合成导致富士镰刀菌周皮的色素沉着

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Fusarium fujikuroi produces a variety of secondary metabolites, of which polyketides form the most diverse group. Among these are the highly pigmented naphthoquinones, which have been shown to possess different functional properties for the fungus. A group of naphthoquinones, polyketides related to fusarubin, were identified in Fusarium spp. more than 60 years ago, but neither the genes responsible for their formation nor their biological function has been discovered to date. In addition, although it is known that the sexual fruiting bodies in which the progeny of the fungus develops are darkly colored by a polyketide synthase (PKS)-derived pigment, the structure of this pigment has never been elucidated. Here we present data that link the fusarubin-type polyketides to a defined gene cluster, which we designate fsr , and demonstrate that the fusarubins are the pigments responsible for the coloration of the perithecia. We studied their regulation and the function of the single genes within the cluster by a combination of gene replacements and overexpression of the PKS-encoding gene, and we present a model for the biosynthetic pathway of the fusarubins based on these data.
机译:镰刀菌镰刀菌可产生多种次生代谢产物,其中聚酮化合物构成最多样化的一组。其中有高度着色的萘醌,已显示对真菌具有不同的功能特性。在镰刀菌属中鉴定出一组萘醌,与夫沙柔比有关的聚酮化合物。距今已有60多年的历史了,但至今尚未发现负责其形成的基因及其生物学功能。另外,尽管已知由聚酮化合物合酶(PKS)衍生的色素使其中真菌后代发育的有性子实体深色,但是从未阐明这种色素的结构。在这里,我们提供了将fusarubin型聚酮化合物与定义的基因簇相关的数据,我们将其指定为fsr,并证明fusarubins是负责皮膜着色的色素。我们通过基因置换和PKS编码基因的过表达的组合研究了它们在集群中的调控和单个基因的功能,并基于这些数据提出了一种富沙红素的生物合成途径模型。

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