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首页> 外文期刊>Applied and Environmental Microbiology >Loss of Gibberellin Production in Fusarium verticillioides (Gibberella fujikuroi MP-A) Is Due to a Deletion in the Gibberellic Acid Gene Cluster
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Loss of Gibberellin Production in Fusarium verticillioides (Gibberella fujikuroi MP-A) Is Due to a Deletion in the Gibberellic Acid Gene Cluster

机译:镰状镰刀菌(Gibberella fujikuroi MP-A)赤霉素生产的损失是由于赤霉素基因簇的缺失

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Fusarium verticillioides (Gibberella fujikuroi mating population A [MP-A]) is a widespread pathogen on maize and is well-known for producing fumonisins, mycotoxins that cause severe disease in animals and humans. The species is a member of the Gibberella fujikuroi species complex, which consists of at least 11 different biological species, termed MP-A to -K. All members of this species complex are known to produce a variety of secondary metabolites. The production of gibberellins (GAs), a group of diterpenoid plant hormones, is mainly restricted to Fusarium fujikuroi (G. fujikuroi MP-C) and Fusarium konzum (MP-I), although most members of the G. fujikuroi species complex contain the GA biosynthesis gene cluster or parts of it. In this work, we show that the inability to produce GAs in F. verticillioides (MP-A) is due to the loss of a majority of the GA gene cluster as found in F. fujikuroi. The remaining part of the cluster consists of the full-length F. verticillioides des gene (Fvdes), encoding the GA4 desaturase, and the coding region of FvP450-4, encoding the ent-kaurene oxidase. Both genes share a high degree of sequence identity with the corresponding genes of F. fujikuroi. The GA production capacity of F. verticillioides was restored by transforming a cosmid with the entire GA gene cluster from F. fujikuroi, indicating the existence of an active regulation system in F. verticillioides. Furthermore, the GA4 desaturase gene des from F. verticillioides encodes an active enzyme which was able to restore the GA production in a corresponding des deletion mutant of F. fujikuroi.
机译:镰刀菌(Fusarium v​​erticillioides)(富士赤霉交配种群A [MP-A])是玉米上广泛传播的病原体,因生产伏马菌素,霉菌毒素而引起动物和人类严重疾病,众所周知。该物种是赤霉菌物种复合体的成员,该复合体由至少11个不同的生物物种组成,称为MP-A至-K。已知该物种复合体的所有成员都会产生多种次级代谢产物。赤霉素(GAs)是一组二萜类植物激素,其生产主要限于富士镰刀菌(G. fujikuroi MP-C)和镰刀镰刀菌(MP-I),尽管该菌的大多数成员都含有GA生物合成基因簇或其一部分。在这项工作中,我们表明无法在网状F.(MP-A)中产生GA是由于丢失了F.kujikuroi中的GA基因簇的大部分所致。簇的其余部分由全长假单胞菌des基因(Fvdes)编码,编码GA4去饱和酶,以及编码FvP450-4的编码区,对戊二烯氧化脲。两种基因都与富士果黑霉菌的相应基因具有高度的序列同一性。通过转化带有来自富士果黑穗病菌的整个GA基因簇的粘粒,恢复了褐果蝇的GA生产能力,这表明了褐果蝇中存在一个活跃的调控系统。此外,来自网状假丝酵母的GA4去饱和酶基因des编码一种活性酶,该活性酶能够在富士黑丝酵母的相应des缺失突变体中恢复GA的产生。

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