首页> 外文OA文献 >The Fdb3 transcription factor of the Fusarium Detoxification of Benzoxazolinone gene cluster is required for MBOA but not BOA degradation in Fusarium pseudograminearum
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The Fdb3 transcription factor of the Fusarium Detoxification of Benzoxazolinone gene cluster is required for MBOA but not BOA degradation in Fusarium pseudograminearum

机译:苯并恶唑啉酮基因簇的镰刀菌解毒的Fdb3转录因子对于MBOA是必需的,但在假镰刀菌中BOA降解不是必需的

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摘要

A number of cereals produce the benzoxazolinone class of phytoalexins. Fusarium species pathogenic towards these hosts can typically degrade these compounds via an aminophenol intermediate, and the ability to do so is encoded by a group of genes found in the Fusarium Detoxification of Benzoxazolinone (FDB) cluster. A zinc finger transcription factor encoded by one of the FDB cluster genes (FDB3) has been proposed to regulate the expression of other genes in the cluster and hence is potentially involved in benzoxazolinone degradation. Herein we show that Fdb3 is essential for the ability of Fusarium pseudograminearum to efficiently detoxify the predominant wheat benzoxazolinone, 6-methoxy-benzoxazolin-2-one (MBOA), but not benzoxazoline-2-one (BOA). Furthermore, additional genes thought to be part of the FDB gene cluster, based upon transcriptional response to benzoxazolinones, are regulated by Fdb3. However, deletion mutants for these latter genes remain capable of benzoxazolinone degradation, suggesting that they are not essential for this process.
机译:许多谷物生产苯并恶唑啉酮类植物抗毒素。对这些寄主具有致病性的镰刀菌通常可以通过氨基酚中间体降解这些化合物,而这种能力是由在苯并恶唑啉酮(FDB)镰刀菌解毒中发现的一组基因编码的。已经提出了由FDB簇基因之一(FDB3)编码的锌指转录因子来调节簇中其他基因的表达,因此可能参与苯并恶唑啉酮的降解。本文中,我们显示Fdb3对于镰刀镰刀菌有效解毒主要小麦苯并恶唑啉酮,6-甲氧基-苯并恶唑啉-2-酮(MBOA)而不是苯并恶唑啉-2-one(BOA)的能力至关重要。此外,基于对苯并恶唑啉酮的转录反应,被认为是FDB基因簇一部分的其他基因受Fdb3调控。但是,这些后面的基因的缺失突变体仍具有苯并恶唑啉酮降解的能力,这表明它们对于该过程不是必需的。

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