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对白叶枯病菌XabB侧翼基因的分析:一个甲基转移酶基因参与白叶枯病菌中杀稻白菌素的生物合成。

Analysis of the genes flanking xabB: a methyltransferase gene is involved in albicidin biosynthesis in Xanthomonas albilineans.

作者信息

Huang G, Zhang L, Birch R G

机构信息

Department of Botany, The University of Queensland, 4072, Brisbane, Australia.

出版信息

Gene. 2000 Sep 19;255(2):327-33. doi: 10.1016/s0378-1119(00)00320-6.

Abstract

Transposon mutagenesis and complementation studies previously identified a gene (xabB) for a large (526kDa) polyketide-peptide synthase required for biosynthesis of albicidin antibiotics and phytotoxins in the sugarcane leaf scald pathogen Xanthomonas albilineans. A cistron immediately downstream from xabB encodes a polypeptide of 343aa containing three conserved motifs characteristic of a family of S-adenosyl-L-methionine (SAM)-dependent O-methyltransferases. Insertional mutagenesis and complementation indicate that the product of this cistron (designated xabC) is essential for albicidin production, and that there is no other required downstream cistron. The xabB promoter region is bidirectional, and insertional mutagenesis of the first open reading frame (ORF) in the divergent gene also blocks albicidin biosynthesis. This divergent ORF (designated thp) encodes a protein of 239aa displaying high similarity to several IS21-like transposition helper proteins. The thp cistron is not located in a recognizable transposon, and is probably a remnant from a past transposition event that may have contributed to the development of the albicidin biosynthetic gene cluster. Failure of 'in trans' complementation of thp indicates that a downstream cistron transcribed with thp is required for albicidin biosynthesis.

摘要

转座子诱变和互补研究先前鉴定出一个基因(xabB),该基因编码一种大型(526 kDa)聚酮肽合酶,是甘蔗叶瘟病菌白叶黄单胞菌(Xanthomonas albilineans)中杀稻瘟菌素抗生素和植物毒素生物合成所必需的。xabB下游紧邻的一个顺反子编码一个343个氨基酸的多肽,该多肽含有S-腺苷-L-甲硫氨酸(SAM)依赖性O-甲基转移酶家族的三个保守基序。插入诱变和互补表明,这个顺反子的产物(命名为xabC)对于杀稻瘟菌素的产生至关重要,并且不存在其他必需的下游顺反子。xabB启动子区域是双向的,并且在该 divergent基因中的第一个开放阅读框(ORF)的插入诱变也会阻断杀稻瘟菌素的生物合成。这个divergent ORF(命名为thp)编码一个239个氨基酸的蛋白质,该蛋白质与几种IS21样转座辅助蛋白具有高度相似性。thp顺反子并不位于一个可识别的转座子中,可能是过去转座事件的残余物,该事件可能对杀稻瘟菌素生物合成基因簇的发展有贡献。thp的“反式”互补失败表明,与thp一起转录的下游顺反子是杀稻瘟菌素生物合成所必需的。

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