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Deficiency of valencene in mandarin hybrids is associated with a deletion in the promoter region of the valencene synthase gene

机译:普通话杂种中瓦伦烯的缺乏与瓦伦烯合酶基因启动子区域的缺失有关

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Valencene is a major sesquiterpene in citrus oil and biosynthesized by valencene synthase (Cstps1; EC: 4.2.3.73) from the 15-carbon substrate farnesyl diphosphate. It is abundant in juice of some mandarins (e.g. Citrus reticulata Blanco cv. Fortune), however, it is undetectable in others (e.g. C. reticulata Blanco cv. Murcott), We have discovered that the Murcott mandarin Cstps1 gene expression is severely reduced. A previous genetic mapping study using an F1 population of Fortune × Murcott found that the segregation of valencene production in fruit exhibited a Mendelian inheritance ratio of 1:1. There was only one dominant locus associated with valencene content detected on the mandarin genetic map. The goal of this study was to understand the molecular mechanism underlying the valencene deficiency observed in some citrus hybrids. There was a clear relationship between presence or absence of the valencene synthase gene (Cstps1) expression, and presence or absence of valencene among randomly selected mandarin hybrids. Cloning the coding regions of Cstps1 from Fortune and Murcott mandarin, and aligning with previous reported Valencia orange Cstps1 sequence, showed that they both exhibited extremely high similarity with the known Cstps1. By further cloning and analyzing the promoter region of Cstps1 from Valencia, Fortune and Murcott, a 12-nucleotide deletion at approximately ??270?bp from the Cstps1 coding region was only found in Murcott. Three binary vectors, designated as p1380-FortP-GUSin, p1380-MurcP-GUSin and p1380-MurcP(+?12)-GUSin, were developed for promoter activity analysis. Transient over-expression of Fortune Cstps1 promoter in sweet orange showed notable GUS activity, but the Murcott Cstps1 promoter did not. In addition, by re-inserting the 12-nucleotide fragment, the activity of the Murcott Cstps1 promoter was mostly recovered. The deficiency of valencene production in some mandarins is probably due to a 12-nucleotide deletion in the promoter region of the Cstps1, which could be a crucial switch of Cstps1 transcription. Our results further enhanced the understanding of valencene biosynthesis in citrus.
机译:瓦伦烯是柑桔油中的主要倍半萜,由瓦伦烯合酶(Cstps1; EC:4.2.3.73)由15碳底物法呢基二磷酸酯生物合成。它在某些普通话(例如柑橘柑桔cv。财富)的汁液中含量丰富,但是在其他普通话(例如柑桔C.reticulata Blanco cv.Murcott)中则无法检测到,我们发现Murcott普通话Cstps1基因表达严重降低。先前使用F1财富×Murcott种群进行的基因作图研究发现,水果中瓦伦烯的生产分离表现出孟德尔遗传比例为1:1。在普通话遗传图谱上仅检测到一个与瓦伦烯含量相关的显性位点。这项研究的目的是了解在某些柑橘杂种中观察到的瓦伦烯缺乏症的分子机制。在随机选择的普通话杂种中,瓦伦烯合酶基因(Cstps1)表达的存在与否与瓦伦烯的存在与否之间存在明显的关系。从《财富》和默科特语中克隆Cstps1的编码区,并与先前报道的瓦伦西亚橙Cstps1序列比对,表明它们都与已知的Cstps1表现出极高的相似性。通过进一步克隆和分析来自瓦伦西亚,《财富》和默科特的Cstps1的启动子区域,仅在默科特发现Cstps1编码区约270 bp处的12个核苷酸的缺失。开发了三个二元载体,分别命名为p1380-FortP-GUSin,p1380-MurcP-GUSin和p1380-MurcP(+Δ12)-GUSin,用于启动子活性分析。甜橙中Fortune Cstps1启动子的瞬时过表达显示出显着的GUS活性,而Murcott Cstps1启动子没有。另外,通过重新插入12个核苷酸的片段,Murcott Cstps1启动子的活性大部分得以恢复。在某些普通话中,瓦伦烯的生产不足可能是由于Cstps1启动子区域中的12个核苷酸缺失,这可能是Cstps1转录的关键开关。我们的结果进一步增强了对柑橘中瓦伦烯生物合成的了解。

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