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Cloning and Functional Analysis of Three Chalcone Synthases from the Flowers of Safflowers Carthamus tinctorius

机译:红花花中三种查尔酮合酶的克隆及功能分析

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The flowers of safflowers (Carthamus tinctorius L.) are very important as they are the sole source of their distinct pigments, i.e. carthamus-red and-yellows, and have historically had strong connections to the cultural side of human activities such as natural dyes, rouge, and traditional medicines. The distinct pigments are quinochalcone C-glucosides, which are found specifically in the flowers of C. tinctorius. To investigate the biosynthetic pathways of quinochalcone C-glucosides, de novo assembly of the transcriptome was performed on the flowers using an Illumina sequencing platform to obtain 69,312 annotated coding DNA sequences. Three chalcone synthase like genes, CtCHS1, 2 and 3 were focused on and cloned, which might be involved in quinochalcone C-glucosides biosynthesis by establishing the C-6-C-3-C-6 chalcone skeleton. It was demonstrated that all the recombinant CtCHSs could recognize p-coumaroyl-CoA, caffeoyl-CoA, feruloyl-CoA, and sinapoyl-CoA as starter substrates. This is the first report on the cloning and functional analysis of the three chalcone synthase genes from the flowers of C. tinctorius.
机译:红花(Carthamus tinctorius L.)的花朵非常重要,因为它们是其独特颜料(即红花和黄花)的唯一来源,并且在历史上与人类活动的文化方面(如天然染料,胭脂和传统药物。独特的颜料是喹啉二酮C-葡萄糖苷,它们特别存在于丁香梭菌的花朵中。为了研究喹诺酮C-葡萄糖苷的生物合成途径,使用Illumina测序平台在花上进行了转录组的从头组装,以获得69,312个带注释的编码DNA序列。聚焦并克隆了3个查尔酮合酶样基因CtCHS1、2和3,它们可能通过建立C-6-C-3-C-6查尔酮骨架参与喹啉酮C-糖苷的生物合成。结果表明,所有重组CtCHSs都可以识别p-香豆酰基-CoA,咖啡酰基-CoA,阿魏酰基-CoA和芥子酰基-CoA作为起始底物。这是首次报道了C. tinctorius花中三个查尔酮合酶基因的克隆和功能分析。

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