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在辣椒品种CH-19 Sweet中,对氨基苯甲酸甲酯转移酶(pAMT)的功能丧失导致辣椒素类物质(辣椒素类似物)的生物合成。

Functional loss of pAMT results in biosynthesis of capsinoids, capsaicinoid analogs, in Capsicum annuum cv. CH-19 Sweet.

作者信息

Lang Yaqin, Kisaka Hiroaki, Sugiyama Ryuji, Nomura Kenzo, Morita Akihito, Watanabe Tatsuo, Tanaka Yoshiyuki, Yazawa Susumu, Miwa Tetsuya

机构信息

Research Institute for Health Fundamentals, Ajinomoto Co. Inc., 1-1 Suzuki-cho, Kawasaki-ku, Kawasaki 210-8681, Japan.

出版信息

Plant J. 2009 Sep;59(6):953-61. doi: 10.1111/j.1365-313X.2009.03921.x. Epub 2009 May 18.

Abstract

Capsaicinoids are responsible for the spicy flavor of pungent peppers (Capsicum). The cultivar CH-19 Sweet is a non-pungent pepper mutant derived from a pungent pepper strain, Capsicum annuum CH-19. CH-19 Sweet biosynthesizes capsaicinoid analogs, capsinoids. We determined the genetic and metabolic mechanisms of capsinoid biosynthesis in this cultivar. We analyzed the putative aminotransferase (pAMT) that is thought to catalyze the formation of vanillylamine from vanillin in the capsaicinoid biosynthetic pathway. Enzyme assays revealed that pAMT activity catalyzing vanillylamine formation was completely lost in CH-19 Sweet placenta tissue. RT-PCR analysis showed normal mRNA transcription of the pAMT gene; however, SNP analysis of the cDNA sequence showed a T nucleotide insertion at 1291 bp in the pAMT gene of CH-19 Sweet. This insertion formed a new stop codon, TGA, that prevented normal translation of the gene, and the pAMT protein did not accumulate in CH-19 Sweet as determined using Western blot analysis. We developed a dCAPS marker based on the T insertion in the pAMT gene of CH-19 Sweet, and showed that the pAMT genotype co-segregated with the capsinoid or capsaicinoid fruit phenotype in the F(2) population. The T insertion was not found in other pungent and non-pungent Capsicum lines, suggesting that it is specific to CH-19 Sweet. CH-19 Sweet's pAMT gene mutation is an example of a nonsense mutation in a single gene that alters a secondary metabolite biosynthetic pathway, resulting in the biosynthesis of analogs. The dCAPS marker will be useful in selecting lines with capsinoid-containing fruits in pepper-breeding programs.

摘要

辣椒素类物质是辛辣辣椒(辣椒属)辣味的来源。品种CH-19 Sweet是一种从辛辣辣椒品系辣椒(Capsicum annuum CH-19)衍生而来的非辛辣辣椒突变体。CH-19 Sweet生物合成辣椒素类物质类似物——类辣椒素。我们确定了该品种中类辣椒素生物合成的遗传和代谢机制。我们分析了假定的氨基转移酶(pAMT),它被认为在辣椒素类物质生物合成途径中催化香草醛形成香草胺。酶活性测定表明,在CH-19 Sweet胎座组织中,催化香草胺形成的pAMT活性完全丧失。RT-PCR分析显示pAMT基因的mRNA转录正常;然而,cDNA序列的SNP分析表明,在CH-19 Sweet的pAMT基因中,1291 bp处有一个T核苷酸插入。这种插入形成了一个新的终止密码子TGA,阻止了该基因的正常翻译,并且通过蛋白质免疫印迹分析确定,pAMT蛋白在CH-19 Sweet中没有积累。我们基于CH-19 Sweet的pAMT基因中的T插入开发了一个dCAPS标记,并表明在F(2)群体中,pAMT基因型与类辣椒素或辣椒素类果实表型共分离。在其他辛辣和非辛辣辣椒品系中未发现该T插入,表明它是CH-19 Sweet特有的。CH-19 Sweet的pAMT基因突变是单个基因中无义突变改变次生代谢物生物合成途径,导致类似物生物合成的一个例子。该dCAPS标记将有助于在辣椒育种计划中选择含类辣椒素果实的品系。

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