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Transcriptome analysis identifies the key genes responsible for high anthocyanin content in the fruits of Lycium ruthenicum Murray

机译:转录组分析鉴定了枸杞枸t果实水果中高花青素含量的关键基因

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Lycium ruthenicum Murray (black wolfberry) is an important economic plant producing black fruit with high anthocyanin content. The transcriptome of its fruits was compared with that of Lycium barbarum L. (wolfberry), which produces orange-red fruits, with its pigmentation depending largely on carotenoids, with the aim of identifying the key genes responsible for anthocyanin accumulation through RNA sequencing. A total of 32.05 and 28.52 Gb clean reads was obtained after filtering in L. barbarum and L. ruthenicum respectively. Altogether 192,869 unigenes were assembled with an average length of 1064 bp. These unigenes were predicted to encode 152,209 specific proteins with the help of protein databases. Compared with L. barbarum, 733,070 genes were upregulated while 25,779 genes appeared downregulated in the fruits of L. ruthenicum. The genes of the anthocyanin biosynthesis pathway exhibited more differences between the two species than did those of any other biosynthetic pathway. All structural genes in connection with anthocyanin biosynthesis had higher expression level in L. ruthenicum than in L. barbarum, except F3'H and 3GT. The downregulation of PH and 3GT in L. ruthenicum would be responsible for the absence of cyanidin and glycosylation in this species. The MYB and bHLH genes regulating anthocyanin biosynthesis also displayed higher transcript levels in L. ruthenicum than in L. barbarum, especially the MYB transcription factor gene, which should be the reason for the activation of the anthocyanin biosynthesis structural genes. More work should be carried out to isolate the MYB and bHLH transcription factor genes, and to confirm their functions in producing the pigments found in the black fruits of L. ruthenicum.
机译:Lycium Ruthenicum Murray(黑枸杞)是一个重要的经济植物,生产具有高血清素含量的黑果。将其果实的转录组与枸杞L.(枸杞)的转录组进行了比较,其产生橙红色果实,其颜料沉着,其主要取决于类胡萝卜素,目的是通过RNA测序鉴定负责花青素积累的关键基因。在过滤L.Barbarum和L.钌后,共获得总共32.05和28.52 GB清洁读数。共用192,869个unigenes,平均长度为1064 bp。预计这些unigenes在蛋白质数据库的帮助下被预先编码152,209个特异性蛋白质。与L. Barbarum相比,上调了733,070个基因,而25,779个基因在L.钌的果实中出现下降。花青素生物合成途径的基因在两种物种之间的差异比任何其他生物合成途径的差异更多。与花青素生物合成有关的所有结构基因在L.钌肠中表达水平高于L. Barbarum,除F3'H和3GT之外。 L.钌的下调pH和3GT的下调将负责这种物种中的含有Cyanidin和糖基化的。调节花青素生物合成的MYB和BHLH基因也显示出L.钌的转录水平高于L.Barbarum,特别是MyB转录因子基因,这应该是激活花青素生物合成结构基因的原因。应进行更多的作品以分离MyB和BHLH转录因子基因,并确认它们在生产L. ruthenicum黑色果实中的颜料的作用。

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