Cloning and Expression Analysis of PAP1 in Brassica juncea

D. He, Weiping Zhang, Wei Lin, Jiale Chen, Peng He, Dawei Zhang, M. Yan
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Abstract

Anthocyanins are important substances accounting for the leaf color in Brassica juncea and PAP1 gene is one of the key transport factors in the anthocyanin synthesis pathway. In this study, homologous cloning technology was used to clone the PAP1 gene sequences of Brassica juncea with different leaf colors. Specific primers were designed according to the gene sequences of Brassica rapa with high homology for PCR amplification. The PAP1 gene of Brassica juncea is 1 348 bp~1 669 bp long, and the coding region sequence is 744 bp~753 bp, including 3 exons and 2 introns. Two MYB blinding domains are found in PAP1 protein at the site of 9~59 and 62~110 amino acids. Phylogenetic analysis showed that the PAP1 gene of Brassica juncea had high homology with the related genes of Brassica rapa and Brassica rapa subsp. rapa, but had low homology with Arabidopsis thaliana. Compared gene sequences in Brassica juncea with different leaf colors, there are no differences between the coding sequence of purple and red leaf Brassica juncea, but the encoded protein have 22 amino acid differences from green leaves. We also observed the lower expression level of PAP1 and its related target genes such as DFR, TT19 in green leaves, which may lead to the differences of leaf color in Brassica juncea. This study provides a reference for exploring the function of PAP1 gene and the formation mechanism of different leaf color of Brassica juncea.
芥菜PAP1基因的克隆及表达分析
花青素是构成芥菜叶片颜色的重要物质,PAP1基因是花青素合成途径中的关键转运因子之一。本研究采用同源克隆技术克隆了不同叶色芥菜的PAP1基因序列。根据同源性高的油菜基因序列设计特异性引物进行PCR扩增。芥菜PAP1基因全长1 348 bp~1 669 bp,编码区序列744 bp~753 bp,包含3个外显子和2个内含子。在PAP1蛋白的9~59和62~110个氨基酸位点发现了两个MYB致盲结构域。系统发育分析表明,芥菜PAP1基因与油菜和油菜亚种的相关基因具有高度同源性。但与拟南芥同源性较低。比较不同叶色芥菜的基因序列,紫色叶和红色叶的芥菜编码序列没有差异,但编码的蛋白与绿叶有22个氨基酸的差异。我们还观察到PAP1及其相关靶基因DFR、TT19在绿叶中的表达水平较低,这可能是导致芥菜叶片颜色差异的原因。本研究为探索芥菜不同叶色的PAP1基因功能及形成机制提供了参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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