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Genome-Wide Identification Localization and Expression Analysis of Proanthocyanidin-Associated Genes in Brassica

机译:芸苔原花青素相关基因的全基因组鉴定定位和表达分析

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摘要

Proanthocyanidins (PA) is a type of prominent flavonoid compound deposited in seed coats which controls the pigmentation in all Brassica species. Annotation of Brassica juncea genome survey sequences showed 72 PA genes; however, a functional description of these genes, especially how their interactions regulate seed pigmentation, remains elusive. In the present study, we designed 19 primer pairs to screen a bacterial artificial chromosome (BAC) library of B. juncea. A total of 284 BAC clones were identified and sequenced. Alignment of the sequences confirmed that 55 genes were cloned, with every Arabidopsis PA gene having 2–7 homologs in B. juncea. BLAST analysis using the recently released B. rapa or B. napus genome database identified 31 and 58 homologous genes, respectively. Mapping and phylogenetic analysis indicated that 30 B. juncea PA genes are located in the A-genome chromosomes except A04, whereas the remaining 25 genes are mapped to the B-genome chromosomes except B05 and B07. RNA-seq data and Fragments Per Kilobase of a transcript per Million mapped reads (FPKM) analysis showed that most of the PA genes were expressed in the seed coat of B. juncea and B. napus, and that BjuTT3, BjuTT18, BjuANR, BjuTT4-2, BjuTT4-3, BjuTT19-1, and BjuTT19-3 are transcriptionally regulated, and not expressed or downregulated in yellow-seeded testa. Importantly, our study facilitates in better understanding of the molecular mechanism underlying Brassica PA profiles and accumulation, as well as in further characterization of PA genes.
机译:原花青素(PA)是一种沉积在种皮中的重要类黄酮化合物,可控制所有芸苔属植物的色素沉着。芥菜基因组调查序列注释显示72个PA基因。然而,这些基因的功能描述,尤其是它们之间的相互作用如何调节种子色素沉着,仍然难以捉摸。在本研究中,我们设计了19对引物以筛选芥菜气杆菌的细菌人工染色体(BAC)文库。总共鉴定了284个BAC克隆并进行了测序。序列比对证实克隆了55个基因,每个拟南芥PA基因在芥菜中都有2-7个同源物。使用最近发布的B. rapa或B. napus基因组数据库进行BLAST分析,分别鉴定出31和58个同源基因。定位和系统发育分析表明,除了A04,A。基因组染色体中有30个Juncea PA基因位于A基因组染色体上,而除B05和B07外,其余25个基因位于B基因组染色体上。 RNA-seq数据和每千个碱基对的碱基对片段的碱基对片段片段数(FPKM)分析表明,大多数PA基因在芥菜和油菜的种皮中表达,并且BjuTT3,BjuTT18,BjuANR,BjuTT4 -2,BjuTT4-3,BjuTT19-1和BjuTT19-3在黄色种子的睾丸中受转录调节,但未表达或未下调。重要的是,我们的研究有助于更好地了解芸苔属植物PA谱和积累的分子机制,以及进一步鉴定PA基因。

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