首页> 外文期刊>BMC Genomics >Hybrid de novo transcriptome assembly of poinsettia (Euphorbia pulcherrima Willd. Ex Klotsch) bracts
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Hybrid de novo transcriptome assembly of poinsettia (Euphorbia pulcherrima Willd. Ex Klotsch) bracts

机译:Hybrid de Novo转录组合一品红(大戟属Pulcherrima Willd。前klotsch)苞片

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BACKGROUND:Poinsettia is a popular and important ornamental crop, mostly during the Christmas season. Its bract coloration ranges from pink/red to creamy/white shades. Despite its ornamental value, there is a lack of knowledge about the genetics and molecular biology of poinsettia, especially on the mechanisms of color formation. We performed an RNA-Seq analysis in order to shed light on the transcriptome of poinsettia bracts. Moreover, we analyzed the transcriptome differences of red- and white-bracted poinsettia varieties during bract development and coloration. For the assembly of a bract transcriptome, two paired-end cDNA libraries from a red and white poinsettia pair were sequenced with the Illumina technology, and one library from a red-bracted variety was used for PacBio sequencing. Both short and long reads were assembled using a hybrid de novo strategy. Samples of red- and white-bracted poinsettias were sequenced and comparatively analyzed in three color developmental stages in order to understand the mechanisms of color formation and accumulation in the species.RESULTS:The final transcriptome contains 288,524 contigs, with 33% showing confident protein annotation against the TAIR10 database. The BUSCO pipeline, which is based on near-universal orthologous gene groups, was applied to assess the transcriptome completeness. From a total of 1440 BUSCO groups searched, 77% were categorized as complete (41% as single-copy and 36% as duplicated), 10% as fragmented and 13% as missing BUSCOs. The gene expression comparison between red and white varieties of poinsettia showed a differential regulation of the flavonoid biosynthesis pathway only at particular stages of bract development. An initial impairment of the flavonoid pathway early in the color accumulation process for the white poinsettia variety was observed, but these differences were no longer present in the subsequent stages of bract development. Nonetheless, GSTF11 and UGT79B10 showed a lower expression in the last stage of bract development for the white variety and, therefore, are potential candidates for further studies on poinsettia coloration.CONCLUSIONS:In summary, this transcriptome analysis provides a valuable foundation for further studies on poinsettia, such as plant breeding and genetics, and highlights crucial information on the molecular mechanism of color formation.
机译:背景:一品红是一种受欢迎而重要的观赏作物,主要是在圣诞节季节。它的苞片着色范围从粉红色/红色到奶油/白色色调。尽管其观赏价值,但缺乏关于一品红的遗传和分子生​​物学的知识,尤其是对颜色形成的机制。我们进行了RNA-SEQ分析,以便在一品红苞片的转录组上脱光。此外,我们在苞片发育和着色过程中分析了红色和白色禁食的一品红品种的转录组差异。对于苞片转录组的组装,用illumina技术对红色和白色一品红对的两对末端cDNA文库进行测序,并用于红色苞片品种的一个文库用于PACBIO测序。使用Hybrid de Novo策略组装短期和长读数。在三种颜色的发育阶段测序并相对分析红色和白苞片样品,以了解物种中的颜色形成和积累机制。结果:最终的转录组含有288,524个Contig,33%显示自信的蛋白质注释针对TAIR10数据库。基于近乎通用的正交基因组的Busco管道被应用于评估转录组完整性。在搜索的1440个Busco集团中,77%被分类为完整的(单拷贝41%,重复36%),10%的分散和13%作为缺少的Buscos。一品红红白品种之间的基因表达比较仅在苞片发育的特定阶段表达了类黄酮生物合成途径的差异调节。观察到白色一品红的彩色积聚过程早期的黄酮型途径的初步损害,但随后的苞片发育的阶段不再存在这些差异。尽管如此,GSTF11和UGT79B10在白色品种的最后阶段显示了较低的表达,因此,对于一品红的彩色的进一步研究是潜在的候选者。结论:总之,该转录组分析为进一步研究提供了有价值的基础一品红,如植物育种和遗传学,并突出了关于颜色形成分子机制的关键信息。

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