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首页> 外文期刊>BMC Genomics >Transcriptomic profiling of two Pak Choi varieties with contrasting anthocyanin contents provides an insight into structural and regulatory genes in anthocyanin biosynthetic pathway
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Transcriptomic profiling of two Pak Choi varieties with contrasting anthocyanin contents provides an insight into structural and regulatory genes in anthocyanin biosynthetic pathway

机译:两个青菜品种花色苷含量对比的转录组谱分析,提供了对花色苷生物合成途径中结构和调控基因的深入了解

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Background The accumulation of anthocyanin in horticultural crops not only improves their stress tolerances but also their nutritional values. Many key regulatory and structural genes in anthocyanin biosynthesis have been identified in model plants, but limited information is available for non-model plant species featured with colored leaves. In this study, two Pak Choi varieties with green or purple leaves were selected to analyze the anthocyanin biosynthesis through RNA-Seq. Results A total of 2475 unigenes were differentially expressed between these tested varieties, including 1303 down-regulated and 1172 up-regulated genes in the purple-leafed one. The reliability of the RNA-Seq was further confirmed by using real-time quantitative PCR. Kyoto Encyclopedia of Genes and Genomes enrichment analysis of the differentially expressed genes revealed ‘flavonoid biosynthesis’ was the only enriched pathway in the purple-leafed variety: In the pathway of phenylpropanoid metabolism, Bra017210 , Bra039777 , and Bra021637 were expressed at higher levels in the purple-leafed variety; among the early anthocyanin biosynthetic genes, Bra037747 transcripts were only detected in the purple-leafed variety but not in the green-leafed one; among the late anthocyanin biosynthetic genes, Bra027457 , Bra013652 , Bra019350 , Bra003021 , Bra035004 , and Bra038445 were all up-regulated in purple-leafed variety; and genes encoding anthocyanin-related transcription factors, such as Bra016164 , and genes encoding anthocyanin transportation, such as GST F12 , were also identified as up-regulated ones in the purple-leafed variety. Conclusions The current result provided a valuable insight into the anthocyanin accumulation in the purple-leafed variety of Pak Choi and a bioinformatic resource for further functional identification of key allelic genes determining the difference of anthocyanin content between Pak Choi varieties.
机译:背景技术花青素在园艺作物中的积累不仅改善了它们的胁迫耐受性,而且改善了它们的营养价值。在模型植物中已经鉴定出花色苷生物合成中的许多关键调控基因和结构基因,但是对于以红叶为特征的非模型植物种类的信息有限。在这项研究中,选择了带有绿色或紫色叶子的两个白菜品种,以通过RNA-Seq分析花青素的生物合成。结果这些受试品种之间共有2475个单基因差异表达,其中紫叶病品种中有1303个下调基因和1172个上调基因。通过使用实时定量PCR进一步证实了RNA-Seq的可靠性。京都基因与基因组百科全书对差异表达基因的富集分析表明,“类黄酮生物合成”是紫叶品种中唯一富集的途径:在苯丙烷代谢途径中,Bra017210,Bra039777和Bra021637在高水平表达。紫叶品种;在早期的花色苷生物合成基因中,仅在紫叶品种中检测到Bra037747转录本,而在绿叶品种中未检测到。在花色苷后期生物合成基因中,紫叶品种Bra027457,Bra013652,Bra019350,Bra003021,Bra035004和Bra038445均上调。编码花青素相关转录因子的基因(例如Bra016164)和编码花青素转运的基因(例如GST F12)也被确定为紫叶品种中的上调基因。结论本结果为深入了解白菜紫叶品种中的花色苷积累提供了有价值的见解,并为进一步确定关键基因等位基因的功能性鉴定确定白菜品种之间花色苷含量的差异提供了生物信息学资源。

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