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Spatiotemporal Transcriptome Analysis Provides Insights into Bicolor Tepal Development in Lilium Tiny Padhye

机译:时空转录组分析为百合 Tiny Padhye中双色Tepal发育提供了见识

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摘要

The bicolor Asiatic hybrid lily cultivar “Tiny Padhye” is an attractive variety because of its unique color pattern. During its bicolor tepal development, the upper tepals undergo a rapid color change from green to white, while the tepal bases change from green to purple. However, the molecular mechanisms underlying these changes remain largely uncharacterized. To systematically investigate the dynamics of the lily bicolor tepal transcriptome during development, we generated 15 RNA-seq libraries from the upper tepals (S2-U) and basal tepals (S1-D, S2-D, S3-D, and S4-D) of Lilium “Tiny Padhye.” Utilizing the Illumina platform, a total of 295,787 unigenes were obtained from 713.12 million high-quality paired-end reads. A total of 16,182 unigenes were identified as differentially expressed genes during tepal development. Using Kyoto Encyclopedia of Genes and Genomes pathway analysis, candidate genes involved in the anthocyanin biosynthetic pathway (61 unigenes), and chlorophyll metabolic pathway (106 unigenes) were identified. Further analyses showed that most anthocyanin biosynthesis genes were transcribed coordinately in the tepal bases, but not in the upper tepals, suggesting that the bicolor trait of “Tiny Padhye” tepals is caused by the transcriptional regulation of anthocyanin biosynthetic genes. Meanwhile, the high expression level of chlorophyll degradation genes and low expression level of chlorophyll biosynthetic genes resulted in the absence of chlorophylls from “Tiny Padhye” tepals after flowering. Transcription factors putatively involved in the anthocyanin biosynthetic pathway and chlorophyll metabolism in lilies were identified using a weighted gene co-expression network analysis and their possible roles in lily bicolor tepal development were discussed. In conclusion, these extensive transcriptome data provide a platform for elucidating the molecular mechanisms of bicolor tepals in lilies and provide a basis for similar research in other closely related species.
机译:亚洲双色杂交百合品种“ Tiny Padhye”是一个有吸引力的品种,因为它具有独特的颜色模式。在其双色花被发育过程中,上部花被经历了从绿色到白色的快速颜色变化,而花被的基部从绿色变成了紫色。但是,这些变化背后的分子机制仍未完全阐明。为了系统地研究百合双色花萼转录组在发育过程中的动力学,我们从上花结(S2-U)和基花结(S1-D,S2-D,S3-D和S4-D)生成了15个RNA-seq文库)的百合花“ Tiny Padhye”。利用Illumina平台,从713.12百万高质量配对末端读取中获得了295,787个单基因。在花被发育过程中,共有16182个单基因被鉴定为差异表达基因。使用京都基因百科全书和基因组途径分析,鉴定了涉及花色苷生物合成途径(61个单基因)和叶绿素代谢途径(106个单基因)的候选基因。进一步的分析表明,大多数花色苷生物合成基因在花被碱中被协同转录,而在上部花被中不被转录,这表明“ Tiny Padhye”花被藤的双色性是由花色苷生物合成基因的转录调控引起的。同时,叶绿素降解基因的高表达水平和叶绿素生物合成基因的低表达水平导致“ Tiny Padhye”花pal在开花后不存在叶绿素。利用加权基因共表达网络分析法鉴定了百合中花色苷生物合成途径和叶绿素代谢的转录因子,并讨论了它们在百合双色花被发育中的作用。总之,这些广泛的转录组数据提供了一个平台,用于阐明百合中双色花被的分子机制,并为其他密切相关物种的相似研究提供了基础。

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