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Transcriptomic analysis of Lycium ruthenicum Murr. during fruit ripening provides insight into structural and regulatory genes in the anthocyanin biosynthetic pathway

机译:枸杞的转录组学分析。在果实成熟过程中可以深入了解花色苷生物合成途径中的结构和调控基因

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摘要

Fruit development in Lycium ruthenicum Murr. involves a succession of physiological and biochemical changes reflecting the transcriptional modulation of thousands of genes. Although recent studies have investigated the dynamic transcriptomic responses during fruit ripening in L. ruthenicum, most have been limited in scope, and thus systematic data representing the structural genes and transcription factors involved in anthocyanin biosynthesis are lacking. In this study, the transcriptomes of three ripening stages associated with anthocyanin accumulation, including S1 (green ripeness stage), S2 (skin color change) and S3 (complete ripeness stage) in L. ruthenicum were investigated using Illumina sequencing. Of a total of 43,573 assembled unigenes, 12,734 were differentially expressed during fruit ripening in L. ruthenicum. Twenty-five significantly differentially expressed structural genes (including PAL, C4H, 4CL, CHS, CHI, F3H, F3’H, F3’5’H, DFR, ANS and UFGT) were identified that might be associated with anthocyanin biosynthesis. Additionally, several transcription factors, including MYB, bHLH, WD40, NAC, WRKY, bZIP and MADS, were correlated with the structural genes, implying their important interaction with anthocyanin biosynthesis-related genes. Our findings provide insight into anthocyanin biosynthesis and regulation patterns in L. ruthenicum and offer a systematic basis for elucidating the molecular mechanisms governing anthocyanin biosynthesis in L. ruthenicum.
机译:枸杞的果实发育。涉及一系列生理和生化变化,反映了成千上万个基因的转录调控。尽管最近的研究已经研究了黑果枸杞果实成熟过程中的动态转录组反应,但大多数研究范围有限,因此缺乏代表花色苷生物合成所涉及的结构基因和转录因子的系统数据。在这项研究中,使用Illumina测序研究了与花青素积累相关的三个成熟阶段的转录组,包括S1(绿色成熟阶段),S2(皮肤颜色变化)和S3(完全成熟阶段)。在总共43,573个组装的单基因中,有12,734个在水果中成熟。 25个显着差异表达的结构基因(包括PAL,C4H,4CL,CHS,CHI,F3H,F3'H,F3'5'H,DFR, ANS UFGT )被确定可能与花青素的生物合成有关。另外,一些转录因子,包括MYB,bHLH,WD40,NAC,WRKY,bZIP和MADS,与结构基因相关,暗示它们与花青素生物合成相关基因的重要相互作用。我们的发现为 L 中的花色苷生物合成和调控模式提供了见识。 ruthenicum ,为阐明控制 L 中花色苷生物合成的分子机制提供了系统的基础。 ruthenicum

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