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Comparative transcriptome and proteome profiling of two Citrus sinensis cultivars during fruit development and ripening

机译:两个柑桔品种在果实发育和成熟过程中的转录组和蛋白质组学分析

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Transcriptome and proteome analyses on fruit pulp from the blood orange ‘Zaohong’ and the navel orange ‘twenty-first century’ were performed to study Citrus sinensis quality-related molecular changes during consecutive developmental periods, including young fruit, fruit-coloring onset and fruit delayed-harvest for two months, during which fruit remained on the trees. The time-course analysis for the fruit developmental periods indicated a complex, dynamic gene expression pattern, with the numbers of differentially expressed genes (DEGs) between the two cultivars being 119, 426 and 904 at the three continuous stages tested during fruit development and ripening. The continuous increase in total soluble solids over the course of fruit development was correlated with up-regulated sucrose phosphate synthase (SPS) transcription levels in both cultivars. Eleven differentially expressed genes between the two cultivars involved in the flavonoid pathway were significantly enriched at the onset of the fruit-coloring stage when anthocyanins were detected in blood orange alone. Among 5185 proteins, 65 up-regulated and 29 down-regulated proteins were co-expressed with their cognate mRNAs with significant transcription and protein expression levels when the fruits from the two cultivars were compared at the fruit delayed-harvest stage. Additionally, important genes participating in the γ-aminobutyric acid (GABA) shunt were activated in blood orange at two significant expression levels in the fruit delayed-harvest stage. Thus, organic acids in fruit continuously decreased during this stage. This research was the first to provide a more comprehensive understanding of the differentially expressed genes involved in anthocyanin, sucrose and citrate metabolism at the transcriptome and proteome levels in C. sinensis, especially during the fruit delayed-harvest stage.
机译:对血橙“枣红”和脐橙“二十一世纪”的果肉进行了转录组和蛋白质组学分析,以研究柑橘在连续发育期间与品质相关的分子变化,包括幼果,果实上色和果实延迟收获两个月,在此期间树上仍留有果实。水果发育时期的时程分析表明,存在一个复杂的动态基因表达模式,在水果发育和成熟的三个连续阶段中,两个品种之间的差异表达基因(DEG)数量分别为119、426和904。 。果实发育过程中总可溶性固形物的持续增加与两个品种中蔗糖磷酸合酶(SPS)转录水平的上调相关。当仅在血橙中检测到花青素时,在果实着色阶段开始时,参与类黄酮途径的两个品种之间的11个差异表达基因显着富集。在5185种蛋白质中,当比较两个品种的果实在果实延迟收获期时,它们的同源mRNA共表达65种上调蛋白质和29种下调蛋白质及其同源mRNA。此外,在水果延迟收获阶段,参与γ-氨基丁酸(GABA)分流的重要基因在血橙中以两个重要的表达水平被激活。因此,在此阶段,水果中的有机酸持续下降。这项研究是第一个更全面地了解中华绒螯蟹的转录组和蛋白质组水平,特别是在水果延迟收获阶段的花色苷,蔗糖和柠檬酸盐代谢中涉及的差异表达基因的研究。

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