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首页> 外文期刊>Journal of Experimental Botany >An integrative analysis of the transcriptome and proteome of the pulp of a spontaneous late-ripening sweet orange mutant and its wild type improves our understanding of fruit ripening in citrus.
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An integrative analysis of the transcriptome and proteome of the pulp of a spontaneous late-ripening sweet orange mutant and its wild type improves our understanding of fruit ripening in citrus.

机译:对自发晚熟甜橙突变体及其野生型果肉的转录组和蛋白质组进行综合分析,提高了我们对柑橘果实成熟的理解。

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摘要

Fruit ripening is a complex, genetically programmed process that occurs in conjunction with the differentiation of chloroplasts into chromoplasts and involves changes to the organoleptic properties of the fruit. In this study, an integrative analysis of the transcriptome and proteome was performed to identify important regulators and pathways involved in fruit ripening in a spontaneous late-ripening mutant ('Fengwan' orange, Citrus sinensis L. Osbeck) and its wild type ('Fengjie 72-1'). At the transcript level, 628 genes showed a 2-fold or more expression difference between the mutant and wild type as detected by an RNA sequencing approach. At the protein level, 130 proteins differed by 1.5-fold or more in their relative abundance, as indicated by iTRAQ (isobaric tags for relative and absolute quantitation) analysis. A comparison of the transcriptome and proteome data revealed some aspects of the regulation of metabolism during orange fruit ripening. First, a large number of differential genes were found to belong to the plant hormone pathways and cell-wall-related metabolism. Secondly, we noted a correlation between ripening-associated transcripts and sugar metabolites, which suggests the importance of these metabolic pathways during fruit ripening. Thirdly, a number of genes showed inconsistency between the transcript and protein level, which is indicative of post-transcriptional events. These results reveal multiple ripening-associated events during citrus ripening and provide new insights into the molecular mechanisms underlying citrus ripening regulatory networks.
机译:果实成熟是一个复杂的,经过基因程序控制的过程,与叶绿体分化为色体有关,并且涉及果实感官特性的变化。在这项研究中,对转录组和蛋白质组进行了综合分析,以确定了自发晚熟突变体(“凤湾”橙,柑桔L.Osbeck)及其野生型(“凤姐”)中与果实成熟有关的重要调控因子和途径。 72-1')。在转录本水平上,通过RNA测序方法检测到,628个基因在突变型和野生型之间显示出2倍或更多的表达差异。在蛋白质水平上,130种蛋白质的相对丰度相差1.5倍或更多,如iTRAQ(相对和绝对定量的等压标记)分析所示。转录组和蛋白质组数据的比较显示了橙色水果成熟过程中代谢调控的某些方面。首先,发现大量的差异基因属于植物激素途径和细胞壁相关的代谢。其次,我们注意到成熟相关的转录本与糖代谢产物之间的相关性,这表明这些代谢途径在果实成熟过程中的重要性。第三,许多基因显示出转录物和蛋白质水平之间的不一致,这表明转录后事件。这些结果揭示了柑橘成熟过程中的多个与成熟相关的事件,并为理解柑橘成熟调控网络的分子机制提供了新见解。

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