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首页> 外文期刊>BMC Plant Biology >Transcriptome regulation of carotenoids in five flesh-colored watermelons ( Citrullus lanatus )
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Transcriptome regulation of carotenoids in five flesh-colored watermelons ( Citrullus lanatus )

机译:五种肉状西瓜(柑橘类Lanatus)中类胡萝卜素的转录组调节

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Fruit flesh color in watermelon (Citrullus lanatus) is a great index for evaluating the appearance quality and a key contributor influencing consumers’ preferences. But the molecular mechanism of this intricate trait remains largely unknown. Here, the carotenoids and transcriptome dynamics during the fruit development of cultivated watermelon with five different flesh colors were analyzed. A total of 13 carotenoids and 16,781 differentially expressed genes (DEGs), including 1295 transcription factors (TFs), were detected in five watermelon genotypes during the fruit development. The comprehensive accumulation patterns of carotenoids were closely related to flesh color. A number of potential structural genes and transcription factors were found to be associated with the carotenoid biosynthesis pathway using comparative transcriptome analysis. The differentially expressed genes were divided into six subclusters and distributed in different GO terms and metabolic pathways. Furthermore, we performed weighted gene co-expression network analysis and predicted the hub genes in six main modules determining carotenoid contents. Cla018406 (a chaperone protein dnaJ-like protein) may be a candidate gene for β-carotene accumulation and highly expressed in orange flesh-colored fruit. Cla007686 (a zinc finger CCCH domain-containing protein) was highly expressed in the red flesh-colored watermelon, maybe a key regulator of lycopene accumulation. Cla003760 (membrane protein) and Cla021635 (photosystem I reaction center subunit II) were predicted to be the hub genes and may play an essential role in yellow flesh formation. The composition and contents of carotenoids in five watermelon genotypes vary greatly. A series of candidate genes were revealed through combined analysis of metabolites and transcriptome. These results provide an important data resource for dissecting candidate genes and molecular basis governing flesh color formation in watermelon fruit.
机译:西瓜(CitrullusLanatus)的果实塑料颜色是评估外观质量和影响消费者偏好的关键贡献者的重要指标。但这种复杂性状的分子机制仍然很大程度上是未知的。在此,分析了在具有五种不同肉颜色的栽培西瓜果实开发过程中的类胡萝卜素和转录组动力学。在水果发育过程中,共有13种类胡萝卜素和16,781个差异表达基因(DEGS),包括1295种转录因子(TFS),在五种西瓜基因型中检测到。类胡萝卜素的综合积累模式与血性颜色密切相关。发现许多潜在的结构基因和转录因子与使用比较转录组分析与类胡萝卜素生物合成途径有关。将差异表达的基因分成六个亚壳蛋白,并以不同的GO术语和代谢途径分布。此外,我们进行了加权基因共表达网络分析,并在确定类胡萝卜素内容物中的六个主要模块中预测了轮毂基因。 CLA018406(伴侣蛋白DNAJ样蛋白)可以是β-胡萝卜素积累的候选基因,并且在橙色填充水果中高表达。 CLA007686(含锌手指CCCH结构域蛋白质)在红色肉状西瓜中高度表达,也许是番茄红素积累的关键调节器。预测CLA003760(膜蛋白)和CLA021635(光系统I反应中心亚基II)是集线器基因,可在黄色肉形成中发挥重要作用。五种西瓜基因型中的类胡萝卜素的组成和含量大大变化。通过组合分析代谢物和转录组的组合分析揭示了一系列候选基因。这些结果提供了用于解剖候选基因和用于西瓜果实肉体颜色形成的重要数据资源。

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