首页> 外文期刊>Frontiers in Plant Science >Regulation of Fig ( Ficus carica L.) Fruit Color: Metabolomic and Transcriptomic Analyses of the Flavonoid Biosynthetic Pathway
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Regulation of Fig ( Ficus carica L.) Fruit Color: Metabolomic and Transcriptomic Analyses of the Flavonoid Biosynthetic Pathway

机译:无花果果实颜色的调节:类黄酮生物合成途径的代谢组学和转录组学分析

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Combined metabolomic and transcriptomic analyses were carried out with fig cultivar Green Peel and its color mutant “Purple Peel.” Five and twenty-two metabolites were identified as having significantly different contents between fruit peels of the two cultivars at young and mature stages, respectively. Cyanidin O-malonylhexoside demonstrated a 3,992-fold increase in the mature purple peel, the first identification of a major cyanidin in fig fruit; cyanidin 3-O-glucoside, cyanidin O-malonylhexoside O-hexoside and cyanidin-3,5-O-diglucoside were upregulated 100-fold, revealing the anthocyanins underlying the purple mutation. Beyond the visible differences, there was very significant accumulation of the colorless flavonoids procyanidin B1, luteolin-3′,7-di-O-glucoside, epicatechin and quercetin-3-O-rhamnoside in the mature “Purple Peel” compared to “Green Peel.” At the young stage, only cyanidin O-malonylhexoside, cyanidin O-malonylhexoside O-hexoside and esculetin were upregulated a few fold in the mutant. Transcriptome analysis revealed a downregulated expression trend of genes encoding phenylpropanoid and flavonoid biosynthetic pathway enzyme in the young “Purple Peel” compared to the young “Green Peel,” whereas significant and simultaneous upregulation was revealed in almost all of the flavonoid and anthocyanin pathway components and relevant transcription factors in the mature-stage mutant. The role of R2R3-MYB transcription factors in the color morph mutation and its possible relation to the activity of retrotransposons are discussed. Moreover, large-scale upregulation of small heat-shock protein genes was found in the mature mutant. This is the first work to reveal comprehensive metabolome and transcriptome network changes underlying a fig mutation in a single horticultural attribute, and its profound effects on fruit nutrition and quality.
机译:用无花果品种Green Peel及其颜色突变体“ Purple Peel”进行了代谢组学和转录组学分析。两种和两种品种的果皮在年轻和成熟阶段的代谢物含量分别被确定为五种和二十二种。 Cyanidin O-丙二酰基己糖苷在成熟的紫色果皮中显示出3,992倍的增加,这是无花果果实中主要花青素的首次鉴定。花青素3-O-葡糖苷,花青素O-丙二酰基己糖苷O-己糖苷和花青素3,5-O-二葡糖苷被上调100倍,揭示了紫色突变背后的花色苷。除了可见的差异外,与“绿色果皮”相比,成熟的“紫色果皮”中无色类黄酮原花青素B1,木犀草素3',7-二-O-葡萄糖苷,表儿茶素和槲皮素-3-O-鼠李糖苷的积累非常明显。剥。”在年轻阶段,只有花青素O-丙二酰基己糖苷,花青素O-丙二酰基己糖苷O-己糖苷和七叶皂苷上调了几倍。转录组分析显示,与年轻的“绿色果皮”相比,年轻的“紫色果皮”中编码苯丙烷和类黄酮生物合成途径酶的基因的表达趋势下调,而几乎所有的类黄酮和花色素苷途径成分以及成熟期突变体中的相关转录因子。讨论了R2R3-MYB转录因子在颜色形态突变中的作用及其与逆转座子活性的可能关系。此外,在成熟的突变体中发现了小的热休克蛋白基因的大规模上调。这是揭示单一园艺属性中无花果突变基础的综合代谢组和转录组网络变化的第一项工作,并且其对果实营养和品质的深远影响。

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