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Transcriptomic and metabolomic profiling provide novel insights into fruit development and flesh coloration in Prunus mira Koehne, a special wild peach species

机译:转录组和代谢物分析在特殊的野生桃子种类中提供了对果实发育和肉颜色的新颖洞察力,这是一种特殊的野生桃子

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摘要

Abstract Background Flesh color is one of the most important traits for the commercial value of peach fruit. To unravel the underlying regulatory network in Prunus mira, we performed an integrated analysis of the transcriptome and metabolome of 3 fruit types with various flesh pigmentations (milk-white, yellow and blood) at 3 developmental stages (pit-hardening, cell enlargement and fruit ripening). Results Transcriptome analysis showed that an intense transcriptional adjustment is required for the transition from the pit-hardening to the cell enlargement stage. In contrast, few genes were differentially expressed (DEGs) from the cell enlargement to the fruit ripening stage and importantly, the 3 fruits displayed diverse transcriptional activities, indicating that difference in fruit flesh pigmentations mainly occurred during the ripening stage. We further investigated the DEGs between pairs of fruit types during the ripening stage and identified 563 DEGs representing the ‘core transcriptome’ associated with major differentiations between the 3 fruit types, including flesh pigmentation. Meanwhile, we analyzed the metabolome, particularly, at the ripening stage and uncovered 40 differential metabolites (‘core metabolome’) between the 3 fruit types including 5 anthocyanins, which may be the key molecules associated with flesh coloration. Finally, we constructed the regulatory network depicting the interactions between anthocyanins and important transcripts involved in fruit flesh coloration. Conclusions The major metabolites and transcripts involved in fruit flesh coloration in P. mira were unraveled in this study providing valuable information which will undoubtedly assist in breeding towards improved fruit quality in peach.
机译:摘要背景肉颜色是桃子商业价值最重要的性状之一。为了解开Prunus Mira的潜在的监管网络,我们在3个发育阶段(坑硬化,细胞扩大和水果)进行了各种肉质色素沉着(乳白色,黄色和血液)的3种果实类型和代谢组的综合分析成熟)。结果转录组分析表明,从坑硬化到电池增大阶段的过渡需要强烈的转录调整。相反,很少有基因从细胞扩大到果实成熟阶段的差异表达(°),重要的是,3个果实显示不同的转录活动,表明在成熟阶段主要发生果实肉色素沉着的差异。我们进一步研究了成熟阶段成对的果实类型之间的果汁,并确定了与3种果实类型之间的主要分化相关的563次,其中包括肉色素沉着。同时,我们分析了代谢物,特别是在成熟阶段和未被覆盖的40种差分代谢物('核代谢物'),其中3种果实类型包括5个花青素,其可以是与肉颜色相关的关键分子。最后,我们构建了描绘了化花青素和果实血液着色中的重要转录物之间的相互作用的监管网络。结论在本研究中解开了P.Mira中果肉着色中参与果肉着色的主要代谢物和转录物,提供了有价值的信息,无疑将有助于促进桃子中提高的果实品质。

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