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Transcriptome sequencing reveals role of light in promoting anthocyanin accumulation of strawberry fruit

机译:转录组测序显示光在促进草莓果实的花青素积累中的作用

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摘要

The woodland strawberry, Fragaria vesca, is a model plant for the diverse Rosaceae family, which contains many valuable fruit and ornamental crops. Light is an important external environment factor which influences all aspects of plant growth and development, including fruit ripening. Transcription regulation of light will provide insights into effect of light for fruit ripening. We treat strawberry fruit with dark or light, and by the RNA-Seq method, compare transcriptional level between dark-treated and light-treated strawberry fruits. Additionally, we detect anthocyanin and sugar accumulation in two-treated conditions of fruits. Moreover, we detect the protein change of FvMYB10, a key regulator of anthocyanin biosynthesis, under dark and light. Light can promote anthocyanin and soluble sugar accumulation in mature fruit, and also increases the expression of aroma-related genes and stabilizes FvMYB10 protein. Our findings reveal that light is essential for anthocyanin and sugar accumulation and regulates FvMYB10 at transcriptional level and post-translation level.
机译:Woodland Strawberry,Fragaria Vesca是多元化的Rosaceae家族的模型植物,其中包含许多有价值的水果和观赏作物。光线是一种重要的外部环境因素,影响植物生长和发展的所有方面,包括果实成熟。光线的转录调节将为光线效果提供洞察力的洞察力。我们用黑暗或光线和RNA-SEQ方法对待草莓果实,比较黑暗处理和轻微的草莓水果之间的转录水平。此外,我们在两种处理的水果条件下检测花青素和糖积聚。此外,我们检测到暗和光下的花青素生物合成的关键调节剂FVMYB10的蛋白质变化。光可以促进花青素和可溶性糖积累成熟的果实,并增加了与芳香相关基因的表达并稳定了FVMYB10蛋白。我们的研究结果表明,光对于花青素和糖积累是必不可少的,并在转录水平和后翻转水平下调节FVMYB10。

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