代谢组
转录组
花青素
生物
生物合成
遗传学
基因
代谢组学
植物
生物信息学
基因表达
作者
Xuyan Li,Shouwen Wang,Hongxue Li,Fu Qian,Haiyang Wang,Wang JingYing,Lulu Zhai,Baosheng Shi,Junwei Huo,Shaomin Bian
标识
DOI:10.1016/j.hpj.2025.02.004
摘要
Anthocyanins are vital secondary metabolites contributing to fruit pigmentation and antioxidative properties. While light is a well-known regulator of anthocyanin biosynthesis, the molecular basis of light-independent anthocyanin accumulation remains underexplored. In this study, integrated analysis of metabolome and transcriptome showed that the anthocyanin content in blueberry ( Vaccinium corymbosum ‘Bluetta’) fruit was slightly decreased by light-impermeable bagging treatment, while anthocyanin biosynthetic genes were transcriptionally inhibited to different levels, suggesting a slight influence of the bagging treatment on anthocyanin accumulation. Further observation showed that fruit bagging did not alter ethylene production but decreased ABA content. Noticeably, two VcMYBA/MYB1 s were not transcriptionally altered by the light-impermeable bagging treatment. Consistently, histochemical GUS analysis and pharmacological manipulation suggested light-independent and ethylene-inducible expression of VcMYBA/MYB1 . Moreover, WGCNA analysis revealed 3 759 genes positively associated with MYBA/MYB1 such as ethylene-associated genes, etc. Additionally, VcbZIP55 s and VcCOP1 s were activated and inactivated by the bagging treatment, respectively. These findings provided a framework of light-independent anthocyanin biosynthesis in blueberry fruit.
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