Long non-coding RNA RsLNC2361 positively regulate anthocyanin accumulation in radish

花青素 生物 苯丙素 代谢组 转录组 萝卜 十字花科 生物化学 核糖核酸 小桶 类黄酮生物合成 类黄酮 基因沉默 代谢组学 RNA序列 基因 生物合成 查尔酮合酶 RNA沉默 植物 基因表达 代谢途径 拟南芥 细胞生物学 植物生理学 类胡萝卜素 遗传学 内生 基因表达调控 基因敲除
作者
Haiyi Liu,Xiaobo Luo,Linjun Wu,Guangqian Yang,Xianping Jiang,Dan Li,Maojun Mao,Yun Pei,X X Xu,Wanping Zhang
出处
期刊:BMC Plant Biology [BioMed Central]
标识
DOI:10.1186/s12870-026-08909-9
摘要

BACKGROUND: Radish (Raphanus sativus L.) is a crucial vegetable crop in the Brassicaceae family, which has a high nutritional, medicinal, and dietary therapeutic values. Radish varieties rich in anthocyanins are favored by consumers because of their bright color and high nutritional value. However, the reports on the role of lncRNA in regulating anthocyanin accumulation in radishes are relatively rare. RESULTS: Based on our previous LncRNA sequencing findings, the RsLNC2361 was differentially expressed in red and white skin radish. The results revealed that overexpression of RsLNC2361 can promote anthocyanin accumulation in radish leaves, whereas silencing of RsLNC2361 can decrease the anthocyanin content in radish flesh root using VIGS technology, indicating that RsLNC2361 has a positive regulatory effect on anthocyanin accumulation in radish. Overexpression of RsLNC2361 increased the expresssion anthocyanin structural genes, whereas silencing of RsLNC2361 had opposite effect. A total of 5,032 DEGs and 273 differental metabolites were identified in RsLNC2361-pTY and pTY (control) by transcriptome and metabolome sequencing, respectively. Combined metabolomic and transcriptomic analyses showed KEGG pathway associated with flavonoid biosynthesis and phenylpropanoid biosynthesis was commonly enriched. The results found that the miRNA858 was predicted to target RsLNC2361, with expectation values of 4.0. Therefore, we speculate that lncRNA participates in the accumulation of anthocyanins in radishes through the regulatory mechanism of the competitive endogenous RNA (ceRNA) module. CONCLUSIONS: This study provides a new perspective on the regulation of anthocyanin biosynthesis by non-coding RNA and offers a theoretical basis for the breeding of high-anthocyanin radish.
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