生物
MYB公司
突变体
转录组
基因
花青素
遗传学
类黄酮
调节基因
拟南芥
转录因子
功能(生物学)
植物
基因表达
生物化学
抗氧化剂
作者
Yinchao Zhang,Xiaoling Qu,Xiuchun Li,Min Ren,Ying Tong,Xiuming Wu,Yangyang Sun,Fengyan Wu,Aiguo Yang,Shuai Chen,Yinchao Zhang,Xiaoling Qu,Xiuchun Li,Min Ren,Ying Tong,Xiuming Wu,Yangyang Sun,Fengyan Wu,Aiguo Yang,Shuai Chen
出处
期刊:Genomics
[Elsevier BV]
日期:2023-10-17
卷期号:115 (6): 110728-110728
被引量:11
标识
DOI:10.1016/j.ygeno.2023.110728
摘要
The anthocyanin is a protective substance in various plants, and plays important roles in resisting to low-temperature. Here, we explored transcriptome analysis of pink flower (as CK) and the natural mutant red flower (as research objects) under low-temperature conditions, and aimed to reveal the potential functions of anthocyanins and anthocyanin-related regulatory factors in resistance to low-temperature. Our results showed that most of the differentially expressed genes (DEGs) encoding key enzymes in the late stage of anthocyanin metabolism in the mutant were significantly up-regulated. Meanwhile, several genes significantly differentially expressed in CK or mutant were obtained by classification and analysis of transcription factors (TFs), phytohormones and osmoregulators. Additionally, WGCNA was carried out to mine hub genes resistanted to low-temperature stress in flavonoid pathway. Finally, one UFGT family gene, three MYB and one bHLH were obtained as the future hub genes of this study. Combined with the above information, we concluded that the ability of the red flower mutant to grow and develop normally at low-temperatures was the result of a combination of flavonoids and cold resistance genes.
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