梨
花青素
抑制因子
激活剂(遗传学)
生物
MYB公司
异位表达
生物化学
基因沉默
基因
植物
基因表达
作者
Guangyan Yang,Zhaolong Xue,Kui Lin-Wang,Guosong Chen,Yongqi Zhao,Yaojun Chang,Shaozhuo Xu,Manyi Sun,Cheng Xue,Jiaming Li,Andrew C. Allan,Richard V. Espley,Jun Wu
标识
DOI:10.1186/s43897-024-00102-6
摘要
Abstract The color of red-skinned pear ( Pyrus spp.) is primarily attributed to accumulation of anthocyanins, which provide nutritional benefits for human health and are closely associated with the commercial value of fruits. Here, we reported the functional characterization of a R2R3-MYB repressor PyMYB107, which forms an ‘activator-repressor’ loop to control anthocyanin accumulation in the red-skinned pear. PyMYB107 overexpression inhibited anthocyanin biosynthesis in both pear calli and fruits, while virus-induced gene silencing of PyMYB107 increased anthocyanin accumulation in pear fruits. Furthermore, ectopic expression of PyMYB107 decreased anthocyanin accumulation in tomato, strawberry and tobacco. PyMYB107 can competitively bind to PybHLH3 with PyMYB10/MYB114, thereby suppressing the transcriptional activation of key anthocyanin biosynthesis genes, PyANS and PyUFGT . Site-directed mutagenesis showed that mutations within the R3 domain and EAR motif of PyMYB107 eliminated its repressive activity. Additionally, PyMYB107 exhibited a comparable expression pattern to PyMYB10 / MYB114 and was transcriptionally activated by them. Our finding advanced comprehension of the repression mechanism underlying anthocyanin accumulation, providing valuable molecular insights into improving quality of pear fruits.
科研通智能强力驱动
Strongly Powered by AbleSci AI