Key Laboratory of Horticultural Plant Biology of Ministry of Education, Huazhong Agricultural University, Wuhan, 430070, China.
Plant Cell Environ. 2019 Nov;42(11):3092-3104. doi: 10.1111/pce.13609. Epub 2019 Aug 1.
Blood orange is generally recognized to accumulate anthocyanins in its fruit pulp in a cold-inducible manner. We observed that the fruit peel of blood orange can also accumulate anthocyanins under ample light conditions. Interestingly, purple pummelo can accumulate anthocyanins only in its fruit peel but not in its pulp. The mechanism underlying the tissue specificity of anthocyanin accumulation in citrus is unknown. Here, we show that the active promoter of Ruby1, a key activator of anthocyanin biosynthesis, is also light inducible in addition to its already known cold inducibility in blood orange. Electrophoretic mobility shift assays and transient expression assays showed that HY5 positively regulated the transcription of Ruby1 by binding to the G-box motif (CACGTC). The tissue specificity of anthocyanin accumulation in the peel of purple pummelo may be due to the lack of a low temperature responsive element and a MYC binding site, which were shown to be involved in cold inducibility of CsRuby1 in blood orange by insertion of a long terminal repeat type retrotransposon in the promoter. These results bring new insights into the regulatory mechanism of anthocyanin biosynthesis in response to environmental stimuli and provide cis-elements for genetic improvement of anthocyanin-stable fruits rich in antioxidant metabolites.
血橙通常被认为以冷诱导的方式在其果肉中积累花青素。我们观察到,血橙的果皮在充足的光照条件下也可以积累花青素。有趣的是,紫色柚子只能在果皮中积累花青素,而不在果肉中积累。柑橘类花青素积累的组织特异性的机制尚不清楚。在这里,我们表明 Ruby1 的活性启动子,花青素生物合成的关键激活剂,除了在血橙中已经知道的冷诱导外,也是光诱导的。电泳迁移率变动分析和瞬时表达分析表明,HY5 通过结合 G 盒基序(CACGTC)正向调节 Ruby1 的转录。紫色柚子果皮中花青素积累的组织特异性可能是由于缺乏低温反应元件和 MYC 结合位点,通过在启动子中插入长末端重复型反转录转座子,证明这两个元件参与了血橙中 CsRuby1 的冷诱导。这些结果为花青素生物合成对环境刺激的调控机制提供了新的见解,并为富含抗氧化代谢物的花青素稳定果实的遗传改良提供了顺式元件。