State Key Laboratory of Crop Biology, Tai-An, Shandong 271018, China; National Research Center for Apple Engineering and Technology, Tai-An, Shandong 271018, China; College of Horticulture Science and Engineering, Shandong Agricultural University, Tai-An, Shandong 271018, China.
College of Biological Science and Technology, Beijing Forestry University, Beijing 100083, China.
Plant Physiol Biochem. 2013 Jun;67:169-77. doi: 10.1016/j.plaphy.2013.02.031. Epub 2013 Mar 23.
Cryptochromes are blue-light photoreceptors involved in regulating many aspects of plant growth and development. Investigations of cryptochromes in plants have largely focused on Arabidopsis (Arabidopsis thaliana), tomato (Solanum lycopersicum), rice (Oryza sativa) and pea (Pisum sativum). Here, we isolated the cryptochrome 1 gene from apple (Malus domestica) (MdCRY1) and analyzed its function in transgenic Arabidopsis. The predicted MdCRY1 protein was most closely homologous to strawberry CRY1. In terms of transcript levels, MdCRY1 expression was up-regulated by light. The function of MdCRY1 was analyzed through heterologous expression in Arabidopsis. Overexpression of MdCRY1 in Arabidopsis is able to rescue the cry1 mutant phenotype, inhibit hypocotyl elongation, promote root growth, and enhance anthocyanin accumulation in wild-type seedlings under blue light. These data provide functional evidence for a role of MdCRY1 in controlling photomorphogenesis under blue light and indicate that CRY1 function is conserved between Arabidopsis and apple. Furthermore, we found that MdCRY1 interacts with AtCOP1 in both yeast and onion cells. This interaction may represent an important regulatory mechanism in blue-light signaling pathway in apple.
隐花色素是参与调控植物生长发育多个方面的蓝光受体。植物隐花色素的研究主要集中在拟南芥(Arabidopsis thaliana)、番茄(Solanum lycopersicum)、水稻(Oryza sativa)和豌豆(Pisum sativum)上。在这里,我们从苹果(Malus domestica)中分离出隐花色素 1 基因(MdCRY1),并分析了其在转基因拟南芥中的功能。预测的 MdCRY1 蛋白与草莓 CRY1 最接近同源。在转录水平上,MdCRY1 的表达受光的上调。通过在拟南芥中异源表达分析了 MdCRY1 的功能。在拟南芥中过表达 MdCRY1 能够拯救 cry1 突变体的表型,抑制下胚轴伸长,促进根生长,并在蓝光下增强野生型幼苗中的花青素积累。这些数据为 MdCRY1 在蓝光下控制光形态建成中的作用提供了功能证据,并表明 CRY1 功能在拟南芥和苹果之间是保守的。此外,我们发现 MdCRY1 在酵母和洋葱细胞中与 AtCOP1 相互作用。这种相互作用可能代表了苹果中蓝光信号通路的一个重要调控机制。