National Key Laboratory of Crop Biology, College of Horticulture Science, Shandong Agricultural University, Tai-An, Shandong, China.
Shandong institute of pomology, Tai-An, Shandong, China.
Plant Mol Biol. 2017 May;94(1-2):149-165. doi: 10.1007/s11103-017-0601-0. Epub 2017 Mar 12.
MdMYB16 forms homodimers and directly inhibits anthocyanin synthesis via its C-terminal EAR repressor. It weakened the inhibitory effect of MdMYB16 on anthocyanin synthesis when overexpressing MdbHLH33 in callus overexpressing MdMYB16. MdMYB16 could interact with MdbHLH33. Anthocyanins are strong antioxidants that play a key role in the prevention of cardiovascular disease, cancer, and diabetes. The germplasm of Malus sieversii f. neidzwetzkyana is important for the study of anthocyanin metabolism. To date, only limited studies have examined the negative regulatory mechanisms underlying anthocyanin synthesis in apple. Here, we analyzed the relationship between anthocyanin levels and MdMYB16 expression in mature Red Crisp 1-5 apple (M. domestica) fruit, generated an evolutionary tree, and identified an EAR suppression sequence and a bHLH binding motif of the MdMYB16 protein using protein sequence analyses. Overexpression of MdMYB16 or MdMYB16 without bHLH binding sequence (LBSMdMYB16) in red-fleshed callus inhibited MdUFGT and MdANS expression and anthocyanin synthesis. However, overexpression of MdMYB16 without the EAR sequence (LESMdMYB16) in red-fleshed callus had no inhibitory effect on anthocyanin. The yeast one-hybrid assay showed that MdMYB16 and LESMdMYB16 interacted the promoters of MdANS and MdUFGT, respectively. Yeast two-hybrid, pull-down, and bimolecular fluorescence complementation assays showed that MdMYB16 formed homodimers and interacted with MdbHLH33, however, the LBSMdMYB16 could not interact with MdbHLH33. We overexpressed MdbHLH33 in callus overexpressing MdMYB16 and found that it weakened the inhibitory effect of MdMYB16 on anthocyanin synthesis. Together, these results suggested that MdMYB16 and MdbHLH33 may be important part of the regulatory network controlling the anthocyanin biosynthetic pathway.
MdMYB16 形成同源二聚体,并通过其 C 端 EAR 抑制子直接抑制花青素的合成。在 MdMYB16 过表达的愈伤组织中过表达 MdbHLH33 时,它减弱了 MdMYB16 对花青素合成的抑制作用。MdMYB16 可以与 MdbHLH33 相互作用。花青素是一种强抗氧化剂,在预防心血管疾病、癌症和糖尿病方面发挥着关键作用。山荆子的种质资源对于花青素代谢的研究很重要。迄今为止,只有有限的研究探讨了苹果中花青素合成的负调控机制。在这里,我们分析了成熟的红脆 1-5 号苹果(M. domestica)果实中花青素水平与 MdMYB16 表达之间的关系,生成了进化树,并通过蛋白序列分析鉴定了 MdMYB16 蛋白的 EAR 抑制序列和 bHLH 结合基序。在红色肉质愈伤组织中过表达 MdMYB16 或缺乏 bHLH 结合序列的 MdMYB16(LBSMdMYB16)抑制 MdUFGT 和 MdANS 表达和花青素合成。然而,在红色肉质愈伤组织中过表达缺乏 EAR 序列的 MdMYB16(LESMdMYB16)对花青素没有抑制作用。酵母单杂交测定表明,MdMYB16 和 LESMdMYB16 分别与 MdANS 和 MdUFGT 的启动子相互作用。酵母双杂交、下拉和双分子荧光互补测定表明,MdMYB16 形成同源二聚体并与 MdbHLH33 相互作用,然而,LBSMdMYB16 不能与 MdbHLH33 相互作用。我们在过表达 MdMYB16 的愈伤组织中过表达 MdbHLH33,发现它减弱了 MdMYB16 对花青素合成的抑制作用。总之,这些结果表明,MdMYB16 和 MdbHLH33 可能是调控花青素生物合成途径的调控网络的重要组成部分。