Molecular Crop Research Unit, Department of Biochemistry, Faculty of Science, Chulalongkorn University, 254 Phayathai Road, Bangkok, 10330, Thailand.
Omics Sciences and Bioinformatics Center, Chulalongkorn University, 254 Phayathai Road, Bangkok, 10330, Thailand.
Sci Rep. 2019 Aug 20;9(1):12109. doi: 10.1038/s41598-019-48601-7.
DNA binding with one finger (Dof) proteins constitute a ubiquitous plant-specific transcription factor (TF) family associated with diverse biological processes, including ripening. We conducted a genome-wide analysis of durian (Durio zibethinus Murr.) and identified 24 durian Dofs (DzDofs), 15 of which were expressed in fruit pulp. Gene expression analysis revealed differential expression of DzDofs during ripening in two commercial durian cultivars from Thailand, Monthong and Chanee. Comparing the expression levels of fruit pulp-expressed DzDofs between cultivars revealed ten potential cultivar-dependent Dofs, among which DzDof2.2 showed a significantly greater fold increase at every ripening stage in Chanee than in Monthong. The prediction of DzDof2.2's function based on its orthologue in Arabidopsis revealed its possible role in regulating auxin biosynthesis. We observed significantly higher auxin levels during ripening of Chanee than Monthong which concurred with the greater expression of auxin biosynthetic genes. Transient expression of DzDof2.2 in Nicotiana benthamiana significantly upregulated the expression levels of auxin biosynthetic genes. Higher expression levels of DzDof2.2 in Chanee would enhance auxin levels through transcriptional regulation of auxin biosynthetic genes. Higher auxin levels in Chanee could activate auxin-mediated transcription, contributing to its faster ripening compared to Monthong through earlier initiation of the ethylene response (auxin-ethylene crosstalk).
DNA 结合单指(Dof)蛋白构成了一种普遍存在的植物特异性转录因子(TF)家族,与多种生物学过程有关,包括成熟。我们对榴莲(Durio zibethinus Murr.)进行了全基因组分析,鉴定出 24 个榴莲 Dof(DzDofs),其中 15 个在果肉中表达。基因表达分析显示,在泰国两个商业榴莲品种芒东和钱尼的成熟过程中,DzDofs 存在差异表达。比较两个品种果肉表达的 DzDofs 的表达水平,发现了 10 个潜在的品种依赖的 Dofs,其中 DzDof2.2 在钱尼的每个成熟阶段的表达水平都显著高于芒东。根据其在拟南芥中的同源物预测 DzDof2.2 的功能,表明其可能在调节生长素生物合成中起作用。我们观察到钱尼在成熟过程中的生长素水平明显高于芒东,这与生长素生物合成基因的表达增加一致。DzDof2.2 在本氏烟中的瞬时表达显著上调了生长素生物合成基因的表达水平。DzDof2.2 在钱尼中的更高表达水平将通过生长素生物合成基因的转录调控来增强生长素水平。钱尼中更高的生长素水平可以通过生长素介导的转录激活来激活,从而通过更早地启动乙烯反应(生长素-乙烯相互作用)来促进其比芒东更快成熟。