Bai Jianrong, Sun Fengjie, Wang Minglei, Su Liang, Li Rui, Caetano-Anollés Gustavo
Institute of Crop Sciences, Shanxi Academy of Agricultural Sciences, Taiyuan, 030031, Shanxi, China.
School of Science and Technology, Georgia Gwinnett College, Lawrenceville, GA, 30043, USA.
Genetica. 2019 Feb;147(1):1-9. doi: 10.1007/s10709-018-0042-y. Epub 2018 Sep 21.
The MYB-CC gene family encode proteins that harbor a combination of characteristic myeloblastosis (MYB) and coiled-coil (CC) domain structures. Some MYB-CC genes have been demonstrated to represent transcription factors regulating phosphate uptake and controlling the starvation response in plants. Despite their physiological importance, a systematic analysis of MYB-CC genes has not been reported in maize. In our study, we identified and characterized maize MYB-CC genes at whole-genome level. A total of 12 maize MYB-CC genes (ZmMYB-CC1 to ZmMYB-CC12) were identified located in six out of the 10 chromosomes of maize. Their gene structures showed similar splicing patterns and large variations of intron length. Multiple sequence alignments revealed that all MYB-CC proteins in maize shared conserved sequence cores corresponding to the MYB and CC domains, respectively. The family expanded in maize partly due to tandem and segmental duplication events. Phylogenetic analysis of MYB-CC genes indicated that the MYB-CC gene family can be divided into two subfamilies and that gene members with same functions were found in the same groups. Results provide a very useful reference for cloning and functional analysis of PHR-like genes in maize and suggest a method to predict and select appropriate candidate genes for functional genomic analysis of useful traits in crop plants.
MYB-CC基因家族编码的蛋白质具有成髓细胞瘤(MYB)和卷曲螺旋(CC)结构域特征的组合。一些MYB-CC基因已被证明是调节植物磷吸收和控制饥饿反应的转录因子。尽管它们具有重要的生理意义,但尚未见对玉米MYB-CC基因进行系统分析的报道。在我们的研究中,我们在全基因组水平上鉴定并表征了玉米MYB-CC基因。共鉴定出12个玉米MYB-CC基因(ZmMYB-CC1至ZmMYB-CC12),它们位于玉米10条染色体中的6条上。它们的基因结构显示出相似的剪接模式和内含子长度的巨大差异。多序列比对显示,玉米中的所有MYB-CC蛋白分别共享对应于MYB和CC结构域的保守序列核心。该家族在玉米中的扩展部分归因于串联重复和片段重复事件。MYB-CC基因的系统发育分析表明,MYB-CC基因家族可分为两个亚家族,并且在同一组中发现了具有相同功能的基因成员。研究结果为玉米中PHR样基因的克隆和功能分析提供了非常有用的参考,并提出了一种预测和选择合适候选基因用于作物植物有益性状功能基因组分析的方法。