Department of Horticulture, College of Agriculture, Shihezi University, Shihezi 832003, China.
Xinjiang Production and Construction Corps Key Laboratory of Special Fruits and Vegetables Cultivation Physiology and Germplasm Resources Utilization, Shihezi 832003, China.
Int J Mol Sci. 2022 Oct 21;23(20):12663. doi: 10.3390/ijms232012663.
The gene family plays an important role in plant growth and development as regulators involved in plant hormone signaling and metabolism. However, the Juglandaceae gene family remains to be studied. Here, we identified 15, 15, 19, and 20 genes in , , , and , respectively. The phylogeny shows that the Juglandaceae family GRF is divided into two subfamilies, the ε-group and the non-ε-group, and that selection pressure analysis did not detect amino acid loci subject to positive selection pressure. In addition, we found that the duplications of the Juglandaceae family genes were all segmental duplication events, and a total of 79 orthologous gene pairs and one paralogous homologous gene pair were identified in four Juglandaceae families. The ratios between these homologous gene pairs were further analyzed, and the values were all less than 1, indicating that purifying selection plays an important role in the evolution of the Juglandaceae family genes. The codon bias of genes in the GRF family of Juglandaceae species is weak, and is affected by both natural selection pressure and base mutation, and translation selection plays a dominant role in the mutation pressure in codon usage. Finally, expression analysis showed that genes play important roles in pecan embryo development and walnut male and female flower bud development, but with different expression patterns. In conclusion, this study will serve as a rich genetic resource for exploring the molecular mechanisms of flower bud differentiation and embryo development in Juglandaceae. In addition, this is the first study to report the gene family in the Juglandaceae family; therefore, our study will provide guidance for future comparative and functional genomic studies of the gene family in the Juglandaceae specie.
基因家族作为参与植物激素信号转导和代谢的调节剂,在植物生长发育中起着重要作用。然而,胡桃科的基因家族仍有待研究。在这里,我们分别在、、、和中鉴定到 15、15、19 和 20 个基因。系统发育分析表明,胡桃科的 GRF 分为两个亚家族,ε-组和非-ε-组,并且选择压力分析没有检测到受正选择压力影响的氨基酸位点。此外,我们发现胡桃科家族基因的复制都是片段复制事件,在四个胡桃科家族中共鉴定到 79 对同源基因对和一个基因对。进一步分析这些同源基因对的比值,发现这些比值均小于 1,表明在胡桃科家族基因的进化过程中,纯化选择起着重要作用。胡桃科物种的 GRF 家族基因的密码子偏性较弱,受到自然选择压力和碱基突变的双重影响,翻译选择在密码子使用中的突变压力中起主导作用。最后,表达分析表明,基因在山核桃胚胎发育以及核桃雄花和雌花芽发育中发挥重要作用,但表达模式不同。总之,本研究将为探索胡桃科植物芽分化和胚胎发育的分子机制提供丰富的遗传资源。此外,这是首次在胡桃科中报道基因家族的研究;因此,我们的研究将为未来胡桃科物种的基因家族的比较和功能基因组学研究提供指导。