College of Horticulture, Northwest A&F University, Yangling 712100, China.
Int J Mol Sci. 2024 Oct 19;25(20):11247. doi: 10.3390/ijms252011247.
The AP2/ERF family constitutes one of the largest groups of transcription factors in the Solanaceae. AP2/ERF contributes to various plant biological processes, including growth, development, and responses to various stresses. The origins and functional diversification of AP2/ERF within the Solanaceae family remain poorly understood, primarily because of the complex interactions between whole-genome duplications (WGDs) and tandem duplications. In this study, a total of 1282 AP2/ERF proteins are identified from 7 Solanaceae genomes. The amplification of AP2/ERF genes was driven not only by WGDs but also by the presence of clusters of tandem duplicated genes. The conservation of synteny across different chromosomes provides compelling evidence for the impact of the WGD event on the distribution pattern of AP2/ERF genes. Distinct expression patterns suggest that the multiple copies of AP2/ERF genes evolved in different functional directions, catalyzing the diversification of roles among the duplicated genes, which was of great significance for the adaptability of Solanaceae. Gene silencing and overexpression assays suggest that ERF-1 members' role in regulating the timing of floral initiation in . Our findings provide insights into the genomic origins, duplication events, and function divergence of the Solanaceae AP2/ERF.
AP2/ERF 家族是茄科植物中最大的转录因子家族之一。AP2/ERF 参与了各种植物的生物过程,包括生长、发育和对各种胁迫的反应。AP2/ERF 在茄科家族中的起源和功能多样化仍然知之甚少,主要是因为全基因组复制 (WGD) 和串联重复之间的复杂相互作用。在这项研究中,从 7 个茄科基因组中鉴定出了总共 1282 种 AP2/ERF 蛋白。AP2/ERF 基因的扩增不仅受到 WGD 的驱动,还受到串联重复基因簇的存在驱动。不同染色体之间的同线性保守性为 WGD 事件对 AP2/ERF 基因分布模式的影响提供了有力的证据。不同的表达模式表明,AP2/ERF 基因的多个拷贝朝着不同的功能方向进化,促使重复基因的功能多样化,这对茄科植物的适应性具有重要意义。基因沉默和过表达实验表明,ERF-1 成员在调控 花的起始时间方面发挥了作用。我们的研究结果为茄科 AP2/ERF 的基因组起源、复制事件和功能分化提供了新的认识。