State Key Laboratory of Cell Biology, Shanghai Institute of Biochemistry and Cell Biology, CAS Center for Excellence in Molecular Cell Science, Chinese Academy of Sciences, Shanghai, 200031, China.
National Key Laboratory of Plant Molecular Genetics, CAS Center for Excellence in Molecular Plant Sciences, Institute of Plant Physiology and Ecology, Chinese Academy of Sciences, Shanghai, 200032, China.
BMC Genomics. 2021 Oct 16;22(1):748. doi: 10.1186/s12864-021-08043-w.
In recent years, much attention has been given to AP2/ERF transcription factors because they play indispensable roles in many biological processes, such as plant development and biotic and abiotic stress responses. Although AP2/ERFs have been thoroughly characterised in many plant species, the knowledge about this family in the sweet potato, which is a vital edible and medicinal crop, is still limited. In this study, a comprehensive genome-wide investigation was conducted to characterise the AP2/ERF gene family in the sweet potato.
Here, 198 IbAP2/ERF transcription factors were obtained. Phylogenetic analysis classified the members of the IbAP2/ERF family into three groups, namely, ERF (172 members), AP2 (21 members) and RAV (5 members), which was consistent with the analysis of gene structure and conserved protein domains. The evolutionary characteristics of these IbAP2/ERF genes were systematically investigated by analysing chromosome location, conserved protein motifs and gene duplication events, indicating that the expansion of the IbAP2/ERF gene family may have been caused by tandem duplication. Furthermore, the analysis of cis-acting elements in IbAP2/ERF gene promoters implied that these genes may play crucial roles in plant growth, development and stress responses. Additionally, the available RNA-seq data and quantitative real-time PCR (qRT-PCR) were used to investigate the expression patterns of IbAP2/ERF genes during sweet potato root development as well as under multiple forms of abiotic stress, and we identified several developmental stage-specific and stress-responsive IbAP2/ERF genes. Furthermore, g59127 was differentially expressed under various stress conditions and was identified as a nuclear protein, which was in line with predicted subcellular localization results.
This study originally revealed the characteristics of the IbAP2/ERF superfamily and provides valuable resources for further evolutionary and functional investigations of IbAP2/ERF genes in the sweet potato.
近年来,AP2/ERF 转录因子备受关注,因为它们在植物发育和生物及非生物胁迫响应等许多生物学过程中发挥着不可或缺的作用。尽管在许多植物物种中对 AP2/ERF 进行了深入研究,但在甘薯这一重要的食用和药用作物中,对该家族的了解仍然有限。在本研究中,对甘薯 AP2/ERF 基因家族进行了全面的基因组范围研究。
在此,获得了 198 个 IbAP2/ERF 转录因子。系统进化分析将 IbAP2/ERF 家族的成员分为 3 组,即 ERF(172 个成员)、AP2(21 个成员)和 RAV(5 个成员),这与基因结构和保守蛋白结构域分析一致。通过分析染色体位置、保守蛋白基序和基因复制事件,系统地研究了这些 IbAP2/ERF 基因的进化特征,表明 IbAP2/ERF 基因家族的扩张可能是由串联复制引起的。此外,IbAP2/ERF 基因启动子中顺式作用元件的分析表明,这些基因可能在植物生长、发育和应激反应中发挥关键作用。此外,还利用可用的 RNA-seq 数据和定量实时 PCR(qRT-PCR)分析了甘薯根发育过程中以及多种非生物胁迫下 IbAP2/ERF 基因的表达模式,鉴定了一些发育阶段特异性和应激响应的 IbAP2/ERF 基因。此外,g59127 在各种胁迫条件下表达差异,并被鉴定为核蛋白,这与预测的亚细胞定位结果一致。
本研究首次揭示了 IbAP2/ERF 超家族的特征,为进一步研究甘薯 IbAP2/ERF 基因的进化和功能提供了有价值的资源。