College of Life Science, Jilin Agricultural University, Changchun, Jilin, China.
Research Center for Ginseng Genetic Resources Development and Utilization, Changchun, Jilin, China.
PLoS One. 2020 Mar 16;15(3):e0226055. doi: 10.1371/journal.pone.0226055. eCollection 2020.
The APETALA2/Ethylene Responsive Factor (AP2/ERF) gene family has been shown to play a crucial role in plant growth and development, stress responses and secondary metabolite biosynthesis. Nevertheless, little is known about the gene family in ginseng (Panax ginseng C.A. Meyer), an important medicinal herb in Asia and North America. Here, we report the systematic analysis of the gene family in ginseng using several transcriptomic databases. A total of 189 putative AP2/ERF genes, defined as PgERF001 through PgERF189, were identified and these PgERF genes were spliced into 397 transcripts. The 93 PgERF genes that have complete AP2 domains in open reading frame were classified into five subfamilies, DREB, ERF, AP2, RAV and Soloist. The DREB subfamily and ERF subfamily were further clustered into four and six groups, respectively, compared to the 12 groups of these subfamilies found in Arabidopsis thaliana. Gene ontology categorized these 397 transcripts of the 189 PgERF genes into eight functional subcategories, suggesting their functional differentiation, and they have been especially enriched for the subcategory of nucleic acid binding transcription factor activity. The expression activity and networks of the 397 PgERF transcripts have substantially diversified across tissues, developmental stages and genotypes. The expressions of the PgERF genes also significantly varied, when ginseng was subjected to cold stress, as tested using six PgERF genes, PgERF073, PgERF079, PgERF110, PgERF115, PgERF120 and PgERF128, randomly selected from the DREB subfamily. This result suggests that the DREB subfamily genes play an important role in plant response to cold stress. Finally, we studied the responses of the PgERF genes to methyl jasmonate (MeJA). We found that 288 (72.5%) of the 397 PgERF gene transcripts responded to the MeJA treatment, with 136 up-regulated and 152 down-regulated, indicating that most members of the PgERF gene family are responsive to MeJA. These results, therefore, provide new resources and knowledge necessary for family-wide functional analysis of the PgERF genes in ginseng and related species.
AP2/ERF 基因家族在植物生长发育、应激反应和次生代谢物生物合成中起着至关重要的作用。然而,关于人参(Panax ginseng C.A. Meyer)这种在亚洲和北美的重要药用草本植物中的基因家族,人们知之甚少。在这里,我们使用几个转录组数据库系统地分析了人参中的基因家族。共鉴定出 189 个推定的 AP2/ERF 基因,定义为 PgERF001 至 PgERF189,并将这些 PgERF 基因拼接成 397 个转录本。在开放阅读框中具有完整 AP2 结构域的 93 个 PgERF 基因被分为五个亚家族,DREB、ERF、AP2、RAV 和 Soloist。与拟南芥中发现的这两个亚家族的 12 个亚群相比,DREB 亚家族和 ERF 亚家族分别进一步聚类为四个和六个亚群。基因本体论将这 189 个 PgERF 基因的 397 个转录本分为八个功能亚类,表明它们的功能分化,并且它们特别富含核酸结合转录因子活性的亚类。397 个 PgERF 转录本的表达活性和网络在组织、发育阶段和基因型上有很大的多样化。当用人参的 6 个 PgERF 基因,即 PgERF073、PgERF079、PgERF110、PgERF115、PgERF120 和 PgERF128 进行冷胁迫测试时,PgERF 基因的表达也有显著变化,这 6 个基因随机选自 DREB 亚家族。这一结果表明,DREB 亚家族基因在植物对冷胁迫的反应中起着重要作用。最后,我们研究了 PgERF 基因对茉莉酸甲酯(MeJA)的反应。我们发现,397 个 PgERF 基因转录本中有 288 个(72.5%)对 MeJA 处理有反应,其中 136 个上调,152 个下调,表明 PgERF 基因家族的大多数成员对 MeJA 有反应。因此,这些结果为全面分析人参及相关物种中的 PgERF 基因提供了新的资源和知识。