Genome-wide identification, structural characterization and expression profiling of AP2/ERF gene family in bayberry (Myrica rubra).

IF 4.3 2区 生物学 Q1 PLANT SCIENCES
Yumeng Liu, Linqi Cai, Jiali Zhu, Yue Lin, Minghui Chen, Huiling Zhang, Xiurun Fan, Kai Xu, Boping Wu
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引用次数: 0

Abstract

Background: Bayberry is the most economically significant fruit within the Myricaceae family, having high nutritional and medicinal value. The AP2/ERF family is a class of transcription factors found mainly in plants. However, the bayberry AP2/ERF gene family has not previously been studied.

Results: In this study, 113 members of the bayberry AP2/ERF gene family were identified. According to the phylogenetic tree, the members of this group are divided into three subfamilies, namely AP2, ERF, and DREB. The gene structure and conserved motifs were analyzed. Chromosome localization showed that 95 genes were unevenly distributed on 8 chromosomes and 18 genes were located on the skeleton. Gene collinearity analysis of the bayberry AP2/ERF gene family showed 12 segmental duplication events, involving 21 AP2/ERFs. In addition, we further investigated the evolutionary relationship of the AP2/ERF gene family between bayberry and six other species. It was found that bayberry was most closely related to Populus trichocarpa and Malus pumila, with 153 and 141 homologous gene pairs, respectively. Cis-acting elements indicated that AP2/ERFs were related to phytohormone responses, light response, abiotic and biotic stress tolerance. Transcriptomic data showed that the expression pattern of AP2/ERF gene was different in bayberry space electric field treatment and at different stages of fruit development. The results of GO annotation revealed the biological processes, cellular component and molecular function that the AP2/ERF genes were involved. And KEGG enrichment analysis indicated that these genes were mainly clustered in genetic information processing and metabolism pathways.

Conclusions: The AP2/ERF gene was identified in the genome of bayberry, and its structure, conserved motif, and phylogenetic relationship were analyzed. These findings of this study serve as a reference for the genome-wide identification of the AP2/ERF gene family in other species and groundwork for future research on the function of AP2/ERF genes in bayberry.

杨梅(Myrica rubra)AP2/ERF 基因家族的全基因组鉴定、结构特征和表达谱分析。
背景:杨梅是杨梅科植物中最具经济价值的果实,具有很高的营养和药用价值。AP2/ERF 家族是一类主要存在于植物中的转录因子。然而,此前尚未对杨梅 AP2/ERF 基因家族进行过研究:结果:本研究鉴定了杨梅 AP2/ERF 基因家族的 113 个成员。根据系统发生树,该家族成员被分为三个亚家族,即 AP2、ERF 和 DREB。分析了基因结构和保守基序。染色体定位显示,95 个基因不均匀地分布在 8 条染色体上,18 个基因位于骨架上。杨梅AP2/ERF基因家族的基因共线性分析表明有12个节段重复事件,涉及21个AP2/ERF。此外,我们还进一步研究了杨梅与其他六个物种的AP2/ERF基因家族的进化关系。结果发现,杨梅与三叶杨(Populus trichocarpa)和小叶桉(Malus pumila)的亲缘关系最为密切,分别有153对和141对同源基因。顺式作用元件表明,AP2/ERF 与植物激素反应、光反应、非生物和生物胁迫耐受性有关。转录组数据显示,AP2/ERF基因在杨梅空间电场处理和果实不同发育阶段的表达模式不同。GO 注释结果显示了 AP2/ERF 基因参与的生物过程、细胞组分和分子功能。KEGG富集分析表明,这些基因主要聚集在遗传信息处理和新陈代谢通路中:结论:在杨梅基因组中发现了 AP2/ERF 基因,并对其结构、保守基序和系统发育关系进行了分析。这些研究结果为在其他物种中全基因组鉴定 AP2/ERF 基因家族提供了参考,也为今后研究杨梅中 AP2/ERF 基因的功能奠定了基础。
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来源期刊
BMC Plant Biology
BMC Plant Biology 生物-植物科学
CiteScore
8.40
自引率
3.80%
发文量
539
审稿时长
3.8 months
期刊介绍: BMC Plant Biology is an open access, peer-reviewed journal that considers articles on all aspects of plant biology, including molecular, cellular, tissue, organ and whole organism research.
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