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超级家族在 基因组中的生物信息学评估和表达谱。

Bioinformatic Assessment and Expression Profiles of the Superfamily in the Genome.

机构信息

Ornamental Plant Germplasm Resources Innovation & Engineering Application Research Center, Key Laboratory of National Forestry and Grassland Administration for Orchid Conservation and Utilization, College of Landscape Architecture and Art, Fujian Agriculture and Forestry University, Fuzhou 350002, China.

College of Life Sciences, Fujian Normal University, Fuzhou 350117, China.

出版信息

Int J Mol Sci. 2023 Nov 15;24(22):16362. doi: 10.3390/ijms242216362.

Abstract

AP2/ERF transcription factors play crucial roles in various biological activities, including plant growth, development, and responses to biotic and abiotic stressors. However, limited research has been conducted on the AP2/ERF genes of for breeding of this potential fruit crop. Leveraging the recently published whole genome sequence, we conducted a comprehensive assessment of this superfamily and explored the expression patterns of genes at a genome-wide level. A significant number of genes, totaling 218, were discovered to possess the AP2 domain sequence and displayed notable structural variations among five subfamilies. An uneven distribution of these genes was observed on 12 pseudochromosomes as the result of gene expansion facilitated by segmental duplications. Analysis of cis-acting elements within promoter sites and 87.6% miRNA splicing genes predicted their involvement in multiple hormone responses and abiotic stresses through transcriptional and post-transcriptional regulations. Transcriptome analysis combined with qRT-PCR results indicated that certain candidate genes are involved in tissue formation and the response to developmental changes induced by IAA hormones. Overall, our study provides valuable insights into the evolution of ERF genes in angiosperms and lays a solid foundation for future breeding investigations aimed at improving fruit quality and enhancing adaptation to barren land environments.

摘要

AP2/ERF 转录因子在各种生物活动中发挥着关键作用,包括植物的生长、发育以及对生物和非生物胁迫的响应。然而,对于这种有潜力的水果作物的育种,关于 AP2/ERF 基因的研究还很有限。利用最近发表的全基因组序列,我们对这个超家族进行了全面评估,并在全基因组水平上探索了 基因的表达模式。我们发现了大量的基因,总计 218 个,它们具有 AP2 结构域序列,并在五个亚家族中表现出显著的结构变异。这些基因在 12 条假染色体上的不均匀分布是由于片段重复导致的基因扩展造成的。对启动子位点内顺式作用元件的分析和 87.6%的 miRNA 剪接基因的分析表明,它们通过转录和转录后调控参与了多种激素反应和非生物胁迫。转录组分析结合 qRT-PCR 结果表明,某些候选基因参与了组织形成以及对 IAA 激素诱导的发育变化的响应。总的来说,我们的研究为被子植物中 ERF 基因的进化提供了有价值的见解,并为未来旨在改善果实品质和增强对贫瘠土地环境适应能力的育种研究奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/466a/10671166/52292d20753d/ijms-24-16362-g001.jpg

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