Ghorbani Razieh, Zakipour Zahra, Alemzadeh Abbas, Razi Hooman
Department of Plant Production and Genetics, School of Agriculture, Shiraz University, Shiraz, Iran.
Physiol Mol Biol Plants. 2020 Jul;26(7):1463-1476. doi: 10.1007/s12298-020-00832-z. Epub 2020 Jun 16.
The AP2/ERF transcription factor family plays an important role in different biological processes such as growth, development and response to abiotic and biotic stresses in plants. The genome-wide analysis identified 531 AP2/ERF genes in (oilseed rape or canola) that ranged from 333 to 6440 bp in genomic and 273-2493 bp in coding DNA sequence length. We classified BnAP2/ERF proteins into five subfamilies including AP2 (58 genes), ERF (250 genes), DREB/CBF (194 genes), RAV (26 genes), and Soloist (3 genes). Furthermore, AP2/ERF proteins were subdivided into 15 groups according to the AP2/ERF classification in . The number of exons in genes was from one to eleven and most of these genes in the same subfamily had the same exon-intron pattern. The results also indicated that the composition of conserved motifs in most proteins in each group was similar. The intron-exon patterns and the composition of conserved motifs validated the BnAP2/ERF transcription factors phylogenetic classification. Based on the results of genome distribution, genes were located unevenly on the 19 chromosomes. The results indicated that gene duplication may play an important role in genome expansion of . Furthermore, genome evolution of using orthologous and paralogous identification was studied. We found 278, 380 and 366 orthologous gene pairs between with , and , respectively. The results of this study will be useful in investigation of functional role and molecular mechanisms of transcription factors genes in response to different stresses.
AP2/ERF转录因子家族在植物的生长、发育以及对非生物和生物胁迫的响应等不同生物学过程中发挥着重要作用。全基因组分析在油菜中鉴定出531个AP2/ERF基因,其基因组长度在333至6440 bp之间,编码DNA序列长度在273至2493 bp之间。我们将BnAP2/ERF蛋白分为五个亚家族,包括AP2(58个基因)、ERF(250个基因)、DREB/CBF(194个基因)、RAV(26个基因)和Soloist(3个基因)。此外,根据文献中的AP2/ERF分类,AP2/ERF蛋白被细分为15个组。油菜基因的外显子数量从1个到11个不等,同一亚家族中的大多数基因具有相同的外显子-内含子模式。结果还表明,每组中大多数蛋白质的保守基序组成相似。内含子-外显子模式和保守基序组成验证了BnAP2/ERF转录因子的系统发育分类。基于基因组分布结果,油菜基因在19条染色体上分布不均。结果表明,基因复制可能在油菜基因组扩展中起重要作用。此外,还利用直系同源和旁系同源鉴定研究了油菜的基因组进化。我们分别在油菜与拟南芥、甘蓝和白菜之间发现了278、380和366对直系同源基因对。本研究结果将有助于研究油菜转录因子基因在响应不同胁迫时的功能作用和分子机制。