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Genome-wide analysis of the distribution of AP2/ERF transcription factors reveals duplication and CBFs genes elucidate their potential function in Brassica oleracea

机译:全基因组分析AP2 / ERF转录因子的分布揭示了重复,而CBFs基因阐明了它们在甘蓝型油菜中的潜在功能

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Background Cabbage (Brassica oleracea) is one of the most important leaf vegetables grown worldwide. The entire cabbage genome sequence and more than fifty thousand proteins have been obtained to date. However a high degree of sequence similarity and conserved genome structure remain between cabbage and Arabidopsis; therefore, Arabidopsis is a viable reference species for comparative genomics studies. Transcription factors (TFs) are important regulators involved in plant development and physiological processes and the AP2/ERF protein family contains transcriptional factors that play a crucial role in plant growth and development, as well as response to biotic and abiotic stress conditions in plants. However, no detailed expression profile of AP2/ERF-like genes is available for B. oleracea. Results In the present study, 226 AP2/ERF TFs were identified from B. oleracea based on the available genome sequence. Based on sequence similarity, the AP2/ERF superfamily was classified into five groups (DREB, ERF, AP2, RAV and Soloist) and 15 subgroups. The identification, classification, phylogenetic construction, conserved motifs, chromosome distribution, functional annotation, expression patterns and interaction network were then predicted and analyzed. AP2/ERF transcription factor expression levels exhibited differences in response to varying abiotic stresses based on expressed sequence tags (ESTs). BoCBF1a, 1b, 2, 3 and 4, which were highly conserved in Arabidopsis and B. rapa CBF/DREB genes families were well characterized. Expression analysis enabled elucidation of the molecular and genetic level expression patterns of cold tolerance (CT) and susceptible lines (CS) of cabbage and indicated that all BoCBF genes responded to abiotic stresses. Conclusions Comprehensive analysis of the physiological functions and biological roles of AP2/ERF superfamily genes and BoCBF family genes in B. oleracea is required to fully elucidate AP2/ERF, which will provide rich resources and opportunities to understand abiotic stress tolerance in crops.
机译:背景白菜(甘蓝)是全世界种植的最重要的叶类蔬菜之一。迄今为止,已经获得了整个卷心菜基因组序列和五万多种蛋白质。然而,甘蓝和拟南芥之间仍存在高度的序列相似性和保守的基因组结构。因此,拟南芥是比较基因组学研究的可行参考物种。转录因子(TFs)是参与植物发育和生理过程的重要调控因子,AP2 / ERF蛋白家族包含的转录因子在植物生长发育以及对植物生物和非生物胁迫条件的响应中起着至关重要的作用。但是,没有关于AP2 / ERF样基因的详细表达谱可用于油菜双歧杆菌。结果在本研究中,基于可获得的基因组序列,从油菜芽胞杆菌中鉴定出226个AP2 / ERF TF。根据序列相似性,将AP2 / ERF超家族分为5个组(DREB,ERF,AP2,RAV和Soloist)和15个亚组。然后对鉴定,分类,系统发育结构,保守基序,染色体分布,功能注释,表达模式和相互作用网络进行了预测和分析。基于表达的序列标签(EST),AP2 / ERF转录因子表达水平对不同的非生物胁迫表现出差异。 BoCBF1a,1b,2、3和4在拟南芥和B. rapa CBF / DREB基因家族中高度保守。表达分析能够阐明甘蓝的耐寒性(CT)和易感品系(CS)的分子和遗传水平表达模式,并表明所有BoCBF基因均响应非生物胁迫。结论需要全面分析油菜假单胞菌AP2 / ERF超家族基因和BoCBF家族基因的生理功能和生物学作用,才能充分阐明AP2 / ERF,这将为了解作物的非生物胁迫耐受性提供丰富的资源和机会。

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