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A genome-wide comparative analysis of bZIP transcription factors in G. arboreum and G. raimondii (Diploid ancestors of present-day cotton)

机译:G. Arboreum和G. Raimondii(现今棉花二倍体祖先的基因组转录因子的基因组比较分析

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Basic leucine zipper motif (bZIP) transcription factors (TFs) are involved in plant growth regulation, development, and environmental stress responses. These genes have been well characterized in model plants. In current study, a genome-wide analysis of bZIP genes was performed in Gossypium raimondii and Gossypium arboreum taking Arabidopsis thaliana as a reference genome. In total, 85 members of G. raimondii and 87 members of G. arboreum were identified and designated as GrbZIPs and GabZIPs respectively. Phylogenetic analysis clustered bZIP genes into 11 subgroups (A, B, C, D, F, G, H, I, S and X). Gene structure analysis to find the intro-exon structures revealed 1-14 exons in both species. The maximum number of introns were present in subgroup G and D while genes in subgroup S were intron-less except GrbZIP78, which is a unique characteristic as compared to other groups. Results of motif analysis predicted that all three species share a common bZIP motif. A detailed comparison of bZIPs gene distribution on chromosomes has shown a diverse arrangement of genes in both cotton species. Moreover, the functional similarity with orthologs was also predicted. The findings of this study revealed close similarity in gene structure of both cotton species and diversity in gene distribution on chromosomes. This study supports the divergence of both species from the common ancestor and later diversity in gene distribution on chromosomes due to evolutionary changes. Additionally, this work will facilitate the functional characterization of bZIP genes in cotton. Outcomes of this study represent foundation research on the bZIP TFs family in cotton and as a reference for other crops.
机译:基本亮氨酸拉链图案(BZIP)转录因子(TFS)参与植物生长调节,发展和环境应力反应。这些基因在模型植物中具有很好的特征。在目前的研究中,在Gossypium Raimondii和Gossypium Arboreum中进行基因组的全基因组分析,拟南芥作为参考基因组。总共有85名G. Raimondii和G. Arboreum成员的成员分别被确定为Grbzips和Gabzips。系统发育分析聚类Bzip基因进入11个子组(A,B,C,D,F,G,H,I,S和X)。基因结构分析发现介绍介绍结构揭示了两种物种中的1-14个外显子。在亚组G和D中存在最大内含子数,而D组中的基因在除GRBZIP78之外的内含子,与其他组相比是一种独特的特征。基序分析结果预测,所有三种物种都共有普通的Bzip主题。 Bzips基因分布对染色体的详细比较显示了棉花种类中的不同基因排列。此外,还预先预测与矫形器的功能相似度。该研究的发现揭示了棉花种类的基因结构与染色体基因分布的多样性相似性。本研究支持由于进化变化导致染色体的常见祖先和后期多样性的血型分发的两种物种的分歧。此外,该工作将促进棉花中Bzip基因的功能表征。本研究结果代表了棉花Bzip TFS家族的基础研究,作为其他作物的参考。

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