首页> 外文期刊>BMC Genomics >Genome-wide evolutionary characterization and analysis of bZIP transcription factors and their expression profiles in response to multiple abiotic stresses in Brachypodium distachyon
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Genome-wide evolutionary characterization and analysis of bZIP transcription factors and their expression profiles in response to multiple abiotic stresses in Brachypodium distachyon

机译:全基因组进化特征和分析bZIP转录因子及其表达谱响应多个非生物胁迫中的短枝chy。

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Plant basic leucine zipper (bZIP) transcription factors are one of the largest and most diverse gene families and play key roles in regulating diverse stress processes. Brachypodium distachyon is emerging as a widely recognized model plant for the temperate grass family and the herbaceous energy crops, however there is no comprehensive analysis of bZIPs in B. distachyon, especially those involved in stress tolerances. In this study, 96 bZIP genes (BdbZIPs) were identified distributing unevenly on each chromosome of B. distachyon, and most of them were scattered in the low CpG content regions. Gene duplications were widespread throughout B. distachyon genome. Evolutionary comparisons suggested B. distachyon and rice’s bZIPs had the similar evolutionary patterns. The exon splicing in BdbZIP motifs were more complex and diverse than those in other plant species. We further revealed the potential close relationships between BdbZIP gene expressions and items including gene structure, exon splicing pattern and dimerization features. In addition, multiple stresses expression profile demonstrated that BdbZIPs exhibited significant expression patterns responding to 14 stresses, and those responding to heavy metal treatments showed opposite expression pattern comparing to the treatments of environmental factors and phytohormones. We also screened certain up- and down-regulated BdbZIP genes with fold changes ≥2, which were more sensitive to abiotic stress conditions. BdbZIP genes behaved diverse functional characters and showed discrepant and some regular expression patterns in response to abiotic stresses. Comprehensive analysis indicated these BdbZIPs’ expressions were associated not only with gene structure, exon splicing pattern and dimerization feature, but also with abiotic stress treatments. It is possible that our findings are crucial for revealing the potentialities of utilizing these candidate BdbZIPs to improve productivity of grass plants and cereal crops.
机译:植物基本亮氨酸拉链(bZIP)转录因子是最大和最多样化的基因家族之一,并且在调节不同的胁迫过程中起关键作用。短枝曲霉(Barchypodium distachyon)逐渐成为温带草家庭和草本能源作物的公认典范植物,但是尚无关于曲霉芽孢杆菌中bZIPs的综合分析,尤其是那些涉及胁迫耐受性的植物。在这项研究中,鉴定出96个bZIP基因(BdbZIPs)分布在B. distachyon的每个染色体上,并且大部分分布在低CpG含量区域。基因重复遍及整个狄氏酵母基因组。进化比较表明,B。distachyon和水稻的bZIP具有相似的进化模式。与其他植物相比,BdbZIP基序中的外显子剪接更加复杂和多样。我们进一步揭示了BdbZIP基因表达与包括基因结构,外显子剪接模式和二聚化特征在内的项目之间的潜在密切关系。此外,多种胁迫表达谱表明,BdbZIPs表现出对14种胁迫的显着表达模式,与重金属处理相比,与环境因素和植物激素处理相比,BdbZIPs呈现相反的表达模式。我们还筛选了倍数变化≥2的某些上调和下调的BdbZIP基因,这些基因对非生物胁迫条件更为敏感。 BdbZIP基因表现出不同的功能特征,并响应非生物胁迫显示出差异和一些规则的表达模式。全面的分析表明,这些BdbZIP的表达不仅与基因结构,外显子剪接模式和二聚化特征有关,而且还与非生物胁迫处理有关。我们的发现可能对于揭示利用这些候选BdbZIPs改善草类植物和谷类作物的生产力的潜力至关重要。

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