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Genomic survey of bZIP transcription factor genes related to tanshinone biosynthesis in Salvia miltiorrhiza

机译:丹参中丹参酮生物合成相关的bZIP转录因子基因组研究

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摘要

Tanshinones are a class of bioactive components in the traditional Chinese medicine Salvia miltiorrhiza, and their biosynthesis and regulation have been widely studied. Current studies show that basic leucine zipper (bZIP) proteins regulate plant secondary metabolism, growth and developmental processes. However, the bZIP transcription factors involved in tanshinone biosynthesis are unknown. Here, we conducted the first genome-wide survey of the bZIP gene family and analyzed the phylogeny, gene structure, additional conserved motifs and alternative splicing events in S. miltiorrhiza. A total of 70 SmbZIP transcription factors were identified and categorized into 11 subgroups based on their phylogenetic relationships with those in Arabidopsis. Moreover, seventeen SmbZIP genes underwent alternative splicing events. According to the transcriptomic data, the SmbZIP genes that were highly expressed in the Danshen root and periderm were selected. Based on the prediction of bZIP binding sites in the promoters and the co-expression analysis and co-induction patterns in response to Ag+ treatment via quantitative real-time polymerase chain reaction (qRT-PCR), we concluded that SmbZIP7 and SmbZIP20 potentially participate in the regulation of tanshinone biosynthesis. These results provide a foundation for further functional characterization of the candidate SmbZIP genes, which have the potential to increase tanshinone production.
机译:丹参酮是中药丹参中的一类生物活性成分,其生物合成和调控已得到广泛研究。当前的研究表明,基本的亮氨酸拉链(bZIP)蛋白调节植物的次级代谢,生长和发育过程。但是,参与丹参酮生物合成的bZIP转录因子尚不清楚。在这里,我们进行了bZIP基因家族的首次全基因组范围内的调查,并分析了S. miltiorrhiza中的系统发育,基因结构,其他保守基序和其他剪接事件。根据它们与拟南芥属的系统发育关系,共鉴定出70个SmbZIP转录因子并将其分为11个亚组。此外,有17个SmbZIP基因经历了其他剪接事件。根据转录组数据,选择在丹参根和周皮中高表达的SmbZIP基因。基于定量实时聚合酶链反应(qRT-PCR)预测启动子中bZIP结合位点以及响应Ag + 处理的共表达分析和共诱导模式,我们结论认为SmbZIP7和SmbZIP20可能参与了丹参酮生物合成的调控。这些结果为候选SmbZIP基因的进一步功能表征提供了基础,这些候选基因具有增加丹参酮产量的潜力。

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