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Analysis of transcription factors among differentially expressed genes induced by drought stress in Populus davidiana

机译:干旱胁迫下胡杨差异表达基因转录因子的分析

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摘要

Populus davidiana is native to the Korean Peninsula and is one of the most dominant and abundantly growing forest trees in eastern Asia. Compared to other Populus species such as P. trichocarpa, P. euphratica, and P. tremula, relatively little is known about P. davidiana. Here, we performed transcriptomic analysis of P. davidiana under drought stress induced by 10% polyethylene glycol. A total of 12,403 and 12,414 differentially expressed genes (DEGs) were successfully annotated with the P. trichocarpa reference genome after 6 and 12 h of treatment, respectively. Of these, a total of 404 genes (238 up-regulated and 166 down-regulated) after 6 h and 359 genes (187 up-regulated and 172 down-regulated) after 12 h of treatment were identified as transcription factors. Transcription factors known to be key genes for drought stress response, such as AP2-EREB, WRKY, C2H2, and NAC, were identified. This results suggesting that early induction of these genes affected initiation of transcriptional regulation in response to drought stress. Quantitative real-time PCR results of selected genes showed highly significant (R = 0.93) correlation with RNA-Seq data. Interestingly, the expression pattern of some transcription factors was P. davidiana specific. The sequence of P. davidiana ortholog of P. trichocarpa gene POPTR_0018s10230, which plays an important role in plant response to drought, was further analyzed as our RNA-Seq results showed highly significant changes in the expression of this gene following the stress treatment. Sequence of the gene was compared to P. trichocarpa gene sequence using cloning-based sequencing. Additionally, we generated a predicted 3D protein structure for the gene product. Results indicated that the amino acid sequence of P. davidiana-specific POPTR_0018s10230 is different at six different positions compared to P. trichocarpa, resulting in a significantly different structure of the protein. Identifying the transcription factors expressed in P. davidiana under drought stress will not only offer clues for understanding the underlying mechanisms involved in drought stress physiology but also serve as a basis for future molecular studies on this species.Electronic supplementary materialThe online version of this article (doi:10.1007/s13205-017-0858-7) contains supplementary material, which is available to authorized users.
机译:美洲杨(Populus davidiana)原产于朝鲜半岛,是东亚地区最主要和最丰富的林木之一。与其他杨属物种(例如毛果杨,胡杨和银杏)相比,关于大卫杨的了解较少。在这里,我们进行了由10%聚乙二醇诱导的干旱胁迫下的对虾假单胞菌的转录组分析。治疗后6小时和12小时,分别用毛果假单胞菌参考基因组成功注释了总共12,403和12,414个差异表达基因(DEG)。其中,治疗6小时后总共404个基因(238个上调和166个下调)和治疗12小时后的359个基因(187个上调和172个下调)被确定为转录因子。确定了已知为干旱胁迫响应关键基因的转录因子,例如AP2-EREB,WRKY,C2H2和NAC。该结果表明,这些基因的早期诱导影响了干旱胁迫下转录调控的启动。所选基因的实时定量PCR结果显示与RNA-Seq数据高度相关(R = 0.93)。有趣的是,某些转录因子的表达模式是特定于大卫假单胞菌的。由于我们的RNA-Seq结果显示了在胁迫处理后该基因表达的高度显着变化,因此进一步分析了在植物抗旱中起重要作用的毛果毕赤酵母基因POPTR_0018s10230的正交同源序列。使用基于克隆的测序,将该基因的序列与毛果杨的基因序列进行比较。此外,我们为该基因产物生成了预测的3D蛋白质结构。结果表明,与木果疟原虫相比,番木瓜特异性POPTR_0018s10230的氨基酸序列在六个不同位置处不同,从而导致该蛋白质的结构显着不同。鉴定干旱胁迫下大卫对虾中表达的转录因子不仅为了解干旱胁迫生理学的潜在机制提供了线索,而且还为将来对该物种的分子研究提供了基础。电子补充材料本文的在线版本( doi:10.1007 / s13205-017-0858-7)包含补充材料,授权用户可以使用。

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