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A Synthetic Strong and Constitutive Promoter Derived from the

机译:来自源自的合成强度和组成型启动子

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摘要

Synthetic promoters are vital for genetic engineering-based strategies for crop improvement, but effective methodologies for their creation and systematic testing are lacking. We report here on the comparative analysis of the promoters pro-SmAMP1 and pro-SmAMP2 from Stellaria media ANTIMICROBIAL PEPTIDE1 (AMP1) and ANTIMICROBIAL PEPTIDE2 (AMP2). These promoters are more effective than the well-known Cauliflower mosaic virus 35S promoter. Although these promoters share about 94% identity, the pro-SmAMP1 promoter demonstrated stronger transient expression of a reporter gene in Agrobacterium infiltration of Nicotiana benthamiana leaves, while the pro-SmAMP2 promoter was more effective for the selection of transgenic tobacco (Nicotiana tabacum) cells when driving a selectable marker. Using the cap analysis of gene expression method, we detected no differences in the structure of the transcription start sites for either promoter in transgenic plants. For both promoters, we used fine-scale deletion analysis to identify 160 bp-long sequences that retain the unique properties of each promoter. With the use of chimeric promoters and directed mutagenesis, we demonstrated that the superiority of the pro-SmAMP1 promoter for Agrobacterium-mediated infiltration is caused by the proline-inducible ACTCAT cis-element strictly positioned relative to the TATA box in the core promoter. Surprisingly, the ACTCAT cis-element not only activated but also suppressed the efficiency of the pro-SmAMP1 promoter under proline stress. The absence of the ACTCAT cis-element and CAANNNNATC motif (negative regulator) in the pro-SmAMP2 promoter provided a more constitutive gene expression profile and better selection of transgenic cells on selective medium. We created a new synthetic promoter that enjoys high effectiveness both in transient expression and in selection of transgenic cells. Intact promoters with differing properties and high degrees of sequence identity may thus be used as a basis for the creation of new synthetic promoters for precise and coordinated gene expression.
机译:合成促进剂对于基于基于遗传工程的作物改善至关重要,但缺乏其创造和系统测试的有效方法。我们在此报告来自甾体培养基抗微生物肽1(AMP1)和抗微生物肽2(AMP2)的启动子Pro-Smamp1和Pro-Smamp2的比较分析。这些启动子比着名的花椰菜马赛克病毒35s启动子更有效。虽然这些促进剂分享了大约94%的身份,但Pro-Smamp1启动子在Nicotiana Benthamiana叶子的农杆菌浸润中表现出更强烈的瞬时表达,而Pro-Smamp2启动子对选择转基因烟草(尼古尼亚塔巴塔克)细胞更有效在驾驶可选标记时。使用基因表达方法的帽分析,我们在转基因植物中检测到转录开始位点的结构的差异。对于两个启动子,我们使用细微缺失分析来鉴定160bp-long序列,其保留每个启动子的独特性质。通过使用嵌合启动子和定向诱变,我们证明了农杆菌介导的渗透的Pro-Smamp1启动子的优越性是由相对于核心启动子中的塔塔盒严格定位的脯氨酸诱导的Actcat CIS元素引起的。令人惊讶的是,Actcat CIS-COMPONS不仅被激活,而且还抑制了脯氨酸胁迫下PRO-SMAMP1启动子的效率。在Pro-Smamp2启动子中没有Actcat顺式元素和CaannnNATC基序(阴性调节剂)提供了更具组成的基因表达谱,并更好地选择了选择性培养基上的转基因细胞。我们创建了一种新的合成启动子,可在瞬时表达和选择转基因细胞中享有高效率。因此,具有不同性质和高度序列同一性的完整启动子可以作为对精确和协调基因表达产生新的合成启动子的基础。

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