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Functional analysis of a cotton glucuronosyltransferase promoter in transgenic tobaccos

机译:转基因烟草中棉花葡萄糖醛糖基转移酶启动子的功能分析

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The 5′ fragment (1 647 bp) of the cotton glucuronosyltransferase gene (GhGlcAT1) was transcriptionally fused to the β-glucuronidase (GUS) gene, and functionally analyzed for important regulatory regions controlling gene expression in transgenic tobacco plants. GUS activity analysis revealed that the full-length promoter drives efficient expression of the GUS gene in the root cap, seed coat, pollen grains and trichomes. Exposure of the transgenic tobacco to various abiotic stresses showed that the promoter was mainly responsive to the sugars (glucose and sucrose) as well as gibberellic acid. Progressive upstream deletion analyses of the promoter showed that the region from -281 to +30 bp is sufficient to drive strong GUS expression in the trichomes of shoot, suggesting that the 311 bp region contains all cis-elements needed for trichome-specific expression. Furthermore, deletion analysis also revealed that the essential cis-element(s) for sucrose induction might be located between -635 and -281 bp. In addition, sequence analysis of the regulatory region indicated several conserved motifs among which some were shared with previously reported seed-specific elements and sugar-responsive elements, while others were related with trichome expression. These findings indicate that a 1 647-bp fragment of the cotton GhGlcAT1 promoter contains specific transcription regulatory elements, and provide clues about the roles of GhGlcAT1 in cotton fiber development. Further analyses of these elements will help to elucidate the molecular mechanisms regulating the expression of the GhGlcAT1 gene during fiber elongation.
机译:将棉花葡糖醛酸糖基转移酶基因(GhGlcAT1)的5'片段(1 647 bp)转录融合至β-葡糖醛酸糖苷酶(GUS)基因,并在功能上分析控制转基因烟草植物中基因表达的重要调控区。 GUS活性分析表明,全长启动子驱动GUS基因在根冠,种皮,花粉粒和毛状体中有效表达。转基因烟草暴露于各种非生物胁迫下表明,该启动子主要对糖(葡萄糖和蔗糖)以及赤霉素有反应。对启动子的逐步上游缺失分析表明,从-281到+30 bp的区域足以驱动芽的毛状体中的GUS强表达,表明311 bp的区域包含了毛状体特异性表达所需的所有顺式元件。此外,缺失分析还显示,蔗糖诱导的必需顺式元件可能位于-635至-281 bp之间。另外,对调节区的序列分析表明了几个保守的基序,其中一些与先前报道的种子特异性元件和糖响应元件共有,而另一些与毛状体表达有关。这些发现表明,棉花GhGlcAT1启动子的1 647-bp片段包含特定的转录调控元件,并提供了有关GhGlcAT1在棉花纤维发育中作用的线索。这些元素的进一步分析将有助于阐明在纤维延伸过程中调节GhGlcAT1基因表达的分子机制。

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