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DST sequences highly conserved among plant SAUR genes target reporter transcripts for rapid decay in tobacco.

机译:在植物SAUR基因中高度保守的DST序列可靶向报道基因从而在烟草中迅速腐烂。

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摘要

DST elements are highly conserved sequences located in the 3' untranslated regions (UTRs) of a set of unstable soybean transcripts known as the small auxin-up RNAs (SAURs). To test whether DST sequences could function as mRNA instability determinants in plants, a model system was developed to facilitate the direct measurement of mRNA decay rates in stably transformed cells of tobacco. Initial experiments established that the chloramphenicol acetyltransferase (CAT) and beta-glucuronidase (GUS) transcripts degraded with similar half-lives in this system. In addition, their decay kinetics mirrored the apparent decay kinetics of the corresponding transcripts produced in transgenic plants under the control of a regulated promoter (Cab-1). The model system was then used to measure the decay rates of GUS reporter transcripts containing copies of the DST sequence inserted into the 3'UTR. An unmodified CAT gene introduced on the same vector served as the internal reference. These experiments and a parallel set utilizing a beta-globin reporter gene demonstrated that a synthetic dimer of the DST sequence was sufficient to destabilize both reporter transcripts in stably transformed tobacco cells. The decrease in transcript stability caused by the DST sequences in cultured cells was paralleled by a coordinate decrease in transcript abundance in transgenic tobacco plants. The implications of these results for the potential function of DST sequences within the SAUR transcripts are discussed.
机译:DST元件是高度保守的序列,位于一系列不稳定的大豆转录本的3'非翻译区(UTR)中,该转录本被称为小生长素上调RNA(SAUR)。为了测试DST序列是否可以充当植物中mRNA的不稳定性决定因素,开发了一个模型系统来促进直接测量稳定转化的烟草细胞中mRNA的衰减率。最初的实验确定,该系统中的氯霉素乙酰基转移酶(CAT)和β-葡萄糖醛酸糖苷酶(GUS)转录物降解的半衰期相似。另外,它们的衰变动力学反映了在受调控的启动子(Cab-1)控制下在转基因植物中产生的相应转录物的表观衰变动力学。然后使用模型系统测量GUS报告基因转录物的衰减速率,该报告物包含插入3'UTR中的DST序列的副本。引入相同载体的未修饰的CAT基因用作内部参考。这些实验和利用β-珠蛋白报道基因的平行实验证明,DST序列的合成二聚体足以使稳定转化的烟草细胞中的两个报道转录物不稳定。在培养的细胞中,由DST序列引起的转录稳定性的降低与转基因烟草植物中转录丰度的坐标降低是平行的。讨论了这些结果对SAUR转录物中DST序列的潜在功能的影响。

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