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Increased Gene Expression by the First Intron of Maize Shrunken-1 Locus in Grass Species

机译:玉米收缩1位点在草种中的第一个内含子增加基因表达。

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摘要

The first intron of the shrunken-1 (Sh1) locus of maize was incorporated into constructs containing the chloramphenicol acetyltransferase gene (CAT) coupled with the nopaline synthase 3′ polyadenylation signal. Transcription was driven with the 35S promoter of the cauliflower mosaic virus (CaMV) or the Sh1 promoter of maize. Transient gene expression was monitored following electroporation into protoplasts of Panicum maximum (guineagrass), Pennisetum purpureum (napiergrass), or Zea mays (maize). The 1028 base pair intron increased gene expression in cells of each species when transcription was driven with the 35S promoter. Eleven to 91-fold increases were observed. Expression levels observed in maize were two and eight times those observed in napiergrass and guineagrass, respectively. The 35S promoter gave CAT activity 10 to 100 times that observed with the Sh1 promoter. Whereas expression driven by the 35S promoter was reproducible, that observed with the Sh1 promoter proved quite variable. In similar constructs the first intron of the alcohol dehydrogenase-1 (Adh1) gene of maize led to increased gene expression of only 7 to 10% of that observed with the Sh1 first intron. The increased level of gene expression caused by the Sh1 first intron is approximately 10 times higher than that caused by any other plant introns that have been used. Thus, the Sh1 first intron may prove quite useful in increasing expression of foreign genes in monocots and possibly other plants.
机译:将玉米的第一收缩位点(Sh1)的第一个内含子掺入含有氯霉素乙酰基转移酶基因(CAT)和胭脂碱合酶3'聚腺苷酸化信号的构建体中。用花椰菜花叶病毒(CaMV)的35S启动子或玉米的Sh1启动子驱动转录。在电穿孔入Panicum max(豚草),Pensetetum purpureum(napiergrass)或Zea mays(玉米)的原生质体后,监测瞬时基因表达。当35S启动子驱动转录时,1028个碱基对的内含子会增加每种物种细胞中的基因表达。观察到增加11到91倍。在玉米中观察到的表达水平分别是在紫草和豚鼠中观察到的表达水平的两倍和八倍。 35S启动子的CAT活性是Sh1启动子的10至100倍。尽管35S启动子驱动的表达是可重现的,但Sh1启动子观察到的表达却非常可变。在类似的构建体中,玉米的醇脱氢酶-1(Adh1)基因的第一个内含子导致基因表达的增加仅为Sh1第一个内含子的7-10%。 Sh1的第一个内含子引起的基因表达水平比任何其他已使用的植物内含子引起的基因表达水平高约10倍。因此,Sh1第一内含子可能在增加单子叶植物和其他植物中外源基因的表达方面非常有用。

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