Gianì Silvia, Altana Andrea, Campanoni Prisca, Morello Laura, Breviario Diego
Istituto Biologia e Biotecnologia Agraria CNR, Via Bassini 15, 20133 Milano, Italy.
Transgenic Res. 2009 Apr;18(2):151-62. doi: 10.1007/s11248-008-9202-7. Epub 2008 Jul 31.
The genomic upstream sequence of the rice tubulin gene OsTub6 has been cloned, sequenced and characterized. The 5'UTR sequence is interrupted by a 446 bp long leader intron. This feature is shared with two other rice beta-tubulin genes (OsTub4 and OsTub1) that, together with OsTub6, group in the same clade in the evolutionary phylogenetic tree of plant beta-tubulins. Similarly to OsTub4, the leader intron of OsTub6 is capable of sustaining intron mediated enhancement (IME) of gene expression, in transient expression assays. A general picture is drawn for three rice alpha-tubulin and two rice beta-tubulin genes in which the first intron of the coding sequence for the formers and the intron present in the 5'UTR for the latters, are important elements for controlling gene expression. We used OsTua2:GUS, OsTua3:GUS, OsTub4:GUS and OsTub6:GUS chimeric constructs to investigate the in vivo pattern of beta-glucuronidase (GUS) expression in transgenic rice plants. The influence of the regulatory introns on expression patterns was evaluated for two of them, OsTua2 and OsTub4. We have thus characterized distinct patterns of expression attributable to each tubulin isotype and we have shown that the presence of the regulatory intron can greatly influence both the amount and the actual site of expression. We propose the term Intron Dependent Spatial Expression (IDSE) to highlight this latter effect.
水稻微管蛋白基因OsTub6的基因组上游序列已被克隆、测序和表征。5'UTR序列被一个446 bp长的前导内含子打断。这一特征与另外两个水稻β-微管蛋白基因(OsTub4和OsTub1)相同,它们与OsTub6一起,在植物β-微管蛋白的进化系统发育树中属于同一分支。与OsTub4类似,在瞬时表达试验中,OsTub6的前导内含子能够维持基因表达的内含子介导增强(IME)。我们绘制了三个水稻α-微管蛋白基因和两个水稻β-微管蛋白基因的大致情况,其中前者编码序列的第一个内含子和后者5'UTR中存在的内含子是控制基因表达的重要元件。我们使用OsTua2:GUS、OsTua3:GUS、OsTub4:GUS和OsTub6:GUS嵌合构建体来研究转基因水稻植株中β-葡萄糖醛酸酶(GUS)表达的体内模式。对其中两个基因OsTua2和OsTub4,评估了调控内含子对表达模式的影响。因此,我们表征了每种微管蛋白异构体独特的表达模式,并表明调控内含子的存在可以极大地影响表达量和实际表达位点。我们提出“内含子依赖空间表达(IDSE)”这一术语来突出后一种效应。