Department of Agriculture Technology, Faculty of Agriculture, University Putra Malaysia (UPM), Serdang, Selangor, Malaysia.
Planta. 2010 Sep;232(4):925-36. doi: 10.1007/s00425-010-1220-z. Epub 2010 Jul 16.
The 1,053-bp promoter of the oil palm metallothionein gene (so-called MSP1) and its 5' deletions were fused to the GUS reporter gene, and analysed in transiently transformed oil palm tissues. The full length promoter showed sevenfold higher activity in the mesocarp than in leaves and 1.5-fold more activity than the CaMV35S promoter in the mesocarp. The 1,053-bp region containing the 5' untranslated region (UTR) gave the highest activity in the mesocarp, while the 148-bp region was required for minimal promoter activity. Two positive regulatory regions were identified at nucleotides (nt) -953 to -619 and -420 to -256 regions. Fine-tune deletion of the -619 to -420 nt region led to the identification of a 21-bp negative regulatory sequence in the -598 to -577 nt region, which is involved in mesocarp-specific expression. Gel mobility shift assay revealed a strong interaction of the leaf nuclear extract with the 21-bp region. An AGTTAGG core-sequence within this region was identified as a novel negative regulatory element controlling fruit-specificity of the MSP1 promoter. Abscisic acid (ABA) and copper (Cu(2+)) induced the activity of the promoter and its 5' deletions more effectively than methyl jasmonate (MeJa) and ethylene. In the mesocarp, the full length promoter showed stronger inducibility in response to ABA and Cu(2+) than its 5' deletions, while in leaves, the -420 nt fragment was the most inducible by ABA and Cu(2+). These results suggest that the MSP1 promoter and its regulatory regions are potentially useful for engineering fruit-specific and inducible gene expression in oil palm.
油棕金属硫蛋白基因(所谓的 MSP1)的 1053bp 启动子及其 5'缺失与 GUS 报告基因融合,并在瞬时转化的油棕组织中进行分析。全长启动子在中果皮中的活性比在叶片中高 7 倍,比中果皮中的 CaMV35S 启动子高 1.5 倍。含有 5'非翻译区(UTR)的 1053bp 区域在中果皮中具有最高的活性,而 148bp 区域是最小启动子活性所必需的。在核苷酸(nt)-953 到-619 和-420 到-256 区域鉴定了两个正调控区。精细删除-619 到-420nt 区域导致在-598 到-577nt 区域鉴定出一个 21bp 负调控序列,该序列参与中果皮特异性表达。凝胶迁移率变动分析显示,叶片核提取物与 21bp 区域有强烈的相互作用。在该区域内鉴定出一个 AGTTAGG 核心序列,作为控制 MSP1 启动子果实特异性的新的负调控元件。脱落酸(ABA)和铜(Cu(2+))比茉莉酸甲酯(MeJa)和乙烯更有效地诱导启动子及其 5'缺失的活性。在中果皮中,全长启动子对 ABA 和 Cu(2+)的响应显示出更强的诱导性,而在叶片中,-420nt 片段对 ABA 和 Cu(2+)的诱导性最强。这些结果表明,MSP1 启动子及其调控区可用于工程油棕果实特异性和诱导性基因表达。