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Gene fusions to lacZ reveal new expression patterns of chimeric genes in transgenic plants.

机译:与lacZ的基因融合揭示了嵌合基因在转基因植物中的新表达模式。

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摘要

The lacZ gene of Escherichia coli, coding for beta-galactosidase, is a widely used reporter gene for gene expression studies in microbial and animal systems. To demonstrate that it is also a powerful reporter gene in plants, lacZ was fused to 5' regulatory elements of several genes known to be functional in plant cells. By measuring LacZ activities in transgenic plants containing these gene constructs, we showed that the reporter is correctly monitoring the regulatory properties of the well-characterized promoters fused to lacZ. beta-Galactosidase was assayed directly in plant extracts when they contained high levels of LacZ or, when LacZ was expressed at low level, by separating the endogenous and LacZ activities electrophoretically and detecting the enzymes with a fluorogenic substrate. The most outstanding property of the marker is its amenability to histochemical detection. Due to its stability, LacZ can be fixed in the tissue with glutaraldehyde without loss of activity and detected with high resolution by using XGal. We could reveal expression patterns unnoticed earlier for many of the regulatory elements studied. The chlorophyll a/b binding protein gene, expressed at very high levels in green tissues, is also expressed at a low level in the vascular cylinder of the root. The Agrobacterium T-DNA gene encoding octopine synthase is especially active in the epidermis of the root tip and the TR2' gene was shown to be root specific in the intact plant and stimulated by wounding in the leaf tissue. The TR1' gene, fused to nptII, shows similar characteristics suggesting co-regulation of this tightly linked dual promoter.
机译:大肠杆菌的lacZ基因编码β-半乳糖苷酶,是在微生物和动物系统中进行基因表达研究的广泛使用的报告基因。为了证明它也是植物中强大的报告基因,将lacZ与已知在植物细胞中起作用的几个基因的5'调控元件融合。通过测量含有这些基因构建体的转基因植物中的LacZ活性,我们表明报道者正确监测了与lacZ融合的特征明确的启动子的调控特性。当植物提取物中含有高水平的LacZ时,或当LacZ以低水平表达时,可通过电泳分离内源和LacZ活性并用荧光底物检测酶,直接在植物提取物中测定β-半乳糖苷酶。标记的最突出特性是其对组织化学检测的适应性。由于其稳定性,LacZ可以用戊二醛固定在组织中而不会丧失活性,并且可以使用XGal进行高分辨率检测。对于许多研究的调控元件,我们可以揭示出较早时未注意到的表达模式。在绿色组织中高水平表达的叶绿素a / b结合蛋白基因在根的维管中也低表达。编码章鱼碱合酶的农杆菌T-DNA基因在根尖的表皮中特别活跃,并且TR2'基因在完整植物中显示为根特异性,并通过叶组织的损伤而刺激。与nptII融合的TR1'基因显示出相似的特征,表明该紧密连接的双启动子的共调控。

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