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Impact of ubiquitous inhibitors on the GUS gene reporter system: evidence from the model plants Arabidopsis, tobacco and rice and correction methods for quantitative assays of transgenic and endogenous GUS

机译:普遍存在的抑制剂对GUS基因报告系统的影响:来自拟南芥,烟草和水稻的模型植物的证据以及转基因和内源GUS定量测定的校正方法

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Background The β-glucuronidase (GUS) gene reporter system is one of the most effective and employed techniques in the study of gene regulation in plant molecular biology. Improving protocols for GUS assays have rendered the original method described by Jefferson amenable to various requirements and conditions, but the serious limitation caused by inhibitors of the enzyme activity in plant tissues has thus far been underestimated. Results We report that inhibitors of GUS activity are ubiquitous in organ tissues of Arabidopsis, tobacco and rice, and significantly bias quantitative assessment of GUS activity in plant transformation experiments. Combined with previous literature reports on non-model species, our findings suggest that inhibitors may be common components of plant cells, with variable affinity towards the E. coli enzyme. The reduced inhibitory capacity towards the plant endogenous GUS discredits the hypothesis of a regulatory role of these compounds in plant cells, and their effect on the bacterial enzyme is better interpreted as a side effect due to their interaction with GUS during the assay. This is likely to have a bearing also on histochemical analyses, leading to inaccurate evaluations of GUS expression. Conclusions In order to achieve reliable results, inhibitor activity should be routinely tested during quantitative GUS assays. Two separate methods to correct the measured activity of the transgenic and endogenous GUS are presented.
机译:背景技术β-葡萄糖醛酸苷酶(GUS)基因报告系统是研究植物分子生物学中基因调控的最有效和采用的技术之一。 GUS测定法的改进方案已使Jefferson所描述的原始方法适合各种要求和条件,但是迄今为止,人们一直低估了植物组织中酶活性抑制剂引起的严重局限性。结果我们报道,在拟南芥,烟草和水稻的器官组织中普遍存在GUS活性抑制剂,并且在植物转化实验中显着影响GUS活性的定量评估。结合以前关于非模型物种的文献报道,我们的发现表明抑制剂可能是植物细胞的常见成分,对大肠杆菌酶的亲和力可变。对植物内源性GUS抑制能力的降低证明了这些化合物在植物细胞中起调节作用的假设,并且由于它们在测定过程中与GUS相互作用,因此它们对细菌酶的作用更好地解释为副作用。这也可能与组织化学分析有关,导致对GUS表达的评估不准确。结论为了获得可靠的结果,应在定量GUS分析过程中常规测试抑制剂的活性。提出了两种单独的方法来校正转基因和内源GUS的活性。

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