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Ubiquitous presence of β-glucuronidase (GUS) in plants and its regulation in some model plants

机译:β-葡萄糖醛酸苷酶(GUS)在植物中的普遍存在及其在某些模型植物中的调控

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The enzyme β-glucuronidase (GUS) is well characterized in animals and microbes. However, this enzyme is not well studied in plants and is widely assumed to be absent in them. In this study we document the ubiquitous presence of GUS in the model plants Arabidopsis thaliana, Oryza sativa, Nicotiana tabacum and Zea mays and record its expression pattern. The pH of the assay buffer was found to be critical with pH 4.0 being optimum for detection in all the species. GUS in plants appears to be associated with growth. In general, younger regions of the organs showed more GUS activity than the older and more mature tissues. In Brassica juncea roots stained for GUS, intense blue color could be seen in the trichoblast cells and the growing root hair cells as compared to the non-root hair forming epidermal cells or the fully elongated root hairs. Cotton fibers showed high GUS activity during the initial phase of elongation while the seed coat, from which the fibers formed, did not stain for GUS activity. The activity in the fibers disappeared after they were fully elongated. The level of GUS activity increased 2.58 folds in leaf tissues of N. tabacum when cultured in MS medium supplemented with 6-benzylaminopurine, while gibberellic acid enhanced GUS activity 2.9 folds in the inter-nodal regions of rice in 12-h treatment. In addition, elongation of stem, root and root hairs in tobacco seedlings was strongly inhibited by the specific inhibitor of GUS, saccharo-1-4-lactone in a reversible manner. Taken together, these evidences suggest a probable association of plant GUS in cell growth.
机译:β-葡萄糖醛酸苷酶(GUS)在动物和微生物中具有良好的特征。然而,这种酶在植物中没有得到很好的研究,并被广泛认为在植物中不存在。在这项研究中,我们记录了模型植物拟南芥,水稻,烟草和玉米中普遍存在的GUS,并记录了其表达模式。发现测定缓冲液的pH至关重要,其中pH 4.0对于所有种类的检测都是最佳的。植物中的GUS似乎与生长有关。通常,较年轻和较成熟的组织,较年轻的器官区域显示出更多的GUS活性。在芥菜根部染有GUS的植物中,与形成根系的非根系细胞或完全拉长的根系毛发相比,在滴管母细胞和正在生长的根系毛发细胞中可见到强烈的蓝色。棉纤维在伸长的初始阶段显示出高的GUS活性,而形成纤维的种皮没有染上GUS活性。完全伸长后,纤维中的活性消失。在添加6-苄基氨基嘌呤的MS培养基中培养时,烟草的叶片中GUS活性水平提高了2.58倍,而赤霉素在12小时处理的水稻节间区域中的GUS活性提高了2.9倍。此外,GUS的特异性抑制剂saccharo-1-4-lactone以可逆的方式强烈抑制了烟草幼苗中茎,根和根毛的伸长。综上所述,这些证据表明植物GUS可能与细胞生长有关。

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