首页> 外文期刊>Journal of Plant Physiology >Response to metal stress of Nicotiana langsdorffii plants wild-type and transgenic for the rat glucocorticoid receptor gene
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Response to metal stress of Nicotiana langsdorffii plants wild-type and transgenic for the rat glucocorticoid receptor gene

机译:野生型和转基因烟草对大鼠糖皮质激素受体基因金属胁迫的响应

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Recently our findings have shown that the integration of the gene coding for the rat gluco-corticoid receptor (GR receptor) in Nicotiana langsdorffii plants induced morphophysiological effects in transgenic plants through the modification of their hormonal pattern. Phytohormones play a key role in plant responses to many different biotic and abiotic stresses since a modified hormonal profile up-regulates the activation of secondary metabolites involved in the response to stress. In this work transgenic GR plants and isogenic wild type genotypes were exposed to metal stress by treating them with 30 ppm cadmium(II) or 50 ppm chromium(VI). Hormonal patterns along with changes in key response related metabolites were then monitored and compared. Heavy metal up-take was found to be lower in the GR plants. The transgenic plants exhibited higher values of S-abscisic acid (S-ABA) and 3-indole acetic acid (IAA), salicylic acid and total polyphenols, chlorogenic acid and antiradical activity, compared to theuntransformed wild type plants. Both Cd and Cr treatments led to an increase in hormone concentrations and secondary metabolites only in wild type plants. Analysis of the results suggests that the stress responses due to changes in the plant's hormonalsystem may derive from the interaction between the GR receptor and phytosteroids, which are known to play a key role in plant physiology and development.
机译:最近,我们的研究结果表明,在编码烟草的植物中,编码大鼠糖皮质激素受体(GR受体)的基因的整合通过改变其激素模式而在转基因植物中诱导了形态生理效应。植物激素在植物对许多不同的生物和非生物胁迫的响应中起着关键作用,因为修饰的激素谱上调了参与对胁迫的响应的次生代谢物的活化。在这项工作中,通过用30 ppm镉(II)或50 ppm铬(VI)处理转基因GR植物和同基因野生型基因型,使其受到金属胁迫。然后监测和比较激素模式以及关键应答相关代谢产物的变化。发现GR植物中重金属的吸收较低。与未转化的野生型植物相比,转基因植物显示出更高的S-脱落酸(S-ABA)和3-吲哚乙酸(IAA),水杨酸和总多酚,绿原酸和抗自由基活性。 Cd和Cr处理仅在野生型植物中导致激素浓度和次生代谢产物增加。结果分析表明,植物激素系统变化引起的胁迫反应可能源自GR受体与植物类固醇之间的相互作用,众所周知,它们在植物生理和发育中起着关键作用。

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