首页> 外文期刊>Acta Biologica Szegediensis >A modified method of total RNA isolation and quantitative analysis of superoxide dismutase gene expression from different organs of Ipomoea carnea
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A modified method of total RNA isolation and quantitative analysis of superoxide dismutase gene expression from different organs of Ipomoea carnea

机译:一种改进的总RNA分离方法和番木瓜不同器官超氧化物歧化酶基因表达的定量分析

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Ipomoea carnea (I. carnea) has unique biological features for the study of cellular and molecular adaptation mechanisms due to presence of diverse alkaloid and its cadmium tolerance capacity. The present study was directed to quantify total SOD content in different organs of the plant and further extended to relative quantification of cytosolic CuZn-SOD, Fe-SOD and Mn-SOD mRNA. A modified method of total RNA isolation from the plant I. carnea which is rich in alkaloids has been described. Total SOD content of apical and lateral bud was highest, but transcript abundance of cytosolic CuZn-SOD was much lower as compared to root and leaves. In these cases Mn- and Fe-SOD mRNA was relatively higher and perhaps that was contributing to the high SOD activity. However, less photosynthetically active organs like root and petal show less SOD activity but mRNA level of cytosolic CuZn-SOD was competitive in these cases. The results showed that SODs in different compartments are differently regulated and each SOD isoenzyme must be performing specific function related to its cellular localization and expression of the protein isoforms depend upon local accumulation of superoxide
机译:由于存在多种生物碱及其对镉的耐受能力,番薯(I. carnea)具有独特的生物学特性,可用于研究细胞和分子的适应机制。本研究旨在量化植物不同器官中总SOD含量,并进一步扩展到相对定量的胞质CuZn-SOD,Fe-SOD和Mn-SOD mRNA。已经描述了从富含生物碱的植物I.carnea分离总RNA的改良方法。顶芽和侧芽的总SOD含量最高,但与根和叶相比,胞质CuZn-SOD的转录本丰度要低得多。在这些情况下,Mn-和Fe-SOD mRNA相对较高,这可能是导致高SOD活性的原因。然而,在这些情况下,光合活性较低的器官(如根和花瓣)显示的SOD活性较低,但胞质CuZn-SOD的mRNA水平却具有竞争力。结果表明,不同隔室中的SOD受不同的调节,每种SOD同工酶必须执行与其细胞定位有关的特定功能,并且蛋白同工型的表达取决于超氧化物的局部积累

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