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首页> 外文期刊>Comparative biochemistry and physiology, Part B. Biochemistry & molecular biology >Glutathione S-transferases of Aulacorthum solani and Acyrthosiphon pisum: partial pruification and characterization
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Glutathione S-transferases of Aulacorthum solani and Acyrthosiphon pisum: partial pruification and characterization

机译:谷胱甘肽的S-transferases Aulacorthum以上和Acyrthosiphon pisum:部分pruification和描述

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摘要

Glutathione S-transferases (GST) play an important role in the detoxification of many substances including allelochemicals from plants. Brassicaceae plants contain glucosinolates and emit volatile isothiocyanates which affect the GST system. A comparison of the GST of two aphid species, the generalist Aulacorthum solani found on Brassicaceae and the Fabaceae specialist Acyrthosiphon pisum, was made to try to explain their respective feeding behaviour. Differences of GST were determined among the two aphid species based on purification by affinity chromatography, SDS-PAGE and on kinetic studies. Purification yields using an epoxy-activated Sepharose 6B column were highly different for the two aphid species (18% and 34% for A. solani and A. pisum, respectively). These variations were confirmed by SDS-PAGE. While only a 27-kDa band was observed for A. pisum, two bands of approximately 25-kDa were visualized for the generalist aphid, .d. solani. Considering the kinetic results, differences of Km and V max were observed following the aphid species when a range of substrates (CDNB and DCNB) and GSH concentrations were tested. Studies on the detoxification enzymes of generalist and specialist herbivores would be undertaken to determine accurately the effect of the host plant on the organisms eating them, particularly in terms of biochemical and ecological advantages.
机译:谷胱甘肽S-transferases(销售税)发挥重要在许多物质的解毒作用包括自然植物。含有芥子油和十字花科植物会释放出挥发性的异硫氰酸酯的影响销售税系统。物种,通才Aulacorthum以上发现十字花科和蝶形花科专家Acyrthosiphon pisum,试图解释各自的摄食行为。销售税的测定两种蚜虫物种根据亲和纯化色谱法、sds - page和动力学研究。使用一个epoxy-activated净化收益率琼脂糖6 b柱高度不同两种蚜虫(a . 18%和34%以上分别为a pisum)。经sds - page。观察a . pisum两乐队的大约25-kDa可视化了通才蚜虫,.d。公里的动力学结果,差异和V max观察到蚜虫物种后当一个范围基板(CDNB和DCNB)以及谷胱甘肽浓度进行了测试。解毒酶的多面手专家食草动物会承担确定准确的寄主植物的影响在生物吃他们,特别是在生物化学和生态方面的优势。

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