[脑组织组织特异性超氧化物歧化酶基因表达对黑腹果蝇氧化应激敏感性和生存能力的影响]。

TSitologiia i genetika Pub Date : 2015-03-01
M V Vitushynska, N P Matiytsiv, Y Chernyk
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引用次数: 0

摘要

研究表明,功能基因敲除Sodl和Sod2及其在神经元和神经胶质组织中的过度表达增加了黑胃果蝇对氧化应激(OS)条件的敏感性。神经元中Sod2基因敲除的昆虫存活率最低,仅为20.5%。生存曲线的对比分析表明,研究基因组织特异性表达改变的成虫平均寿命和最长寿命缩短。在5%过氧化氢诱导的OS条件下,野生型俄勒冈R和转基因昆虫的寿命明显缩短。神经胶质组织中Sod基因表达的改变导致果蝇大脑在年轻时发生退行性变化。在昆虫衰老过程中,观察到促氧化剂的作用增加了神经退行性表型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Influence of tissue-specific superoxide dismutase genes expression in brain cells on Drosophila melanogaster sensitivity to oxidative stress and viability].

The study has shown that both functional gene knockout Sodl and Sod2 and their overexpression in neurons and glial tissue increase the sensitivity of Drosophila melanogaster to oxidative stress (OS) conditions. The lowest survival rate was only 20.5% in insects with Sod2 knockout in neurons. Comparative analysis of the survival curves showed that adults with altered tissue-specific expression of the studied genes had reduced average and maximum life span. Under OS conditions induced by 5% hydrogen peroxide the life spans of wild type Oregon R and transgenic insects were significantly reduced. Altered Sod gene expression in glial tissue leads to degenerative changes in Drosophila brain at the young age. During the aging of insects and the action of pro-oxidants increasing of neurodegenerative phenotype is observed.

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