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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Antioxidant Gene Expression in Active and Sedentary House Mice (Mus domesticus) Selected for High Voluntary Wheel-Running Behavior
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Antioxidant Gene Expression in Active and Sedentary House Mice (Mus domesticus) Selected for High Voluntary Wheel-Running Behavior

机译:在主动和久坐的家鼠(家蝇)的抗氧化基因表达选择高自愿性车轮行驶行为。

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We present liver mRNA levels of the two antioxidant enzymes catalase (CAT) and Mn-superoxide dismutase (SOD2) in four treatment groups of house mice assayed by RNase protection at 20 months of age. These groups were mice from four replicate selection and four replicate control lines from the sixteenth generation of selective breeding for high voluntary wheel running, housed with or without running wheels from age 3 weeks through 20 months. Exercising control females had induced CAT expression; SOD2 exhibited a similar pattern in females from two of the four control lines. Exercising male mice had induced CAT expression, but not SOD2 expression, irrespective of genetic background. We discuss these results with respect to both evolutionary (genetic) and training (exercise-induced) adaptations and explore predictions of these results in relation to the oxidative-damage theory of senescence.
机译:我们在四个月大时通过RNase保护检测了家鼠的四个治疗组中两种抗氧化酶过氧化氢酶(CAT)和Mn超氧化物歧化酶(SOD2)的肝mRNA水平。这些组是来自第16代选择性育种的四个重复选择小鼠和四个重复控制品系的小鼠,用于高自愿性轮转,年龄从3周到20个月不等。行使对照的雌性诱导了CAT表达。 SOD2在来自四个控制系中的两个的雌性中表现出相似的模式。行使雄性小鼠可诱导CAT表达,但不诱导SOD2表达,而与遗传背景无关。我们讨论了有关进化(遗传)和训练(运动引起的)适应性的这些结果,并探讨了与衰老的氧化损伤理论相关的这些结果的预测。

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