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慢性跨代低剂量γ辐射对鱼类(Oryzias latipes)DNA 损伤的研究。

DNA damage caused by chronic transgenerational exposure to low dose gamma radiation in Medaka fish ( Oryzias latipes ).

机构信息

a Center for Research on Occupational and Environmental Toxicology, Oregon Health & Science University, Portland, Oregon 97239;

出版信息

Radiat Res. 2013 Sep;180(3):235-46. doi: 10.1667/RR3190.1. Epub 2013 Aug 6.

Abstract

The effect of transgenerational exposure to low dose rate (2.4 and 21 mGy/day) gamma irradiation on the yield of DNA double-strand breaks and oxidized guanine (8-hydroxyguanine) has been studied in the muscle and liver tissue of a model organism, the Japanese medaka fish. We found the level of unrepaired 8-hydroxyguanine in muscle tissue increased nonlinearly over four generations and the pattern of this change depended on the radiation dose rate, suggesting that our treatment protocols initiated genomic instability and an adaptive response as the generations progressed. The yield of unrepaired double-strand breaks did not vary significantly among successive generations in muscle tissue in contrast to liver tissue in which it varied in a nonlinear manner. The 8-hydroxyguanine and DSB radiation yields were significantly higher at 2.4 mGy/day than at 21 mGy/day in both muscle and liver tissue in all generations. These data are consistent with the hypothesis of a threshold for radiation-induced activation of DNA repair systems below which tissue levels of DNA repair enzymes remain unchanged, leading to the accumulation of unrepaired damage at very low doses and dose rates.

摘要

已经在一种模式生物,日本青鳉鱼的肌肉和肝脏组织中研究了跨代暴露于低剂量率(2.4 和 21 mGy/天)γ辐射对 DNA 双链断裂和氧化鸟嘌呤(8-羟基鸟嘌呤)的产生的影响。我们发现肌肉组织中未修复的 8-羟基鸟嘌呤水平在四代内呈非线性增加,这种变化的模式取决于辐射剂量率,表明我们的处理方案引发了基因组不稳定性和随着代际的发展而产生的适应性反应。与肝脏组织不同,肌肉组织中未修复的双链断裂的产生在连续几代中没有显著变化。在所有代中,肌肉和肝脏组织中的 8-羟基鸟嘌呤和 DSB 辐射产生率在 2.4 mGy/天均显著高于 21 mGy/天。这些数据与以下假设一致,即辐射诱导的 DNA 修复系统的激活存在一个阈值,低于该阈值,DNA 修复酶的组织水平保持不变,导致在非常低的剂量和剂量率下未修复的损伤积累。

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