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Multi-Level Effects of Low Dose Rate Ionizing Radiation on Southern Toad Anaxyrus Bufo terrestris

机译:低剂量率电离辐射对蟾蜍南部蟾蜍的多重影响

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摘要

Despite their potential vulnerability to contaminants from exposure at multiple life stages, amphibians are one of the least studied groups of vertebrates in ecotoxicology, and research on radiation effects in amphibians is scarce. We used multiple endpoints to assess the radiosensitivity of the southern toad (Anaxyrus [Bufo] terrestris) during its pre-terrestrial stages of development –embryonic, larval, and metamorphic. Toads were exposed, from several hours after oviposition through metamorphosis (up to 77 days later), to four low dose rates of 137Cs at 0.13, 2.4, 21, and 222 mGy d-1, resulting in total doses up to 15.8 Gy. Radiation treatments did not affect hatching success of embryos, larval survival, or the length of the larval period. The individual family variation in hatching success of embryos was larger than the radiation response. In contrast, newly metamorphosed individuals from the higher dose-rate treatments had higher mass and mass/length body indices, a measure which may relate to higher post-metamorphic survival. The increased mass and index at higher dose rates may indicate that the chronic, low dose rate radiation exposures triggered secondary responses. Additionally, the increases in growth were linked to a decrease in DNA damage (as measured by the Comet Assay) in red blood cells at a dose rate of 21 mGy d-1 and a total dose of 1.1 Gy. In conclusion, the complex effects of low dose rates of ionizing radiation may trigger growth and cellular repair mechanisms in amphibian larvae.
机译:尽管两栖动物可能在多个生命阶段受到暴露而容易受到污染物的伤害,但它们是生态毒理学研究最少的脊椎动物群体之一,而且对两栖动物辐射效应的研究很少。我们使用多个端点来评估南部蟾蜍(陆生蟾蜍)在陆前发育阶段(胚胎,幼虫和变态)的放射敏感性。卵从变态后到产卵后数小时(直到77天后)都暴露于0.1s,2.4、21和222 mGy d -1的四种低剂量 137 Cs ,导致总剂量高达15.8 Gy。放射治疗不会影响胚胎的孵化成功率,幼虫存活率或幼虫期的长度。胚胎孵化成功的个体家族差异大于辐射响应。相反,来自较高剂量率治疗的新变态个体具有较高的质量和质/体长指数,这一指标可能与较高的后变态存活率有关。在较高剂量率下质量和指数的增加可能表明慢性,低剂量率辐射暴露触发了次级反应。此外,生长的增加与剂量为21 mGy d -1 且总剂量为1.1 Gy的红细胞DNA损伤的减少(通过彗星试验测定)有关。 。总之,低剂量电离辐射的复杂作用可能会触发两栖类幼虫的生长和细胞修复机制。

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