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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >X-RAY STAGE SENSITIVITY OF MOUSE OOCYTES AND ITS BEARING ON DOSE-RESPONSE CURVES
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X-RAY STAGE SENSITIVITY OF MOUSE OOCYTES AND ITS BEARING ON DOSE-RESPONSE CURVES

机译:小鼠卵囊的X射线阶段敏感性及其对剂量反应曲线的影响

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摘要

A detailed cytogenetic study of maturing mouse oocyte radiosensitivity was performed. Oocytes were collected at various intervals ranging from 1.5 days to 28.5 days after irradiation with 50, 100, 200, and 300R of acute X-rays. The observed sensitivity to chromatid aberration induction varied greatly over this time span. Sensitivity was lowest at the shortest time interval before ovulation and gradually increased up to 9.5 days; it then remained constant until insufficient numbers of oocytes could be collected. The data were analyzed in three ways. First, the data from all time intervals at each dose were pooled; second the data from the least sensitive time intervals, at each dose, were pooled, and third, the data from the period of uniform sensitivity, at each dose, were pooled. Dose-response regression analyses were done on these pooled data and the best fits obtained were to the models Y = a + bD + cD2 and Y = a + cD2 for both deletions and interchanges. This result is interpreted as indicating that the aberrations result from a predominantly two-track process. The cytogenetic data were compared to specific-locus mutation induction data in comparable oocyte stages, and qualitative similarity in dose i esponse characteristics were observed. This similarity is interpreted to mean that both events result from the same mechanism, and that the large dose-rate effect, observed for both events, is a reflection of the two-track component in the dose-response curves.
机译:进行了成熟的小鼠卵母细胞放射敏感性的详细细胞遗传学研究。在用50、100、200和300R急性X射线照射后的1.5天到28.5天的不同间隔内收集卵母细胞。在这段时间内,观察到的对染色单体畸变感应的灵敏度变化很大。在排卵前的最短时间间隔内,敏感性最低,并逐渐增加至9.5天。然后保持恒定,直到不能收集到足够数量的卵母细胞。对数据进行了三种分析。首先,汇总每个剂量下所有时间间隔的数据;第二,合并来自每个剂量的最低敏感时间间隔的数据,第三,合并来自每个剂量的均匀敏感时间段的数据。对这些汇总数据进行了剂量反应回归分析,获得的最佳拟合是模型Y = a + bD + cD2和Y = a + cD2的缺失和互换。该结果被解释为表明像差是由主要是两个轨道的过程引起的。在可比较的卵母细胞阶段,将细胞遗传学数据与特异性基因座突变诱导数据进行比较,并观察到剂量反应特性的定性相似性。这种相似性被解释为意味着这两个事件都是由相同的机制引起的,并且对于这两个事件观察到的大剂量率效应反映了剂量反应曲线中的两个轨迹成分。

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