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正Text A:Irradiation mutagenesis Heavy ion ~7Li radiation mutagenesis was performed by the HI-13 tandem accelerator at the China Institute of Atomic Energy.The radiation procedure was configured as previously described,with a  相似文献   
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李多芳  曹天光  耿金鹏  展永 《物理学报》2015,64(24):248701-248701
在电离辐射速率理论的基础上, 结合电离辐射诱导植物的微观与宏观生物效应, 建立了电离辐射致植物诱变效应的损伤-修复模型. 通过对理论模型平衡态的数值求解, 研究了辐照植物各状态相对浓度随电离辐射剂量的变化. 研究表明当考虑植物的修复作用时, 理论模型能够给出“马鞍型”的植物存活率-剂量关系. 为进一步验证模型, 对重离子7Li辐射玉米自交系的实验数据进行理论模型拟合, 确定重离子辐射玉米的诱变效应参数, 理论计算的结果与实验数据符合较好. 电离辐射诱导植物的损伤-修复模型的建立为电离辐射诱导植物生物效应的机理研究和辐射诱变植物育种提供了理论依据和参考.  相似文献   
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To reveal the saddle-type dose effect relationship, we propose a radiation mutagenesis model based on maize nutrition difference resulting from heavy ion ~7Li radiation. Through irradiation mutagenesis, apparent trait selection, amino acids and fatty acids content determination, and modeling, dynamic evolution from microscopic damage and repair initiation to the final macroscopic biological effects are considered simultaneously. The results show that the steady state nature is independent of evolution time and only relates to different radiation doses.Heavy ion ~7Li radiation could effectively cause maize phenotypic variation and could improve nutritional quality.This model not only gives a good fit to the experimental results on most types of amino acids and fatty acids, but also offers an adequate explanation of the experimental phenomenon underlying the saddle-type bimodal dose effect. By combining experimental results with theoretical analyses, we suggest that the synergy of the stimulus effect and momentum transfer is the main cause of the saddle-type dose effect bimodal curve. This provides an effective strategy for conducting maize germplasm innovation.  相似文献   
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