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Study on the Relationship between Seed Absorbed Dose and Seed Composition of 252Cf Neutron Source Irradiated Bean Seed

机译:252Cf中子源辐照豆种子的种子吸收剂量与种子组成的关系研究

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摘要

This study aims to further identify the biological effects of neutron-irradiated plants and provides insights into the mutation breeding of such plants. In this study, the neutron irradiation device designed by our institute was used to analyze the relationship between the seed components in different legume crops and their neutron absorption dose rate, fission gamma absorption dose rate, and induced gamma absorption dose rate. The results show that the effect sizes of the components on the neutron absorbed dose rate are as follows: ash > fat > moisture > carbohydrate > protein. The effect sizes of the components on the absorbed dose rate of fission gamma are as follows: ash > moisture > fat > carbohydrate > protein. There is a positive correlation between fission gamma absorbed dose rate and the weight of ash, water and fat, while a negative correlation with carbohydrate and protein. However, the linear relationship between each component and the absorbed dose rate of induced gamma is not significant, this needs to be identified by further researches. Based on the results of the present study, we conclude that the neutron absorbed dose can be calculated without taking into account the fat composition of bean crop seeds (except for soybean seeds) in the process of mutation breeding induced by radiation. In special cases where the accuracy requirement of the dose rate is not high, it is possible to use protein instead of legume crop seeds for neutron absorption dose calculations.
机译:这项研究旨在进一步确定中子辐照植物的生物学效应,并为此类植物的突变育种提供见识。本研究采用我院设计的中子辐照装置,分析了不同豆类作物种子成分与中子吸收剂量率,裂变γ吸收剂量率和诱导γ吸收剂量率之间的关系。结果表明,各成分对中子吸收剂量率的影响大小为:灰分>脂肪>水分>碳水化合物>蛋白质。组分对裂变γ吸收剂量率的作用大小如下:灰分>水分>脂肪>碳水化合物>蛋白质。裂变γ吸收剂量率与灰分,水和脂肪的重量呈正相关,而与碳水化合物和蛋白质呈负相关。然而,各组分与诱导伽马吸收剂量率之间的线性关系并不显着,这需要进一步研究来确定。根据本研究的结果,我们得出结论,在辐射诱变育种过程中,无需考虑豆类作物种子(大豆种子除外)的脂肪成分,就可以计算出中子吸收剂量。在对剂量率的准确性要求不高的特殊情况下,可以使用蛋白质代替豆类作物种子来进行中子吸收剂量计算。

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