高能重离子束辐射水稻垩白性状的变异分析及突变体筛选

Variation analysis and mutant screening of rice chalkiness by high-energy heavy ion beam radiation

  • 摘要: 利用100 Gy、150 Gy和180 Gy剂量的高能重离子束,辐射诱变水稻品种通禾66、绥粳18、中科发5和吉粳809,测定其M2代突变体的垩白粒率和垩白度,进行变异分析,筛选垩白粒率和垩白度的突变体,为探究高能重离子束辐射北方粳稻垩白性状变异规律和水稻外观品质改良育种工作奠定基础。研究结果表明:不同剂量下各水稻品种M2代突变体垩白性状发生变异程度不同,垩白粒率的变异范围在0 ~ 80.2%,垩白度的变异范围在0 ~ 44.7%,总体趋于低垩白的偏态分布;4个粳稻品种中,绥粳18的M2代突变体的垩白变异表现最为明显,150 Gy下垩白粒率和垩白度的变异系数最大,分别为191%和253%;中科发5和吉粳809的M2代突变体垩白性状分布的离散程度随剂量的升高而增加,通禾66反之;在所有M2代突变体中,共筛选出127份高垩白粒率突变体材料(5.1% ~ 80.2%)、63份低垩白粒率突变体材料(0 ~ 6.3%)、133份高垩白度突变体材料(1.6% ~ 44.7%)和48份低垩白度突变体材料(0 ~ 1.8%)。研究结果为水稻外观品质改良育种提供遗传材料。

     

    Abstract: The rice (Oryza sativa L.) varieties Tonghe 66, Suijing 18, Zhongkefa 5 and Jijing 809 were irradiated by high-energy heavy ion beam with doses of 100 Gy, 150 Gy and 180 Gy. The chalkiness rate and chalkiness degree of rice M2 mutants were measured. Analyzing the variation and screening mutants with different chalkiness rate and chalkiness degree can study the inheritance of rice chalkiness in Japonica rice irradiated by high-energy heavy ion beam radiation, and serve the breeding for appearance quality improvement of rice. The results showed that the chalkiness variation degree of each rice variety M2 mutants was distinct under different doses. The range of chalkiness rate was 0 − 80.2% and the chalkiness degree was 0 − 44.7%, and the chalkiness tended to low skew distribution. Among the four japonica rice varieties, the chalkiness variation of Suijing 18 M2 mutants was the most obvious. At the dose of 150 Gy, the maximum variable coefficient of chalkiness rate and chalkiness degree was 191% and 253%, respectively. The higher the dose, the more scattered the chalkiness distribution of Zhongkefa 5 and Jijing 809 M2 mutants, while Tonghe 66 was the opposite. Among all the M2 mutants, the high (5.1% − 80.2%) and low (0 − 6.3%) chalkiness rate mutant materials was screened for 127 and 63, respectively. In addition, 133 mutants with high (1.6% − 44.7%) chalkiness degree and 48 mutants with low (0 − 1.8%) were screened. The results provide genetic materials for rice appearance quality improvement breeding.

     

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