Selection of Mutant Lines with Useful Traits by Irradiation of Proton Ion Beams and Gamma Ray in Rapeseed (Brassica napus L.)

양성자 및 감마선처리에 의한 유채 유용형질의 변이계통 선발

  • Kim, Jun-Su (Department of Horticulture, College of Agriculture and Life Science, Chonbuk National University) ;
  • Eun, Jong-Seon (Department of Horticulture, College of Agriculture and Life Science, Chonbuk National University)
  • 김준수 (전북대학교 농업생명과학대학 원예학과) ;
  • 은종선 (전북대학교 농업생명과학대학 원예학과)
  • Received : 2011.06.20
  • Published : 2011.06.30

Abstract

To develop new varieties of rapeseed (Brassica napus L.), the seeds of three varieties 'Naehan', 'Tammi', and 'Halla' were treated with proton ion beams and gamma rays (0~2,000 Gy), and then the characteristics of the mutants induced were examined up to $M_5$ generation to select the lines with fixed useful traits. In $M_5$ generation, we had selected several lines that were highly fixed for some useful traits such as plant height, maturity and flower size; one line with both earlier maturity and shorter stem than wild type, one line with only earlier maturity, two lines with shorter stem, one line with large flower, and one line with chlorophyll mutation. Among them, NP600-1-1-198-2 (induced from variety 'Naehan' was treated with proton ion beams 600 Gy) was superior for its distinction from the original variety, uniformity and stability. The unique characteristics of NP600-1-1-198-2 were dark green leaves, green stem, yellow flower, and black seed coat. Its flowering date was April 14, eight days earlier than its original variety, while seed maturity date was June 16 (five days earlier) and plant height 105 cm (shorter by 10 cm). NP600-1-1-198-2 has 52 silique per panicle, 6.2 cm silique length, 23 seeds per silique, 4.2 g per 1000 seeds and 45.9% oil content. The seed oil contained 67.8% of oleic acid, 16.7% of linoleic acid and 7.3% of linolenic acid but no erucic acid.

유채(Brassica napus L.) '내한', '탐미', '한라' 등 3품종의 종자에 양성자 및 감마선을 0~2,000 Gy로 처리하여 조숙, 단간, 다수성 등 농경상 유용형질을 갖고 기름함량과 지방산 중 올레인산 함량이 높은 바이오디젤용 품종을 육성하고자 본 연구를 실시하였다. $M_5$세대까지 세대를 진전시키고 특성조사를 실시하여 고정성이 높고 농경형질이 우수한 조숙 단간 1 계통, 조숙 1계통, 단간 2계통과 대화 1계통, 엽록소변이 1계통을 선발하였는데, '내한' 품종에 양성자 600 Gy를 처리하여 선발한 NP600-1-1-198-2계통은 차별성, 균일성, 안정성 등이 인정되었다. NP600-1-1-198-2계통의 고유특성 중 엽형은 하부익상전렬이고 엽색은 농녹색, 줄기색은 녹색이며 꽃색은 황색, 종피색은 흑색이다. 개화기는 모품종보다 8일이 빠른 4월 14일, 성숙기는 5일이 빠른 6월 16일로 조숙이고, 경장은 105 cm로 10 cm가 짧아진 단간이다. 1수협수는 52개, 협장은 6.2 cm로 중간, 1협결실수는 23개로 많은 편이고 천립중은 4.2 g으로 무겁고 기름함량은 45.9%로 높다. 종실로 부터 추출한 기름의 oleic acid는 67.8%로 높으며, linoleic acid와 linolenic acid는 각각 16.7%, 7.3%로 낮았고, erucic acid는 없는 것으로 나타났다.

Keywords

Acknowledgement

Supported by : 농림수산식품부

References

  1. Bang JK, Kim KS, Jang Ys, Kim YB. 2008. Bioenergy crop development and research trends. Korean J. Intl. Agri. 20:24-29.
  2. Demirbas A. 2007. Progress and recent trends in biofuels. Progress in Energy Combustion Science. 33:1-18. https://doi.org/10.1016/j.pecs.2006.06.001
  3. Eun JS, Kim JS, Lim HS, Han SK, Choi SR, Jang YS. 2007. Effect of proton ion and gamma-ray irradiation on radiosensitivity of M1 seedlings in Brassica napus. Kor. J. Hort. Sci. Technol. 25:17-23.
  4. Guan M, Li X. 2006. Effect of $^{12}C$ heavy ion beams irradiation on rapeseed (Brassica napus). Acta Agronomica Sinica. 32:878-884.
  5. Jang YS, Choi IH, Oh YB, Cho SY, Chong DH, Oh HJ. 1998. A new early-maturing flower of large size and the use of sightseeing rapeseed variety "Tammiyuchae". J. Indus. Crop Sci. 40:67-70.
  6. Jang YS. 2002. Prospect and situation of quality improvement in oilseed rape. Korean J. Crop Sci. 47:175-185.
  7. Jang YS, Kim CW, Choi IH, Oh YB, Jung BC, Bang JK, Kwon BS, Lee JI. 2002a. Development of maintainer and Mokpo-CGMS in oilseed rape (Brassica napus L.). Korean J. Breed. 34:163-167.
  8. Jang YS, Kim CW, Choi IH, Oh YB, Jung BC, Kim ST. 2002b. Yield performance and local adaptability of rapeseed $F_1$ hybrids. Korean J. Breed. 34:41-45.
  9. Jang YS, Kim CW, Choi IH, Oh YB, Jung BC, Park JH. 2002c. Method of seed production of $F_1$ hybrids in Brassica napus L. Korean J. Breed. 34:158-162.
  10. Jang YS, Kim KS, Lee YH, Cho HJ, Suh SJ. 2010. Review of property and utilization of crop for biodiesel. J. Plant Biotechnol. 37:25-46. https://doi.org/10.5010/JPB.2010.37.1.025
  11. Kim KS, Jang YS, Lee YH, Bang JK, Suh SJ. 2009. A new early maturing, high yielding and high oleic acid rapeseed (Brassica napus L.) of F1 hybrid "Boram". Kor. J. Breed. Sci. 41:664-668.
  12. Kim KS, Li MY, Jang YS, Park Yj, Bang JK. 2008. Production of haploids from proton ion and gamma-ray irradiation treated $M_2$ generation of isolated microspores in Brassica napus L. spp. oleifera. Korean J. Crop. Sci. 53:150-155.
  13. Kwon BS, Lee JI, Lee JI, Park HJ. 1985. Selection of mutants expressed quantitatively in $M_2$ generation of rapeseed. Korean J. Breed. 17:193-197.
  14. Lee JI, Kwon BS, Bang JK, Kim SK. 1984. Breeding for improvement fatty acid composition in rapeseed, Brassica napus L. Korean J. Breed. 16:294-300.
  15. Lee YI, Kim JS, Shin IC, Kang KK. 1996. Selection from gamma-ray induced leaf mutants in Perilla frutescens. Korean J. Breed. 28:75-79.
  16. Lee YI, Lee SB, Cho YK, Son GW, Eun JS, Bae CH, Abe T. 2006. Induction and selection of mutants in hot pepper by irradiation with C-12 ion beam. The 10th International Workshop on Accelerator and Beam Utilization. Epitome, Sep. 21-22, p. BU-20.
  17. Park YJ, Kim KS, Jang YS, Kim CW, Bang JK. 2006a. Comparison of frequency embryogenesis through microspore culture of domestic cultivars in Brassica napus L. Korean J. Crop. Sci. 51:237-241.
  18. Park YJ, Kim KS, Jang YS, Kim CW, Bang JK. 2006b. Comparison with in vivo pollen development of domestic cultivars in Brassica napus L. Korean J. Crop. Sci. 51: 242-246.
  19. Sekhon KS, Gupta SK, Ahuja KL, Jaswal SV. 1980. Variability in fatty acid composition in semi-spreading peanut types. Oleagineux. 35:406-412.
  20. Won JL, Kwon SH. 1979. Segregation and recessive deficit of visible-macro mutation in M3 generation of X-irradiated rice. Korean J. Breed. 11:10-14.
  21. Wright L. 2006. Worldwide commercial development of bionergy with a focus on energy crop-based projects. Biomass and Bioenergy. 30:706-714. https://doi.org/10.1016/j.biombioe.2005.08.008