DOI QR코드

DOI QR Code

국내개발 이탈리안 라이그라스 품종 성숙종자의 식물체 재분화

Plant Regeneration From Mature Seed of Domestic Italian Ryegrass Cultivar

  • 김경희 (경상대학교 응용생명과학부 동물생명과학과) ;
  • 김용구 (경상대학교 응용생명과학부 동물생명과학과) ;
  • 허성현 (경상대학교 응용생명과학부 동물생명과학과) ;
  • 이기원 (농촌진흥청 국립축산과학원) ;
  • 이병현 (경상대학교 응용생명과학부 동물생명과학과)
  • Kim, Kyung-Hee (Dept. of Animal Biosciences, IALS, PMBBRC, Division of Applied Life Sciences (BK21), Gyeongsang National University) ;
  • Kim, Yong-Goo (Dept. of Animal Biosciences, IALS, PMBBRC, Division of Applied Life Sciences (BK21), Gyeongsang National University) ;
  • Heo, Sung-Hyun (Dept. of Animal Biosciences, IALS, PMBBRC, Division of Applied Life Sciences (BK21), Gyeongsang National University) ;
  • Lee, Ki-Won (National Institute of Animal Science, RDA) ;
  • Lee, Byung-Hyun (Dept. of Animal Biosciences, IALS, PMBBRC, Division of Applied Life Sciences (BK21), Gyeongsang National University)
  • 투고 : 2011.08.10
  • 심사 : 2011.09.16
  • 발행 : 2011.09.30

초록

국내 개발 재배품종인 코스피드 이탈리안 라이그라스의 최적 배양조건을 확립하기 위하여 성숙종자로부터 캘러스 유도조건 및 식물체 재분화 조건을 조사하였다. 캘러스 유도시 첨가되는 auxin으로는 2,4-D가 NAA 보다 효율적이었으며, 5 mg/L 2,4-D가 첨가된 N6 배지에서 캘러스가 가장 높은 빈도로 유도되었다. 캘러스로부터 식물체 재분화는 1 mg/L 2,4-D와 5mg/L BA가 첨가된 N6 배지에서 배양했을 때 67% 이상의 재분화율을 나타내었다. 기본배지의 종류에 따른 배양효율의 차이는 캘러스 유도와 식물체 재분화에는 N6배지가 효과적이었으며, 재분화배지에 첨가되는 탄소원에는 30g/L의 sucrose가 가장 높은 재분화 효율을 나타내었다. 본 연구를 통하여 확립된 고효율 재분화 시스템은 분자육종을 통한 신품종 이탈리안라이그라스의 실용화 연구에 큰 도움이 될 것으로 추측된다.

In order to improve forage characteristics of Italian ryegrass by genetic transformation, an efficient callus induction from mature seed and optimal plant regeneration system were established using a domestic cultivar 'Kospeed'. Addition of 5 mg/L of 2,4-D showed highest frequency of embryogenic callus induction from mature seeds. N6 medium showed higher frequency of both callus induction and plant regeneration as compared with MS and SH medium. The highest plant regeneration frequency 67% was obtained when embryogenic calli were transferred to N6 medium containing 1 mg/L 2,4-D and 5 mg/L BA. Supplementation of regeneration medium with sucrose at 30 g/L level maximized regeneration frequency as compared to the other concentrations. These data would be very helpful for molecular breeding of domestic Italian ryegrass cultivar through genetic transformation.

키워드

참고문헌

  1. 최기준, 김원호, 서 성. 2008. 한국에서 동계작물생산과 이용. 한국초지조사료학회 학술발표회. pp. 17-48.
  2. Bai, Y. and R. Qu. 2000. An evaluation on callus induction and plant regeneration of 25 turf-type tall fescue cultivars. Grass Forage Sci. 55:326-330. https://doi.org/10.1046/j.1365-2494.2000.00235.x
  3. Choi, G.J., Y.W. Rim, K.Y. Kim, S.H. Choi, B.R. Sung, W.H. Kim and Y.C. Lim. 2000. A cold-tolerant and high-yielding Italian ryegrass (Lolium multiflorum L.) new variety 'Hwasan 101'. J. Kor. Grassl. Sci. 20:1-6.
  4. Chu, C.C., C.S. Wang, C.C. Sun and F.Y. Bi. 1975. Establishment of an efficient medium for anther culture of rice through comparative experiments on the nitrogen sources. Scienta Sinic. 18:659-668.
  5. Creemers-Molenaar J., J.P.M. Loeffen, P. Van der Valk. 1988). The effect of 2,4-dichlophenoxyacetic acid and donor plant environment on plant regeneration from immature inflorescence derived callus of Lolium perenne L. and Lolium multiflorum L. Plant Sci. 57:165-172. https://doi.org/10.1016/0168-9452(88)90083-0
  6. Dale P.J. 1980. Embryoids from cultured immature embryos of Lolium multiflorum. Pflanzen Physiol. 100:73-77. https://doi.org/10.1016/S0044-328X(80)80187-5
  7. De K., G.J.M. and A. Calamar. 2002. Effect of sucrose on adventitious root regeneration in apple. Plant Cell Tiss. Org. Cult., 70:207-212. https://doi.org/10.1023/A:1016356123367
  8. De N., V.B.P. and W.C. Otoni. 2003. Carbon sources and their osmotic potential in plant tissue culture: does it matter? Scient. Hort. 97:193-202. https://doi.org/10.1016/S0304-4238(02)00231-5
  9. Forster, J.W. and G. Spangenberg. 1999. Forage and turf grass biotechnology: principles, methods and prospects. In: Setlow JK (eds), Genetic engineering: principles and methods, Vol 21, Kluwer Academic Publishers, New York, pp. 191-237.
  10. Griffin, J.D. and M.S. Dibble. 1995. High frequency plant regeneration from seed-derived callus cultures of Kentucky bluegrass (Poa pratensis L.). Plant Cell Rep. 14:721-724.
  11. Hides D.H., C.A. Kute and A.H. Marshall. 1993. Seed development and seed yield potential of Italian ryegrass (Lolium multiflorum Lam.) populations. Grass and Forage Sci. 48:181-188. https://doi.org/10.1111/j.1365-2494.1993.tb01851.x
  12. Isselstein, J. 1993. Influence of slight shading, sward density and nitrogen fertilization on yield and nutritive value of Lolium multiflorum Lam. J Agro and Crop Sci. 170:341-347. https://doi.org/10.1111/j.1439-037X.1993.tb01094.x
  13. Kumlehn, J. and W. Nitzsche. 1995. Plant regeneration from isolated ovules of Italian ryegrass (Lolium multiflorum Lam.): effect of 2,4-D and different cytokinins supplemented to the ovule culture medium. Plant Sci. 111:107-116. https://doi.org/10.1016/0168-9452(95)04232-J
  14. Lee, H.S., K.M. Kang and J. Jo. 2001. Factors affecting plant regeneration from seed-derived calli in Italian ryegrass (Lolium multiflorum Lam). Kor. J. Plant Tiss. Cult. 28:323-328.
  15. Lee, S.H., Lee, D.G., Kim, J.S. and B.H. Lee. 2003. High-frequency plant regeneration from mature seed-derived callus culture of orchardgrass. Kor. J. Plant Biotechnology 30:341-346. https://doi.org/10.5010/JPB.2003.30.4.341
  16. Murashige, T. and F. Skoog. 1962. A revise medium for rapid growth and bioassays with tobacco tissue cultures. Physiol. Plant 15:473-497. https://doi.org/10.1111/j.1399-3054.1962.tb08052.x
  17. Park, B.H., B.S. Park and J.H. Kang. 1987. A comparison between diploid and tetraploid cultivars of Lolium multiflorum Lam. J. Kor. Grassland Sci. 7:135-139.
  18. Schenk, R.U. and A.C. Hildebrandt. 1972. Medium and techniques for induction and growth of monocotyledonous and dicotyledonous plant cell cultures. Can. J. Bot. 50:199-204. https://doi.org/10.1139/b72-026
  19. Spangenberg, G., Z.Y. Wang and P. Potrykus. 1998. Biotechnology in forage and turf grass improvement. In: Frankel et al. (eds), Monographs on theoretical and applied genetics, Vol. 23, Springer Verlag, Heidelberg, pp. 192-210.