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Chromosome Doubling of Allium wakegi Araki by In Vitro Cultures

기내배양에 의한 쪽파의 체세포 염색체 배가

  • Yim, Sun-Hee (National Plant Quarantine Service, Department of Horiculture, Chonnam National University) ;
  • Ahn, Chang-Soon (Department of Horiculture, Chonnam National University) ;
  • Jeong, Chang-Nam (National Plant Quarantine Service) ;
  • Han, Tae-Ho (National Institute fo Agricultural Biotechnology Rural Development Administration)
  • Published : 2002.12.01

Abstract

Induction of embryogenic callus from Allium wakegi Araki explants was promoted on medium containing 2,4-D, and production of abnormal embryos from the embryogenic callus increased as 2,4-D concentration was raised. Shoot tip was found to be the best explant source for embryogenic callus formation followed in the order by bulb scale and leaf section. Medium containing 0.09 M sucrose was effective for embryogenic callus production. The regenerants from embryogenic callus on medium containing 2,4-D and BA at different concentrations was consisted of diploids, tetraploids and a few mixaploids of 2n+4n, and their chromosomal aberration rate ranged from 8.0 to 33.3%. Frequency of chromosomal aberrants was the highest (18.7%) in the regenerants obtained from bulb scale-derived embryogenic callus among others. Plant regeneration rate was high (33.5%) from the shoot tip-derived embryogenic callus and the frequency of chromosomal aberrants was very low (7.0%). The plantlets regenerated on medium containing 0.26 M sucrose resulted in high chromosomal aberrants. The regenerants on medium containing sucrose at 0.09∼0.20 M produced chromosomal aberrants at around 15.2∼16.6%.

쪽파의 배발생 캘러스 유도에는 2,4-D의 단독첨가가 보다 효과적이었으나, 2,4-D의 농도가 높을수록 기형배의 배발생율이 높았다. BA를 혼합첨가하였을 때는 기형배가 보다 많이 발생하였다. 배형성을 위한 외식편으로는 경정이 가장 좋았으며 그 다음 인편, 엽조직 순이었다. 또한 0.09 M의 sucrose를 첨가한 배지에서 배발생 callus 유기가 가장 좋았다. 2,4-D와 BA의 농도가 상이한 배지에서 유기된 배발생 callus로부터 재분화된 식물체의 염색체 변이율은 8∼33.3%였으며, 4배체와 2배체+4배체의 혼수체가 나타났다. 염색체 변이율은 인편 유래의 식물체에서 18.7%로 가장 높았다. 경정 부위에서 유기된 배발생 callus는 33.5%로 식물체 재분화율이 높았지만, 염색체 변이율은 7.0% 정도로 낮았다. 또한 0.26 M sucrose배지에서 배양한 식물체에서 염색체 변이율이 높았으며. 0.09∼0.20 M sucrose배지에서 분화된 식물체에서 염색체 변이율은 15.2∼16.6%로 거의 안정적이었다.

Keywords

References

  1. Bennici A (1979) A cytological chimeras in plants regenerated from Lilium longiflorum tissues grown in vitro. Plant Syst Evol 82:349-353
  2. Bennici A, D'Amato F (1978) In vitro regeneration of durum wheat plants. 1. Chromosome numbers of regenerated plants. Plant Syst Evol 81:305-311
  3. Fish N, Karp A (1986) Improvements in regeneration from protoplasts of potato and studies on chromosome stability. 1. The effect of initial culture media. Theor Appl Qenet 72:405-412 https://doi.org/10.1007/BF00288580
  4. Fujieda K, Adaniya S, Okubo H, Takahashi K., Matsuo E (1980) studies on the intraspecific differentiation of Allium wakegi Araki. J Jap Soc Hort Sci 49:180-188 https://doi.org/10.2503/jjshs.49.180
  5. Ishizaka H, Uematsu J (1994) Amphidiploids between Cyclamen persicum Mill and C. hederifollium. Aiton induced through colchicine treatment of ovules and in uitro plants. Breed Sci 44: 161-166
  6. Iwasa S, Imada I, Suzuki Y (1979) Karyotype analysis of Allium fistulosum, A. cepa, A. proliferum, and A. wakegi by Giemsa banding technique. Abstr Jap Soc Hort Sci Autumn Meet pp194-195
  7. Karp A (1991) On the current understanding of somaclonal variation. Plant Mol Cell Bio 2:1-58 https://doi.org/10.1091/mbc.2.1.1
  8. Kim CH, Chang KY (1996) Variation of cross affinity and reciprocal effect in interspecific hybridization between Glycine max and G. tomentella. Kor J Crop Sci 41:608-618
  9. Kurita M (1952) Further note on the karyotypes of Allium. Mem Ehine Univ Sect II. 1:369-378
  10. Lu CC, Currah L, Peffly EB (1989) Somatic embryogenesis and plant regeneration in diploid Allium fistulosum x A. cepa F, hybrid onions. Plant Cell Rep 7:696-700
  11. McCollum GD (1974) Chromosome behavior and sterility of hybrids between the common onion, Allium cepa and related wild A. oschanini. Euphytica 23:699- 712 https://doi.org/10.1007/BF00022493
  12. Nakashima T, Kuwahara K, Tanaka M (1990) The development of utilization methods of embryoid and shoot primodium in Cucubitaceae and Liliaceae plants (III) In vitro masspropagation of onion (Allium cepa L.). Bull Saga Pref Agr Exp Stn 26:119-132
  13. Novak F, Vyskot B (1975) Karyotype of callus culture derived from Nicotina tabacum L. Plant Syst Evol 75:62-70
  14. Novak FJ, Havel L, Dolezel J (1982) In vitro breeding system of Allium. Proc 5th Intl Cong Plant Tiss Cell Cult pp767-768
  15. Orton TJ, Steidl RP (1980) Cytogenetic analysis of plants regenerated from colchicine-treated callus cultures of an interspecific Hordeum hybrid. Theor Appl Genet 57:89-95 https://doi.org/10.1007/BF00745037
  16. Phillips GC, Luteyn KJ (1983) Effects of pichloram and other auxins on onion tissue cultures. J Am Soc Hort Sci 108:948-953
  17. Shahin HA, Kaneko K (1986) Somatic embryogenesis and plant regeneration from callus cultures of nonbulbing onions. HortSci 21:294-295
  18. Shillito RD, Carswell GK, Jhonson CM, DiMio J, Harms CT (1989) Regeneration of fertile plant from protoplast of elite imbred maize. Biotech 7:581-587 https://doi.org/10.1038/nbt0689-581
  19. Tashiro Y (1980) Cytogentic studies on the origin of A. wakegi. I. Meiosis in A. wakegi. and the interspecific hybrid between A. fistulosum L. and A. ascatonicum L. Agr Bull Saga Univ 49:47-57
  20. Tashiro Y (1984) Karyotype, meiotic behavior and fertility of the hybrid between the tetraploid Allium wakegi Araki and amphidiploid (A. ascatonicum L. x A. fistulosum) J Jap Soc Hort Sci 52:408-413 https://doi.org/10.2503/jjshs.52.408