Plant Regeneration via Organogenesis from Leaf and Stipule Segments of Strawberry (Fragaria ananassa Duch.)

딸기의 잎과 탁엽 절편체로부터 기관형성을 통한 식물체 재생

  • Published : 1998.09.01

Abstract

Plant regeneration via organogenesis from leaf and stipule explants of micropropagated shoots of strawberry (Fragaria $\times$ ananassa cv. Suhong) was achieved. Leaf and stipule explants were detached from shoot-tip cultured shoots and cultured on MS medium with various combinations of BA and NAA under light or dark condition. Shoot regeneration from leaf explant was observed after 3 weeks in culture and was good at the high ratio of BA and NAA among various combination treatments. The highest shoot regeneration frequency from leaf explants was obtained with 1.0 mg/L BA and 0.1 mg/L NAA, in which 31.1% shoot regeneration frequency(1.7 shoots per leaf explant) was yielded. In case of stipule explants, shoot regeneration was largely affected by plant growth regulators during incubation under dark condition for initial 4 weeks but not under continuous light condition. The combination treatment with 2.0 mg/L BA and 0.1 mg/L NAA showed the most excellent shoot regeneration from stipule explants, where 44.4% regeneration frequency(4.0 shoots per explants) obtained. Regenerated shoots were rooted on MS medium with 0.1 mg/L NAA after shoot elongation, and the plantlets regenerated were transferred to soil mixtures with vermiculite and perlite for acclimation.

딸기 '수홍'의 기내배양된 잎과 탁엽 절편체로부터 기관형성을 통한 식물체 재생 방법을 확립하고자 실험을 수행하였다. 엽절편체 배양에서는 생장조절제 처리에 따라 NAA 첨가시에는 뿌리 재생, BA 첨가시에는 신초 재생이 이루어졌으며, BA 1.0㎎/L + NAA 0.2 ㎎/L 처리구에서 재생률 31.1%, 절편체당 신초수 1.7개로 가장 양호하였다. 탁엽절편체 배양에서는 생장조절제와 광조건의 처리를 실시하였는데, 명조건에서는 생장조절제 처리에 따른 뚜렷한 경향을 발견할 수 없었으나, 암조건에서는 고농도 BA와 저농도 NAA의 혼용처리가 신초 재생에 필요함을 알 수 있었다. 탁엽절편체는 BA 2.0 ㎎/L + NAA 0.1㎎/L 처리구에서 재생률 44.4%, 절편체당 신초수 4.0개로 가장 양호한 반응을 나타내었다. 재생된 신초는 NAA 0.1㎎/L 가 첨가된 MS배지에서 발근되었으며, 이어서 인공토양(vermiculite : perlite = 1 : 1)에서 성공적으로 활착을 유도할 수 있었다.

Keywords

References

  1. J Hort Sci v.49 The production of strawberry plants by in vitro micro-propagation Boxus PH
  2. Plant Sci v.69 Regeneration and transformation of apple and strawberry using disarmed Ti-binary vectors James DJ;Passey AJ;Barbara DJ
  3. J Amer Soc Hort Sci v.105 Cryopreservation of strawberry meristerns and mass propagation of plantlets Kartha KK;Leung ML;Pahl K
  4. Acta Hort v.348 Strawberry plant regeneration by organogenesis from peduncle and stolen segments Lis EK
  5. HortScience v.23 Plant regeneration by organogenesis from strawberry leaf and runner tissue Liu ZR;Sanford JC
  6. Physiol Plant v.15 A revised medium for rapid growth and bioassays with tobacco tissue cultures Murashige T;Skoog F
  7. Plant Cell Rep v.9 Agrobacterium-mediated transformation of strawberry calli and recovery of transgenic plants Nehra NS;Chibbar RN;Kartha KK;Datlar RSS;Crosby LL;STushnoff C
  8. Plant Cell Rep v.9 Genetic transformation of strawberry by Agrobacterium tumefaciens using a leaf disk regeneration system Nehra NS;Chibbar RN;Kartha KK;Datlar RSS;Crosby LL;STushnoff C
  9. J Amer Soc Hort Sci v.114 Direct shoot regeneration from strawberry leaf disks Nehra NS;Stushnoff C;Kartha KK
  10. Plant Sci v.66 Regeneration of plants from immature leaf-derived callus of strawberry(Fragaria x anmassa) Nehra NS;Stushnoff;Kartha KK
  11. J Hort Sci v.67 High efficiency shoot regeneration from calluses of in vitro shoot culture Rugini E;Orando R
  12. HortScience v.28 Preculture medium promotes direct shoot regeneration from micropropagated strawberry leaf disks Sovari S;Ulvinen S;Hietaranta T;Hiirsalmi H