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Süs Kabağında (Cucurbita pepo var. ovifera) Farklı Eksplant Tiplerinde Kallus Çoğalması ve Sürgün Rejenerasyonu

Year 2013, Volume: 23 Issue: 2, 164 - 171, 01.06.2013

Abstract

The effect of 4 different types of explants (proximal part, distal part, whole cotyledon, and hypocotyl) and 36 different hormone combinations on callus proliferation and shoot regeneration were evaluated in ornamental gourd (Cucurbita pepo var. ovifera). The explants were taken from 8-day-old seedling cultured on Murashige and Skoog (MS) media containing different doses of 2,4dichlorophenoxyacetic acid (2,4-D) (2.0, 2.5, and 3.0 mg l) for callus induction. Generated calli were cultured in combinations of 6-benzylaminopurine (BAP) (0, 0.5, 1.0 and 2.0 mg l) with different doses of α-naphthaleneacetic acid (NAA) (0, 0.1 and 0.5 mg l), indole-3-acetic acid (IAA) (0, 0.1 and 0.5 mg l) and kinetin (0, 1.0 and 2.0 mg l) in MS media. The maximum callus induction ratio (%) in all types of explants was obtained from MS media supplemented with 2.0 mg l2,4-D. BAP (1.0 and 2.0 mg l) combinations with NAA (0.1 and 0.5 mg l) were more successful in hypocotyl and proximal types of explants in terms of callus proliferation (%). The highest mean number of shoots per explant were obtained from 0.5 mg lBAP + 1.0 mg lkinetin in hypocotyl (1.8) and proximal explants (2.6).

References

  • Ananthakrishnan G, Xia X, Elman C, Singer S, Paris H. S, Gal-On A, Gaba V (2003). Shoot production in squash (Cucurbita pepo) by in vitro organogenesis. Plant Cell Rep. 21: 739–746.
  • Decker DS (1988). Origin(s), Evolution, and Systematics of Cucurbita pepo (Cucurbitaceae). Economic Botany. 42 (1): 4-15.
  • Han JS, Oh DG, Mok IG, Park HG, Kim CK (2004). Efficient plant regeneration from cotyledon explants of bottle gourd (Lagenaria siceraria Standl.). Plant Cell Rep. 23:291–296.
  • Haque ME, Sarkar MAR., Mahmud MA, Rezwana D, Sikdar B (2008). In vitro propagation of pumpkin and ash gourd through nodal segments. J. Bio-Sci. 16: 67-71.
  • Kim KM, Kim CK, Han JS (2010). In vitro regeneration from cotyledon explants in figleaf gourd (Cucurbita ficifolia Bouche´), a rootstock for Cucurbitaceae. Plant Biotechnol Rep. 4: 101–107. Lee YK, Chung WI, Ezura H (2003). Efficient plant regeneration via organogenesis in winter squash (Cucurbita maxima Duch.). Plant Science. 164: 413-418.
  • Murashige T, Skoog F (1962). A revised medium for rapid growth and bioassays with tobacco tissue cultures. Physiol Plant. 15: 473–497.
  • Pal SP, Alam I, Anisuzzaman M, Sarker KK, Sharmin SA, Alam MF (2007). Indirect Organogenesis in Summer Squash (Cucurbita pepo L.). Turk J Agric. For. 31: 63-70.
  • Saha S, Mori H, Hattori K (2007). Synergistic effect of kinetin and benzyl adenine plays a vital role in high frequency regeneration from cotyledon explants of bottle guard (Lagenaria siceraria) in relation to ethylene production. Breeding Science. 57: 197-202.
  • Shymali S, Hattori K (2007). Effect of polyamines and silver nitrate on the high frequency regeneration from cotyledon explants of bottle gourd (Lagenaria siceraria; sp. asiatica). Pakistan Journal of Biological Sciences. 10(8): 1288-1293.
  • Thiruvengadam M, Rekha KT, Yang CH, Jayabalan N, Chung IM (2010). High-frequency shoot regeneration from leaf explants through organogenesis in bitter melon (Momordica charantia L.). Plant Biotechnol Rep. 4: 321–328.
  • Thomas TD, Sreejesh KR (2004). Callus induction and plant regeneration from cotyledonary explants of ash gourd (Benincasa hispida L.). Scientia Horticulturae. 100: 359–367.
  • Yalçın Mendi Y, İpek M, Buzkan N, Aka Kacar Y, Curuk S (2009). Regeneration and histological analysis of regeneration in bottle gourd (Lagenaria siceraria (Molina) Stand.). Turk J Agric. For. 33: 165-172.
  • Zhang Y, J Zhou, Wu T, Cao J (2008). Shoot regeneration and the relationship between organogenic capacity and endogenous hormonal contents in pumpkin. Plant Cell Tiss Organ Cult. 93: 323– 3

Callus Proliferation and Shoot Regeneration From Different Explant Types in Ornamental Gourd (Cucurbita pepo var.ovifera)

Year 2013, Volume: 23 Issue: 2, 164 - 171, 01.06.2013

Abstract

Süs kabağında (Cucurbita pepo var. ovifera), 4 farklı eksplant tipi (proksimal, distal, tüm kotiledon ve hipokotil) ve 36 farklı hormon kombinasyonunun kallus çoğalması ve sürgün rejenerasyonu üzerine etkisi araştırılmıştır. Kallus uyartımı için 8 günlük fidelerden alınan eksplantlar, Murashige and Skoog (MS) ortamında farklı dozlarda 2,4-D (2.0, 2.5 ve 3.0 mg l) içeren ortamda kültüre alınmıştır. Oluşan kalluslar, MS ortamında BAP’ın (0, 0.5, 1.0, ve 2.0 mg l) kombinasyonları ile birlikte NAA (0, 0.1 ve 0.5 mg l), IAA (0, 0.1, 0.5 mg l) ve kinetinin (0, 1.0 ve 2.0 mg l) farklı dozlarında kültüre alınmıştır. Maximum kallus uyartımı (%) tüm eksplant tiplerinde MS+2.0 mg l2,4-D ortamından elde edilmiştir. Kallus çoğalması (%) yönünden hipokotil ve proksimal eksplant tiplerinde BAP’ın (1.0 ve 2.0 mg l) NAA (0.1 ve 0.5 mg l) ile kombinasyonları daha başarılı bulunmuştur. Eksplant başına en yüksek sürgün sayısı hipokotil (1.8) ve proksimal eksplantlarında (2.6) 0.5 mg lBAP+1.0 mg lkinetin içeren ortamdan elde edilmiştir.

References

  • Ananthakrishnan G, Xia X, Elman C, Singer S, Paris H. S, Gal-On A, Gaba V (2003). Shoot production in squash (Cucurbita pepo) by in vitro organogenesis. Plant Cell Rep. 21: 739–746.
  • Decker DS (1988). Origin(s), Evolution, and Systematics of Cucurbita pepo (Cucurbitaceae). Economic Botany. 42 (1): 4-15.
  • Han JS, Oh DG, Mok IG, Park HG, Kim CK (2004). Efficient plant regeneration from cotyledon explants of bottle gourd (Lagenaria siceraria Standl.). Plant Cell Rep. 23:291–296.
  • Haque ME, Sarkar MAR., Mahmud MA, Rezwana D, Sikdar B (2008). In vitro propagation of pumpkin and ash gourd through nodal segments. J. Bio-Sci. 16: 67-71.
  • Kim KM, Kim CK, Han JS (2010). In vitro regeneration from cotyledon explants in figleaf gourd (Cucurbita ficifolia Bouche´), a rootstock for Cucurbitaceae. Plant Biotechnol Rep. 4: 101–107. Lee YK, Chung WI, Ezura H (2003). Efficient plant regeneration via organogenesis in winter squash (Cucurbita maxima Duch.). Plant Science. 164: 413-418.
  • Murashige T, Skoog F (1962). A revised medium for rapid growth and bioassays with tobacco tissue cultures. Physiol Plant. 15: 473–497.
  • Pal SP, Alam I, Anisuzzaman M, Sarker KK, Sharmin SA, Alam MF (2007). Indirect Organogenesis in Summer Squash (Cucurbita pepo L.). Turk J Agric. For. 31: 63-70.
  • Saha S, Mori H, Hattori K (2007). Synergistic effect of kinetin and benzyl adenine plays a vital role in high frequency regeneration from cotyledon explants of bottle guard (Lagenaria siceraria) in relation to ethylene production. Breeding Science. 57: 197-202.
  • Shymali S, Hattori K (2007). Effect of polyamines and silver nitrate on the high frequency regeneration from cotyledon explants of bottle gourd (Lagenaria siceraria; sp. asiatica). Pakistan Journal of Biological Sciences. 10(8): 1288-1293.
  • Thiruvengadam M, Rekha KT, Yang CH, Jayabalan N, Chung IM (2010). High-frequency shoot regeneration from leaf explants through organogenesis in bitter melon (Momordica charantia L.). Plant Biotechnol Rep. 4: 321–328.
  • Thomas TD, Sreejesh KR (2004). Callus induction and plant regeneration from cotyledonary explants of ash gourd (Benincasa hispida L.). Scientia Horticulturae. 100: 359–367.
  • Yalçın Mendi Y, İpek M, Buzkan N, Aka Kacar Y, Curuk S (2009). Regeneration and histological analysis of regeneration in bottle gourd (Lagenaria siceraria (Molina) Stand.). Turk J Agric. For. 33: 165-172.
  • Zhang Y, J Zhou, Wu T, Cao J (2008). Shoot regeneration and the relationship between organogenic capacity and endogenous hormonal contents in pumpkin. Plant Cell Tiss Organ Cult. 93: 323– 3
There are 13 citations in total.

Details

Primary Language Turkish
Journal Section Articles
Authors

B. Tuncer This is me

Publication Date June 1, 2013
Published in Issue Year 2013 Volume: 23 Issue: 2

Cite

APA Tuncer, B. (2013). Callus Proliferation and Shoot Regeneration From Different Explant Types in Ornamental Gourd (Cucurbita pepo var.ovifera). Yuzuncu Yıl University Journal of Agricultural Sciences, 23(2), 164-171.
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Yuzuncu Yil University Journal of Agricultural Sciences by Van Yuzuncu Yil University Faculty of Agriculture is licensed under a Creative Commons Attribution 4.0 International License.