Investigation of Regeneration in Colchicum soboliferum via Somatic Embryogenesis Method
DOI:
https://doi.org/10.24925/turjaf.v13i4.1002-1007.7420Keywords:
Colchicum sobolifera, somatic embryogenesis, in vitro, regenerationAbstract
In this study, the regeneration of the Colchicum soboliferum species, one of the medicinal aromatic plants growing naturally in Türkiye, was examined by the somatic embryogenesis method. Within the scope of experiments on somatic embryogenesis, corms of the Colchicum soboliferum species were used as explant source. 16 media containing 2,4-Dichlorophenoxyacetic acid (2,4-D) (0, 0.5, 1, 2 mg.L⁻¹), Benzyl adenine (BA) (0, 0.1, 0.5 mg.L⁻¹), and 2-Isopentenyladenine (2IP) (0, 0.1, 0.5 mg.L⁻¹) as plant growth regulators were used in this regeneration research. Different ratios and combinations of Murashige ve Skoog (MS) media were tested. In the applications, the highest embryogenic callus formation was observed with a rate of 60% in Murashige ve Skoog (MS) media containing 0.5 mg.L⁻¹ 2,4-Dichlorophenoxyacetic acid (2,4-D) + 0.1 mg.L⁻¹ 2-Isopentenyladenine (2IP). The highest embryo formation, with a rate of 48.33%, was obtained in MS media containing 2 mg.L⁻¹ 2,4-Dichlorophenoxyacetic acid (2,4-D) + 0.5 mg.L⁻¹ Benzyl adenine (BA) and 2 mg.L⁻¹ 2,4-Dichlorophenoxyacetic acid (2,4-D) + 0.1 mg.L⁻¹ 2-Isopentenyladenine (2IP). No growth was observed in the control application that did not contain plant growth regulators.
References
Alp, H. A. (2020). Research on somatic embryogenesis and synthetic seed production in the tubers of some cyclamen species grown in Türkiye. Ph.D. Thesis, Çukurova University Institute of Science and Technology, Türkiye.
Akan, H., & Eker, I. (2005). Check-list of the genus Colchicum in the flora of Türkiye, Turk J Bot, 29, 327–331.
Babaoğlu, M., Gürel, E., & Özcan, E. (2002). Bitki biyoteknolojisi. I. doku Kültürü ve uygulamaları. Selçuk Üniversitesi, Vakıf Yayınları.
Baltacı, A. M., Arslan, M. (2019). Oğulotu (Melissa officinalis) bitkisinde meristem ve somatik embriyo kültürlerinden sentetik tohum elde etme olanaklari. Erciyes Tarım ve Hayvan Bilimleri Dergisi, 1-10.
Başeli, B., Özcan, M. M., Kara, Ş. M. (2022). Effect of photoperiod, plant growth regulators and explant size on in vitro bulblet formation in snowdrop. Ordu University Journal of Science and Technology Ordu Univ. J. Sci. Tech. 12(2), 148-158. https://doi.org/10.54370/ordubtd.1172579
Baytop, T. (1994). Türkçe bitki adları sözlüğü. Ankara: Atatürk kültür, dil ve tarih yüksek kurumu, Türk Dil Kurumu Yayınları.
Blazquez, S, Olmos E, Hernandez J. A., Fernandez-Garcia, N., & Fernandez, J. A. (2009). Somatic embryogenesis in saffron (Crocus sativus L.). Histological differentiation and implication of some components of the anti-oxidant enzymatic system. Plant Cell, Tissue and Organ Culture, 97:49-57. https://doi.org/10.1007/s11240-009-9497-y.
Chacon, J. Cusimano, N., & Renner, S. S. (2014). The evolution of colchicaceae, with a focus on chromosome numbers, Systematic Botany, 39(2), 415-427. https://doi.org/10.1600/036364414X680852.
Daradkeh, N. M. (2012). Callus, cell suspension culture and colchicine production in (Colchicum hierosolymitanum fieb), M.Sc. Thesis. Jordan University of Science and Technology, Irbid, Jordan.
Dinç Düşen, O., & Sümbül, H. (2007). A morphological investigation of Colchicum L. (Liliaceae) species in the Mediterranean region in Türkiye, Turk J Bot, 31, 373-419.
Elmas, E., & Yaşayacak, H. (2021). Sinop Biyoçeşitliliği II. Bölüm. Sinop Üniversitesi Doğal Ürünler Uygulama ve Araştırma Merkezi.
Ellington, E., Adserias, T., Coma, A., Bastida, J., Viladomat, F., Codina, C. (1997). “Effect of paclobutrazol on in vitro culture of Colchicum autumnale corms”, Acta Hortic. 447, 131-134.
Fathurrahman, F., Mardalenı, M., & Krısıanto, A. (2023). Effect of Colchicine mutagen on phenotype and genotype of Vigna unguiculata var. sesquipedalis the 7th generation. Biodiversitas Journal of Biological Diversity, 24(3).
Gökel, Y., Canataroğlu, A., Satar, S., & Köseoğlu, Z. (2000). Colchicine toxicity: a patient with pneumopericardium. Turkish Journal of Medical Sciences, 30(4), 401-404.
Güner, A., Aslan, S., Ekim, T., Vural, M., & Babaç, M. T. (2012). Türkiye bitkileri listesi (Damarlı Bitkiler). Nezahat Gökyiğit Botanik Bahçesi ve Flora Araştırmaları Derneği Yayını. İstanbul.
Hasana, N., & Apriani, I. (2020). The effect of Colchicine against phenotypes and stomata pakcoy (Brassica rapa L.) hydroponically with the NFT (Nutrient Film Technique) system. Jurnal Biota Vol, 6(1).
Hayashi, T., Yoshida, K., & Sano. K. (1988). Formatiom of alkaloids in suspension-cultured Colchicum autumnale. Phytochem., 27, 1371-1374. https://doi.org/10.1016/0031-9422(88)80196-1.
Jevremovic, S., Calic, D., Subotic, A., Trifunovic, M., Petric, M., & Bohanec, B. (2010). Ploidyvariation and flowering of dwarf Iris derived from tissue culture. ISHS Acta Horticulturae, 855: XXIII International EUCARPIA Symposium, Section Ornamentals, Colourful Breeding and Genetics-Part II.
Karaoğlu, C. (2010). Soğanlı bitkiler ve in vitro hızlı Çoğaltım. Tarla Bitkileri Merkez Araştırma Enstitüsü Dergisi, 19 (1-2): 24-29.
Karamian, R. (2003). Plantlet regeneration via somatic embryogenesis in four species of Crocus. I International Symposium on Saffron Biology and Biotechnology, 650.5. https://doi.org/10.17660/ActaHortic.2004.650.28.
Karlık, E., Değer, M., Üzen, E., & Gözükirmizi, N. (2020). Pioneering in vitro studies for callus formation of Colchicum chalcedonicum Azn. Trakya University Journal of Natural Sciences, 21(2): 131-137, 202. https://doi.org/10.23902/trkjnat.776974.
Koçak, M. (2019). Investigation of regeneration in Cyclamen coum with somatic embryogenesis method, Çukurova University Institute of Science and Technology, PhD Thesis ,Türkiye.
Ma, Y., Pan, Y., & Mao, B. (2023). Regenerating saffron (Crocus sativus L.) from corm lateral buds via ındirect somatic embryogenesis. Plants, 13(1), 10.
Mir, J. I., Ahmed, N., Wani, S. H., Rashid, R., Mir, H., & Sheikh, M. A. (2010). In vitro development of microcorms and stigma like structures in saffron (Crocus sativus L.). Physiol Mol Biol Plants 16-4:369–373. https://doi.org/10.1007/s12298-010-0044-4.
Mirici, S., Parmaksız, İ., Özcan, S., Sancak, C., Uranbey, S., Sarihan, E., Gümüşcü, O., Gürbüz, A.B., & Arslan, N. (2005). Efficent in vitro bulblet production from immature embryos of endangered Sternbergia fischeriana. Plant Cell, Tissue and Organ Culture, 80: 239–246.
Yalçin Mendi, N. Y., Özdemir, Ş., Uğur, S., Sevindik, B., İzgü, T., Kaya, E., Tütüncü, M., Çürük, P., Şimşek, Ö., & Koyuncu, O. (2022). In vitro regeneration and synthetic seed production of Colchicum cilicicum grown naturally in Türkiye. Alatarım, 21 (1): 18 – 26.
Onay, A., Yıldırım, H., Pirinç, V., Tilkat, E., Çiftçi, Y. Ö., Akdemir, H., Süzerer, V., Çalar, N., Binici, M., Akdemir, Ö.F., & Kılınç, F.M. (2012). Bitkilerin biyoteknolojik yöntemlerle ticari çoğaltimi; mevcut ve gelecekteki durum. Batman Üniversitesi Yaşam Bilimleri Dergisi, Cilt 1, Sayı 2,11-28.
Oran, S. & Fattash, I. (2005). In vitro propagation of an endangered medicinal bulbous plant Sternbergia clusiana Ker-Gawler (Amaryllidaceae). Journal of Horticultural Science and Biotechnology, 80, 399–402.
Özel, Ç. & Ünal, F. (2021). In vitro mass propagation of Muscari neglectum Guss. Ex. Ten. MAS Journal of Applied Sciences, 6. http://dx.doi.org/10.52520/masjaps.182
Özdemir, F. A., Yıldırım, M. U., & Kiliç, Ö. (2016). Farklı Konsantrasyonlarda ve Sürelerde Sodyum Hipoklorid (NaOCl) Uygulamasının Pancratium maritimum L. Soğanlarının yüzey sterilizasyonu üzerine etkileri. BEU Journal of Science, 5(2), 156-163, 2016.
Özhatay, N. (2002). Diversity of bulbous monocots in Türkiye with special reference. Chromosome numbers. Pure and Applied Chemistry, 74(4), 547-555.
Pırıldar, S., Sütlüpinar, N., Atasever, B., Erdem-Kuruca, S., Papouskova, B., & Šimánek, V. (2010). Chemical constituents of the different parts of Colchicum baytopiorum and their cytotoxic activities on K562 and HL60 cell lines, Pharmaceutical Biology, 48, 1, 32-39. https://doi.org/10.3109/13880200903029373.
Prange, A. N. S., Serek, M., Bartsch, M., & Winkelmann, T. (2010). Efficient and stable regeneration from protoplasts of Cyclamen coum Miller via somatic embryogenesis. Plant Cell Tiss Organ Cult 101:171–182. https://doi.org/10.1007/s11240-010-9674-z.
Raja, W., Zaffer, G., Wani, S. A. (2007). In vitro microcorm formation ın Saffron (Crocus sativus L.). Acta Horticulturae, 739:291-296.
Seyring, M., Ewald, A., Muller, A., & Haensch, K. T. (2009). Screening for propagation suitability in vitro of different Cyclamen species. Electron J. Biotechnol., 12, 4–7. http://dx.doi.org/10.4067/S0717-34582009000400010.
Sevindik, B., Kırıcı, S., & Yalçın Mendi, Y. (2020). In vitro regeneration of saffron in the World. XXX IHC – Proc. VI Int. Symp. on Saffron Biology and Technology. Acta Hortic. 1287. ISHS 2020. DOI 10.17660/ActaHortic.2020.1287.59 XXX IHC – Proc. VI Int. Symp. on Saffron Biology and Technology.
Trease, G. E., & Evans, W. C. (2009). Pharmacognosy 16. ed. London: Bailliere Tindal.
Ünal, A., Aydin, A., Hürkan, K., Kemeç Hürkan, Y. (2020). Tarımsal ve endüstriyel biyoteknoloji uygulamaları – Biyoekonomi. Iksad Publications.
Vahedi, M., Kalantari, S., & Salami, S. A. (2014). Factors affecting callusinduction and organogenesis in saffron (Crocus sativus L.). Plant Tissue Culture abd Biotechnology, 24:1-9. http://dx.doi.org/10.3329/ptcb.v24i1.19184.
Yücesan, Bb., Çiçek, F., Gürel, E. (2014). Somatic embryogenesis and encapsulation of immature bulblets of an ornamental species, Grape hyacinths (Muscari armeniacum Leichtlin ex Baker). Turk J Agric For 38: 716-722.
Yüzbaşıoğlu, E., & Dalyan, E. (2017) . Büyüme hormonları ve aktif kömürün in vitro koşullarda kardelen (Galanthus woronowii Losinsk.) soğancık oluşumuna etkisi. Mediterranean Agricultural Sciences, 30(3): 239-243.
Wagh, P. J., Patil, V. W., & Kale, M. C. (2015). Effect of soluble chitosan application on in vitro germination and growth of dormant corms of Colchicum luteum Baker. International Journal of Researches in Biosciences, Agriculture and Technology, 3:179-182. https://doi.org/10.29369/ijrbat.2015.03.II.0056.
Downloads
Published
How to Cite
Issue
Section
License
This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.