Vol. 21 No. 2 (2021): Mei - Agustus
Open Access
Peer Reviewed

Callus Induction from Cotyledon of Gyrinops versteegii (Gilg.) Domke

Authors

Fajri Marisa , Lisna Hidayati , Aries Bagus Sasongko , Tri Rini Nuringtyas

DOI:

10.29303/jbt.v21i2.2629

Published:

2021-06-07

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Abstract

Gyrinops versteegii is an endemic plant in eastern Indonesia that produced agarwood with high quality and economic value. This plant has been threatened by overexploitation which leads on decreasing in the natural population. This research aimed to induce in vitro callus formation to support the sustainable utilization of G. versteegii, which in the end, may support plant productivity. Callus induction was investigated using cotyledon and cultured on MS medium supplemented with several combination of plant growth regulators. The observations were done for the number of explants turned into callus and the duration for the first callus formation. The results showed that combination of 3 mg/L NAA + 0.5 mg/L BAP was recorded as the best combination for callus induction (63.63%). Callus with friable structure and bright color are obtained within nine days of incubation and showed the characteristic of embryonic callus. This result is expected to give a significant opportunity to conserve the natural population of G. versteegii.

Keywords:

Gyrnops versteegii callus in vitro plant growth regulator

References

Aini, A. Q. (2015). Pengaruh Variasi Konsetrasi Hormon NAA Terhadap Induksi Kalus Gaharu (Gyrinops versteegii (Gilg) Domke) Melalui Teknik In Vitro dan Pemanfaatannya sebagai Karya Ilmiah Populer. Skripsi. Universitas Jember: Jawa Timur. https://repository.unej.ac.id/handle/123456789/67004

Akaneme, F.I., & Eneobong, E.E. (2008). Tissue culture in Pinus caribaea Mor. var. Hondurensis barr. and golf. II: Effects of two auxins and two cytokinins on callus growth habits and subsequent organogenesis. African Journal of Biotechnology. 7, (6): 757âËâ765. ISSN: 1684ââ¬â5315. https://www.ajol.info/ index.php/ajb/article/view/58521

Benjamin, E. D., Ishaku, G. A., Peingurta, F. A., & Afolabi, A.S. (2019). Callus Culture for the Production of Therapeutic. American Journal of Plant Biology. 4 (4): 76-84. doi: 10.11648/j.ajpb.20190404.14

Buddhapriya, A. N., & Senarath, W.T.P.S.K. (2016). In vitro micropropagation of Gyrinops walla (gaerth) Using leaf disc explants. Proceedings of 1st International Conference on Bioscience and Biotechnology. 1: 11-14. doi: 10.17501/biotech.2016.1103

Centeno, M.L., Rodríguez, R., Berros, B., & Rodríguez, A. (1997). Endogenous hormonal content and somatic embryogenic capacity of Corylus avellana L. cotyledons. Plant Cell. 17 (2): 139-144. doi: 10.1007/s002990050367

Efferth, T. (2019). Biotechnology Applications of Plant Callus Cultures. Engineering. 5: 50-59. doi: 10.1016/j.eng.2018.11.006

George, E. F., & Sherrington, T. D. (1984). Plan Propagation by tissue culture handbook and directory of commercial laboratories. Eastern Press, England. ISBN: 0-9509325-0-7, pp: 477. https://www.journals.uchicago.edu/doi/ abs/1 0.1086/414482

Jin, C. S., & Keng, C. L. (2013). Factor Affecting the Selection of Callus Cell Line and The Preparation of The Cell Suspension Culture of Artemisia annua L. Plant Tissue Cult & Biotech. 23, (2): 157-16. doi: 10.3329/ptcb.v23i2.17507

Masita, R., Nuringtyas, T.R., Wijayanti, N., & Hidayati, L. (2020). Antiviral activity of agarwood Aquilaria malaccensis lamk and Gyrinops versteegii (Gilg.) Domke leaves ethanolic extract against dengue serotype 3 virus in vitro. AIP Conference Proceedings 2231 (1): 040077. doi: 10.1063/5.0002645

Munasinghe. S.P., Weerakoon, S. R., Somaratne, S., & Ranasinghe, C. (2017). An Efficient Callus Induction Protocol for Gyrinops walla Gaetner ââ¬ËWalla pattaââ¬â¢, a commercially Important Agarwood Species in Sri Lanka. Scholars Journal of Research in Agriculture and Biology. 2 (2): 96-102. ISSN: 2456-6527. https://www.researchgate.net/ publication/326160208

Na, H., Kim, K.W., Kwack, Y., Kim, S.K., & Chun, C. (2007). Comparative anatomy of embryogenic and non-embryogenic calli from Pimpinella brachycarpa. Journal of Plant Biology. 50 (3): 344âËâ350. doi: 10.1007/BF03030665

Nuringtyas, T.R., Isromarina, R., Septia, Y., Hidayati, L., Wijayanti, N., & Moeljopawiro, S. (2018). The antioxidant and cytotoxic activities of the chloroform extract of agarwood (Gyrinops versteegii (Gilg.) Domke) leaves on HeLa cell lines. AIP Conference Proceedings. 2002 (1): 020067. doi: 10.1063/1.5050163

Raza, G., Singh, M. B., & Bhalla, P. L. (2019). Somatic Embryogenesis and Plant Regeneration from Commercial Soybean Cultivars. Plants (Basel, Switzerland). 9 (1): 38. doi. : 10.3390/plants9010038

Saikia, M., Shrivastava, K., Singh, S. S. (2013). Effect of Culture Media and Growth Hormones on Callus Induction in Aquilaria malaccensis Lam., a Medically and Commercially Important Tree Species of North East India. Asian Journal of Biological Sciences. 6 (2): 96-105. doi: 10.3923/ajbs.2013.96.105

Sari, Y.P., Kusumawati, E., Saleh, C., Kustiawan, W., & Sukartingsih. (2018). Effect of sucrose and plant growth regulators on callogenesis and preliminary secondary metabolic of different explant Myrmecodia tuberosa. Nusantara Bioscience. 10 (3): 183-192. doi: 10.13057/nusbiosci/n100309

Shinta. S., Minarno,E.B., & Rofiqoh, I. (2020). In vitro embryogenic callus induction of Carica pubescens Lenne and K.Koch using 2,4-D (2,4-Dichlorophenoxy Acetic Acid) and BAP (6Benzylaminopurin). Journal of biology researcher. 25, (2) : 38-44. Retrieved: http://www.berkalahayati.org/index.php/jurnal/article/view/49

Susilo A, Kalima T, & Santoso E. (2014). Panduan Lapangan Pengenalan Jenis Pohon Penghasil Agarwood Gyrinops spp. di Indonesia. Puslitbang - Konservasi dan Rehabilitasi. Kementrian Kehutanan Indonesia. http://lib.ugm.ac.id/ind/

Trimulyaningsih. (2014). Ekologi agarwood Gyrinops versteegii (Gilg.) Domke di hutan Lombok Barat. Disertasi. Universitas Gadjah Mada: Yogyakarta. http://lib.ugm.ac.id/ind/

Tsuro, M., Koda, M., & Inoue, M. (1999). Comparation effect of different types of cytocine for shoot formation and plant regeneration in leaf-derived callus of lavender (Lavandura vera DC). Scientia Horticulturae, 81 (3): 331-336. doi: 10.1016/S0304-4238(99)00003-5

Wardana, T.A.P., Nuringtyas, T.R., Wijayanti, N., & Hidayati, L. (2019). Phytochemical analysis of agarwood (Gyrinops versteegii (Gilg.) Domke) leaves extracts as anticancer using GC-MS. AIP Conference Proceedings. 2194 (1): 020136. doi: 10.1063/1.5139868

Author Biographies

Fajri Marisa, Universitas Gadjah Mada

Author Origin : Indonesia

Lisna Hidayati, Universitas Gadjah Mada

Author Origin : Indonesia

Aries Bagus Sasongko, Universitas Gadjah Mada

Author Origin : Indonesia

Tri Rini Nuringtyas, Universitas Gadjah Mada

Author Origin : Indonesia

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How to Cite

Marisa, F., Hidayati, L., Sasongko, A. B., & Nuringtyas, T. R. (2021). Callus Induction from Cotyledon of Gyrinops versteegii (Gilg.) Domke. Jurnal Biologi Tropis, 21(2), 427–433. https://doi.org/10.29303/jbt.v21i2.2629

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