Morfogenesis dan Induksi Kalus Tin (Ficus carica L.) pada Media Murashige dan Skoog (MS) dengan Penambahan Benzylaminopurine
(Morphogenesis and Callus Induction of Fig (Ficus carica L.) in MS Medium Supplemented with Benzylaminopurine)
Morfogenesis dan Induksi Kalus Tin (Ficus carica L.) pada Media Murashige dan Skoog (MS) dengan Penambahan Benzylaminopurine
(Morphogenesis and Callus Induction of Fig (Ficus carica L.) in MS Medium Supplemented with Benzylaminopurine)
Pangesti Nugrahani
Jurusan Agroteknologi, UPN “Veteran” Jawa Timur, Surabaya, Indonesia
Didik Utomo Pribadi
Jurusan Agroteknologi, UPN “Veteran” Jawa Timur, Surabaya, Indonesia
DOI: https://doi.org/10.19184/j-agt.v13i02.13914
ABSTRACT
Fig is one of the introduced fruit trees, which became popular in Indonesia. Its leave and fruit can be used as medicine and healthy food. The effect of different combination concentration of BAP (Benzylaminopurine) and 2,4-D (2,4-dicholophenoxy acetic acid) on callus induction from leaf segment of Ficus carica L. were studied. The effect of differrent combination of BAP and coconut water on morphogenesis of single node of Fig was also investigated. The study was arranged as factorial design in completely randomized design in two experiments with 5 repetitions for each treatment. The factors of experiment I were the concentration of BAP (0,1, and 2 mg/L) and the concentration of 2,4-D (0,1, and 2 mg/L). And the factors of experiment II were the concentration of BAP (1 and 2 mg/L) and the concentration of coconut water (100 and 150 mL/L). Each treatment consisted of 10 replicates (bottles). The result showed that MS (Murashige and Skoog) medium supplement with 100 mL/L coconut water, enhanced shoot development. MS medium supplemented with 2,4-D 2 mg/L, enhanced callus induction of Ficus carica L..
Keywords: 2,4-D, morphogenesis, BAP, callus, Ficus carica L.
REFERENCES
Al-Shomali, I., Sadder, M.T., dan Ateyyeha, A. 2017. Culture media comparative assessment of common fig (Ficus carica L.) and carry over effect. Jordan Journal of Biological Sciences, 10(1): 13-18.
Bayoudh, C., Labidi, R., Majdoub, A., dan Mars, M. 2015. In Vitro Propagation of Capri Fig and Female Fig Varieties (Ficus carica L.) From Shoot-Tips. J. Agr. Sci. Tech., 17: 1597-1608.
Danial, G.H., Ibrahim, D.A., Brkat, S.A., dan Khalil, B.M. 2014. Multiple shoots production from shoot tips of fig tree (Ficus carica L.) and callus induction from leaf segments. Int. J. Pure Appl. Sci. Technol., 20 (1): 117-124.
Dhage, S.S., Chimote, V.P., Pawar, B.D., Kale, A.A., Pawar. S.V. , Jadhav, A.S. 2015. Development of an efficient in vitro regeneration protocol in fig (Ficus carica L.). Journal of Applied Horticulture, 17 (2): 160-164.
Dewi, I.S., Nindita, A., Purwoko, B.S., dan Efendi, D. 2016. Induksi tunas pada kotiledon dan hipokotil tanaman jarak pagar (Jatropha curcas L.) melalui organogenesis tak langsung. Jurnal AgroBiogen, 8 (3): 89-96.
Fadilah, R., Ratnasari, E., dan Isnawati. 2014. Induksi dan pertumbuhan kalus daun tin (Ficus carica) dengan penambahan berbagai kombinasi konsentrasi IBA dan kinetin pada media MS secara in vitro. Lenterabio, 3 (3): 141–146.
Lazim, M.I.M., Badruzaman, N.A., Peng, K.S., Long, K. 2015. Quantification of cytokinins in coconut water from different maturation stages of Malaysia’s Coconut (Cocos nucifera L.) varieties. J. Food Process Technol., 6 (11): 515-520
Lestari, E.G. 2011. Peranan zat pengatur tumbuh dalam perbanyakan tanaman melalui kultur jaringan. Jurnal AgroBiogen, 7 (1): 63-68.
Ling, W.T., Liew, F.C., Lim, W.Y., Subramaniam, S., and Chew, B.L. 2018. Shoot induction from axillary shoot tip explant of fig (Ficus carica) cv. Japanese BTM 6. Tropical Life Sciences Research, 29 (2): 165-174
Mahadi, I., Syafi’I, W., dan Sari, Y. 2016. Induksi kalus jeruk Kasturi (Citrus microcarpa) menggunakan hormon 2,4-D dan BAP dengan metode in vitro. Jurnal Ilmu Pertanian Indonesia (JIPI), 21 (2): 84−89
Patah, F.K.A., Hasbullah, N.A., Idris, H., Radzuan, N.S., Mohammad, M.L. 2018. Micropropagation of Ficus carica L. through tissue culture system. 12th International Conference on Advances in Agricultural, Chemical, Biological & Medical Sciences (AACBMS-18), August 6-8, 2018 Pattaya (Thailand).
Prabhuling, G., and Huchesh, H. 2018. Direct in vitro regenaration in fig (Ficus carica) CV. Brown Turkey. Res. J. Biotech, 13 (5): 77-83.
Putri, O.K., dan Wuryandari, W. 2018. Efek suhu penyeduhan daun Tin (Ficus carica) segar dan kering terhadap kadar fenolik total. Jurnal Teknologi Pangan, 12 (2): 1-6
Qrunfleh, I.M., M.M. Shatnawi, Z.I., and Al-Ajlouni. 2013. Effect of different concentrations of carbon source, salinity and gelling agent on in vitro growth of fig (Ficus carica L.). African Journal of Biotechnology, 12 (9): 936-940.
Sahu, J., and Sahu, R.K. 2013. A review on low cost methods for in vitro micropropagation of plant through tissue culture technique. UK Journal of Pharmaceutical and Biosciences, 1 (1): 38-41.
Taha, R.A, Mustafa, dan Hassan, S.A. 2013. Protocol for micropropagation of two ficus carica cultivars. World Journal of Agricultural Sciences, 9 (5): 383-388.
Sen, D.K., and Patel, R.M. 2018. In vitro mass multiplication of fig (Ficus carica L.) through nodal segment explants. Journal of Cell and Tissue Research, 18 (2): 6435-6440.
Singh, B.M., Rajoriya, C.M., Wani, I.A., Rawat, R.S., and Lal Jat, B. 2016. In vitro studies of Ficus carica and its application in crop improvement. International Journal for Research in Applied Science & Engineering Technology (IJRASET), 4 (11): 135-148
Soliman, H.I., Gabr, M. and Abdallah, N. 2010. Efficient transformation and regeneration of fig (Ficus carica L.) via Somatic Embryogenesis. Gm Crops, 1 (1): 47-58.
Yong, W.H., Ge, L., Fei Hg, Y., Tan, S.N. 2009. The Chemical Composition and Biological Properties of Coconut (Cocos nucifera L.) Water. Molecules, 14: 5144-5164.
Published
20-12-2019
Issue
Vol. 13 No. 2 2019: Jurnal Agroteknologi
Pages
156-163
License
Copyright (c) 2019 Jurnal Agroteknologi
How to Cite
Nugrahani, P. & Pribadi, D.U. (2019). Morfogenesis dan induksi kalus tin (Ficus carica L.) pada media Murashige dan Skoog (MS) dengan penambahan Benzylaminopurine. Jurnal Agroteknologi, 13(2), 156-163. https://doi.org/10.19184/j-agt.v13i02.13914