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Adventitious shoots derived from leaf explants in in vitro mass propagation of Indonesian selected Anthurium clones

Year 2020, Volume: 4 Issue: 1, 48 - 55, 23.06.2020

Abstract

A new in vitro mass propagation protocol for Indonesian Anthurium was successfully established using different selected clones and culture media from initiation to acclimatization stages. The Kar-005 clone cultured on IM-2 (WT medium containing 0.5 mg/L TDZ, 0.1 mg/l BA and 0.2 mg/l NAA) was produced green fast growth compact callus. Friable yellow callus derived from leaf explants of M-11 clone with moderate growth type was the fastest growth responsive. The callus was successfully initiated in 1.2 months after culture of shoot regeneration time with 25.3 shoots per explant, 0.79 cm shoot height, and 3.6 number of leaves per shoot on the WT medium supplemented with 0.5 mg/l TDZ, 1.0 mg/l BAP and 0.02 mg/l NAA. The shoots of M-11 clone gave the best root response on WT medium hormone-free with 1.5 g/l activated charcoal with 3.2 roots per shoot and 0.86 cm root length. The plantlet acclimatization was carried out on burned-rice husk with 87.3% plantlet survivability. The results of the study imply that the protocol can be applied to propagate other clones and varieties by paying attention to the growth type of callus.

Supporting Institution

Indonesian Agency for Agricultural Research and Development (IAARD) -Indonesian Ministry of Agriculture

Thanks

Mrs. Yoyo Sulyo, Nina Marlina, Euis Rohayati, Supenti, Dedi Rusnandi, and Laily Qodriyah

References

  • Alves dos Santos, M.R., Timbo, A.L.D.O., Pinto de Carvalho, A.C.P., and Morais, J.R.S. (2005). Callus induction and plant regeneration from Anthurium andreanum Lindl. fruits. Plant Cell Cult. Micropropag. Lavras, 1(2): 77-79.
  • Ashima, M. (2016). Tissue culture techniques in horticulture-A Review. RRJAAS, 5(1): 67-73.
  • Atak, C. and Çelik, O.(2009). Micropropagation of Anthurium andreanum from leaf explants. Pak. J. Bot., 41(3): 1155-1161.
  • Atak, Ç. and Ö. Çelik. (2012). Micropropagation of Anthurium spp. pp. 241-254. In: Dhal, N.K. and S.C. Sahu (eds.). Plant science. In: Tech Press, Rijeka, Croatia. https://doi.org/10.5772/51426
  • Badan Pusat Statistik dan Direktorat Jendral Hortikultura.(2019). Luas Panen, Produksi, dan Produktivitas Tanaman Hias di Indonesia 2014-2018. Kementerian Pertanian Republik Indonesia. https://www.pertanian.go.id/home.
  • Bhavana, G.P., Satyan, K.B. and Aswath,C.(2018.) A regenerative protocol and SEM study for in vitro propagation of Anthurium crossed lines via indirect somatic embryogenesis. Biosci. Biotech. Res. Comm., 11(1): 31-40. https://dx.doi.org/10.21786/bbrc/11.1/5
  • Bejoy, M., Sumitha, V.R. and Anish, M.P.(2008). Regeneration in Anthurium andraeanum Hort. cv. Agnihotthri. Biotechnology, 7(1): 134-138.
  • Desai, C., Inghalihalli, R., and Krishnamurthy, R. (2015). Micropropagation of Anthurium andraeanum-A important tool in floriculture. J. Pharmacogn. Phytochem., 4(3): 112-117. E-ISSN: 2278-4136
  • Gaikwad, A.V., Singh , S.K. and Gilhotra, R. (2017). Plant Tissue Culture-A Review. SGVU J. Pharmacy. Res. Edu., 2(1): 217-220. ISSN: 2456-4508
  • Gosal, S.S., Wani, S.H., and Kang, M.S. (2010). Biotechnology and Crop Improvement. J. Crop Improv., 24(2): 153-217. https://doi.org/10.1080/15427520903584555
  • Gu, A., Ma, W. L, C. and Cui, J. (2012). Regeneration of Anthurium andraeanum from Leaf Explants and Evaluation of Microcutting Rooting and Growth under Different Light Qualities. Hortsci., 47(1): 88-92. https://doi.org/10.21273/HORTSCI.471.1.88
  • Jahan, M.T., Isalam, M.R., Khan, R., Mamun, A.N.K., Ahmed, G., and Hakim, L. (2009). In vitro clonal propagation of anthurium (Anthurium andraeanum L.) using callus culture. Plant Tissue Organ Cult Biotech., 19(1): 61–69.
  • Kadam, S., Singh, P., and Patel, R.M. (2017). Rooting and acclimatization of in vitro raised plantlets of guava cv. Allahabad safeda. Int. J. Sci. Res. Public. 7(8): 449-454. E-ISSN: 2250-3153
  • Kondamudi, R., Murthgy, K.S.R., and Pullaiah,T. (2009). Euphorbiaceae: A Critical Review on Plant Tissue Culture. Trop. Subtrop. Agroecosyst. 10: 313-335. E-ISSN: 1870-0462
  • Kumar, N. and Reddy, M.P. (2011). In vitro Plant Propagation: A Review. J. For. Sci., 27(2): 61-72. ISSN: 2288-9752.
  • Mattjik, A.A. and Sumertajaya, I.S. (2006). Experimental Design with SAS and Minitab Application. IPB Press. Bogor. 276 pages.
  • Moon, H.K. and Stomp, A.M. (1997). Effects of medium components and light on callus induction, growth and frond regeneration in Lemna gibba (Duckweed). In Vitro Cell. Dev. Biol-Plant, 33(1): 20-25. https://doi.org/10.1007/s11627-997-0035-5.
  • Muniz, A.W., Luiz de Sá, E., Dalagnol, G.L., and Filho, J.A. (2013). Rooting and acclimatization of micropropagated marubakaido apple rootstock using Adesmia latifolia rhizobia. SpringerPlus. 2: 437-443. https://doi.org/10.1186/2193-1801-2-437.
  • Murashige, T. and Skoog, F. (1962). A revised medium for rapid growth and bioassay with tobacco tissue cultures. Physiol. Plant., 15: 473–497. https://doi.org/10.1111/j.1399-3054.1962.tb08052.x.
  • Murillo-Gomez, P.A., Naranjo, E., Callejas, R., Atehortúa, L., and Urrea, A. (2014). Micropropagation of the native species Anthurium antiquiense Engl. for concervation purposes. Agron. Colomb., 32(3): 334-340 https://doi.org/ 10.15446/agron.colomb.v32n3.46809.
  • Petrova, M., Zayova, E., and Vitkova, A. (2011). Effect of silver nitrate on in vitro root foration of Gentiana lutea. ACRom. Biotech. Let., 16(6): 53-58.
  • Pinheiro, M.V.M., Martins, F.B., Ferreira de Cruz, A.C., Pinto de Carvalho, A.C.P., Jardim de Aliveira, E., and Campos, W. (2014). Somatic embryogenesis in anthurium (Anthurium andreanum cv. Eidibel) as affected by different explants. Acta Sci. Agron., 36(1): 87-98. https://doi.org/10.4025/actasciagron.v36i1.16557
  • Prakasha, D.P., Ramya, G., and Srinivasalu, G.B.(2017). In Vitro Mass Multiplication of Anthurium andreanum (HORT) Cultivars. Int. J. Curr. Microbiol. App. Sci., 6(9): 2579-2584. https://doi.org/10.20546/ijcmas. 2017.609.317.
  • Raad, M.K., Zanjani , S.B., Shoor , M., Hamidoghli, Y., Sayyad, A.R., Kharabian-Masouleh, A., and Kaviani, B. (2012). Callus induction and organogenesis capacity from lamina and petiole explants of Anthurium andreanum Linden (Casino and Antadra). AJCS., 6(5): 928-937. ISSN: 1835-2707
  • Rashid, B., Tariq, M., Khalid, A., Shams, F., Ali, Q., Ashraf, F., Ghaffar, I., Khan, M.I., Rehman, R., and Husnain, T. (2017). Crop improvement: new approaches and modern techniques. Plant Gene and Trait, 8(3): 18-30. https://doi.org/10.5376/pgt.2017.08.0003.
  • Rout, G.R., Mohapatr, A., and Jain, S.M. (2006). Tissue culture of ornamental pot plant: A critical review on present scenario and future prospects. Biotech. Adv. 24: 531-560. doi:10.1016/j.biotechadv.2006.05.001
  • Saptari, R.T., Sinta, M.M., and Budiani, A.(2017). In Vitro Propagation of Anthurium adreanum cv. Nitta through Organogenesis. AGRIVITA J. Agric. Sci., 39(2): 192-200. http://doi.org/10.17503/agrivita.v39i2.752
  • Thokchom, R. and Maitra, S. (2017). Micropropagation of Anthurium andreanum cv. Jewel from leaf explants. J. Crop Weed, 13(1): 23-27. ISSN: 2349-9400.
  • Winarto, B. and Mattjik., N.A. (2009). Anther culture study on local accession of Anthurium. J. Hort., 19(4): 386-395.
  • Winarto, B., Rachmawati, F., and Teixeira da Silva , J.A. (2011). New basal media for half-anther culture of Anthurium andreanum Linden ex Andre´ cv. Tropical. Plant Growth Regul., 65(3): 513-529. doi 10.1007/s10725-011-9622-x.
  • Winarto, B. and Teixeira da Silva, J.A. (2012.) Influence of isolation technique of half-anther and of initiation culture médium on callus induction and regeneration in Anthurium andreanum. Plant Cell Tiss Organ Cult., 110(3): 401-411. https://doi.org/10.1007/s11240-012-0161-6.
  • Winarto, B. and Yufdy, M.P. (2017). Establishment of In Vitro Propagation Protocol of Gerbera Jamesonii Bolus Ex Hook F: Explant and Media Selection to Plantlet Acclimatization. AGRAARTEADUS: J. Agric. Sci., 28(1): 32-40. http://dx.doi.org/10.15159/jas.17.03
  • Winarto, B., Soehendi , R and Harwanto. (2018). In vitro endosperm culture of Anthurium. Adv. Agric. Sci. J., 6(1): 13-25. ISSN: 2588-3801.
  • Yeole, M.P., Gholse , Y.N., Gurunani, S.G., and Dhole, S.M. (2016). Plant Tissue Culture Techniques: A Review for Future View. Critic. Rev. Pharmaceut. Sci., 5(1): 16-25. ISSN: 2319-1082
Year 2020, Volume: 4 Issue: 1, 48 - 55, 23.06.2020

Abstract

References

  • Alves dos Santos, M.R., Timbo, A.L.D.O., Pinto de Carvalho, A.C.P., and Morais, J.R.S. (2005). Callus induction and plant regeneration from Anthurium andreanum Lindl. fruits. Plant Cell Cult. Micropropag. Lavras, 1(2): 77-79.
  • Ashima, M. (2016). Tissue culture techniques in horticulture-A Review. RRJAAS, 5(1): 67-73.
  • Atak, C. and Çelik, O.(2009). Micropropagation of Anthurium andreanum from leaf explants. Pak. J. Bot., 41(3): 1155-1161.
  • Atak, Ç. and Ö. Çelik. (2012). Micropropagation of Anthurium spp. pp. 241-254. In: Dhal, N.K. and S.C. Sahu (eds.). Plant science. In: Tech Press, Rijeka, Croatia. https://doi.org/10.5772/51426
  • Badan Pusat Statistik dan Direktorat Jendral Hortikultura.(2019). Luas Panen, Produksi, dan Produktivitas Tanaman Hias di Indonesia 2014-2018. Kementerian Pertanian Republik Indonesia. https://www.pertanian.go.id/home.
  • Bhavana, G.P., Satyan, K.B. and Aswath,C.(2018.) A regenerative protocol and SEM study for in vitro propagation of Anthurium crossed lines via indirect somatic embryogenesis. Biosci. Biotech. Res. Comm., 11(1): 31-40. https://dx.doi.org/10.21786/bbrc/11.1/5
  • Bejoy, M., Sumitha, V.R. and Anish, M.P.(2008). Regeneration in Anthurium andraeanum Hort. cv. Agnihotthri. Biotechnology, 7(1): 134-138.
  • Desai, C., Inghalihalli, R., and Krishnamurthy, R. (2015). Micropropagation of Anthurium andraeanum-A important tool in floriculture. J. Pharmacogn. Phytochem., 4(3): 112-117. E-ISSN: 2278-4136
  • Gaikwad, A.V., Singh , S.K. and Gilhotra, R. (2017). Plant Tissue Culture-A Review. SGVU J. Pharmacy. Res. Edu., 2(1): 217-220. ISSN: 2456-4508
  • Gosal, S.S., Wani, S.H., and Kang, M.S. (2010). Biotechnology and Crop Improvement. J. Crop Improv., 24(2): 153-217. https://doi.org/10.1080/15427520903584555
  • Gu, A., Ma, W. L, C. and Cui, J. (2012). Regeneration of Anthurium andraeanum from Leaf Explants and Evaluation of Microcutting Rooting and Growth under Different Light Qualities. Hortsci., 47(1): 88-92. https://doi.org/10.21273/HORTSCI.471.1.88
  • Jahan, M.T., Isalam, M.R., Khan, R., Mamun, A.N.K., Ahmed, G., and Hakim, L. (2009). In vitro clonal propagation of anthurium (Anthurium andraeanum L.) using callus culture. Plant Tissue Organ Cult Biotech., 19(1): 61–69.
  • Kadam, S., Singh, P., and Patel, R.M. (2017). Rooting and acclimatization of in vitro raised plantlets of guava cv. Allahabad safeda. Int. J. Sci. Res. Public. 7(8): 449-454. E-ISSN: 2250-3153
  • Kondamudi, R., Murthgy, K.S.R., and Pullaiah,T. (2009). Euphorbiaceae: A Critical Review on Plant Tissue Culture. Trop. Subtrop. Agroecosyst. 10: 313-335. E-ISSN: 1870-0462
  • Kumar, N. and Reddy, M.P. (2011). In vitro Plant Propagation: A Review. J. For. Sci., 27(2): 61-72. ISSN: 2288-9752.
  • Mattjik, A.A. and Sumertajaya, I.S. (2006). Experimental Design with SAS and Minitab Application. IPB Press. Bogor. 276 pages.
  • Moon, H.K. and Stomp, A.M. (1997). Effects of medium components and light on callus induction, growth and frond regeneration in Lemna gibba (Duckweed). In Vitro Cell. Dev. Biol-Plant, 33(1): 20-25. https://doi.org/10.1007/s11627-997-0035-5.
  • Muniz, A.W., Luiz de Sá, E., Dalagnol, G.L., and Filho, J.A. (2013). Rooting and acclimatization of micropropagated marubakaido apple rootstock using Adesmia latifolia rhizobia. SpringerPlus. 2: 437-443. https://doi.org/10.1186/2193-1801-2-437.
  • Murashige, T. and Skoog, F. (1962). A revised medium for rapid growth and bioassay with tobacco tissue cultures. Physiol. Plant., 15: 473–497. https://doi.org/10.1111/j.1399-3054.1962.tb08052.x.
  • Murillo-Gomez, P.A., Naranjo, E., Callejas, R., Atehortúa, L., and Urrea, A. (2014). Micropropagation of the native species Anthurium antiquiense Engl. for concervation purposes. Agron. Colomb., 32(3): 334-340 https://doi.org/ 10.15446/agron.colomb.v32n3.46809.
  • Petrova, M., Zayova, E., and Vitkova, A. (2011). Effect of silver nitrate on in vitro root foration of Gentiana lutea. ACRom. Biotech. Let., 16(6): 53-58.
  • Pinheiro, M.V.M., Martins, F.B., Ferreira de Cruz, A.C., Pinto de Carvalho, A.C.P., Jardim de Aliveira, E., and Campos, W. (2014). Somatic embryogenesis in anthurium (Anthurium andreanum cv. Eidibel) as affected by different explants. Acta Sci. Agron., 36(1): 87-98. https://doi.org/10.4025/actasciagron.v36i1.16557
  • Prakasha, D.P., Ramya, G., and Srinivasalu, G.B.(2017). In Vitro Mass Multiplication of Anthurium andreanum (HORT) Cultivars. Int. J. Curr. Microbiol. App. Sci., 6(9): 2579-2584. https://doi.org/10.20546/ijcmas. 2017.609.317.
  • Raad, M.K., Zanjani , S.B., Shoor , M., Hamidoghli, Y., Sayyad, A.R., Kharabian-Masouleh, A., and Kaviani, B. (2012). Callus induction and organogenesis capacity from lamina and petiole explants of Anthurium andreanum Linden (Casino and Antadra). AJCS., 6(5): 928-937. ISSN: 1835-2707
  • Rashid, B., Tariq, M., Khalid, A., Shams, F., Ali, Q., Ashraf, F., Ghaffar, I., Khan, M.I., Rehman, R., and Husnain, T. (2017). Crop improvement: new approaches and modern techniques. Plant Gene and Trait, 8(3): 18-30. https://doi.org/10.5376/pgt.2017.08.0003.
  • Rout, G.R., Mohapatr, A., and Jain, S.M. (2006). Tissue culture of ornamental pot plant: A critical review on present scenario and future prospects. Biotech. Adv. 24: 531-560. doi:10.1016/j.biotechadv.2006.05.001
  • Saptari, R.T., Sinta, M.M., and Budiani, A.(2017). In Vitro Propagation of Anthurium adreanum cv. Nitta through Organogenesis. AGRIVITA J. Agric. Sci., 39(2): 192-200. http://doi.org/10.17503/agrivita.v39i2.752
  • Thokchom, R. and Maitra, S. (2017). Micropropagation of Anthurium andreanum cv. Jewel from leaf explants. J. Crop Weed, 13(1): 23-27. ISSN: 2349-9400.
  • Winarto, B. and Mattjik., N.A. (2009). Anther culture study on local accession of Anthurium. J. Hort., 19(4): 386-395.
  • Winarto, B., Rachmawati, F., and Teixeira da Silva , J.A. (2011). New basal media for half-anther culture of Anthurium andreanum Linden ex Andre´ cv. Tropical. Plant Growth Regul., 65(3): 513-529. doi 10.1007/s10725-011-9622-x.
  • Winarto, B. and Teixeira da Silva, J.A. (2012.) Influence of isolation technique of half-anther and of initiation culture médium on callus induction and regeneration in Anthurium andreanum. Plant Cell Tiss Organ Cult., 110(3): 401-411. https://doi.org/10.1007/s11240-012-0161-6.
  • Winarto, B. and Yufdy, M.P. (2017). Establishment of In Vitro Propagation Protocol of Gerbera Jamesonii Bolus Ex Hook F: Explant and Media Selection to Plantlet Acclimatization. AGRAARTEADUS: J. Agric. Sci., 28(1): 32-40. http://dx.doi.org/10.15159/jas.17.03
  • Winarto, B., Soehendi , R and Harwanto. (2018). In vitro endosperm culture of Anthurium. Adv. Agric. Sci. J., 6(1): 13-25. ISSN: 2588-3801.
  • Yeole, M.P., Gholse , Y.N., Gurunani, S.G., and Dhole, S.M. (2016). Plant Tissue Culture Techniques: A Review for Future View. Critic. Rev. Pharmaceut. Sci., 5(1): 16-25. ISSN: 2319-1082
There are 34 citations in total.

Details

Primary Language English
Subjects Agricultural, Veterinary and Food Sciences
Journal Section Original Papers
Authors

Fitri Rachmawati 0000-0003-4532-903X

Dewi Pramanik 0000-0002-6781-774X

Budi Winarto 0000-0002-2965-4134

Publication Date June 23, 2020
Submission Date January 16, 2020
Acceptance Date May 22, 2020
Published in Issue Year 2020 Volume: 4 Issue: 1

Cite

APA Rachmawati, F., Pramanik, D., & Winarto, B. (2020). Adventitious shoots derived from leaf explants in in vitro mass propagation of Indonesian selected Anthurium clones. International Journal of Agriculture Forestry and Life Sciences, 4(1), 48-55.
AMA Rachmawati F, Pramanik D, Winarto B. Adventitious shoots derived from leaf explants in in vitro mass propagation of Indonesian selected Anthurium clones. Int J Agric For Life Sci. June 2020;4(1):48-55.
Chicago Rachmawati, Fitri, Dewi Pramanik, and Budi Winarto. “Adventitious Shoots Derived from Leaf Explants in in Vitro Mass Propagation of Indonesian Selected Anthurium Clones”. International Journal of Agriculture Forestry and Life Sciences 4, no. 1 (June 2020): 48-55.
EndNote Rachmawati F, Pramanik D, Winarto B (June 1, 2020) Adventitious shoots derived from leaf explants in in vitro mass propagation of Indonesian selected Anthurium clones. International Journal of Agriculture Forestry and Life Sciences 4 1 48–55.
IEEE F. Rachmawati, D. Pramanik, and B. Winarto, “Adventitious shoots derived from leaf explants in in vitro mass propagation of Indonesian selected Anthurium clones”, Int J Agric For Life Sci, vol. 4, no. 1, pp. 48–55, 2020.
ISNAD Rachmawati, Fitri et al. “Adventitious Shoots Derived from Leaf Explants in in Vitro Mass Propagation of Indonesian Selected Anthurium Clones”. International Journal of Agriculture Forestry and Life Sciences 4/1 (June 2020), 48-55.
JAMA Rachmawati F, Pramanik D, Winarto B. Adventitious shoots derived from leaf explants in in vitro mass propagation of Indonesian selected Anthurium clones. Int J Agric For Life Sci. 2020;4:48–55.
MLA Rachmawati, Fitri et al. “Adventitious Shoots Derived from Leaf Explants in in Vitro Mass Propagation of Indonesian Selected Anthurium Clones”. International Journal of Agriculture Forestry and Life Sciences, vol. 4, no. 1, 2020, pp. 48-55.
Vancouver Rachmawati F, Pramanik D, Winarto B. Adventitious shoots derived from leaf explants in in vitro mass propagation of Indonesian selected Anthurium clones. Int J Agric For Life Sci. 2020;4(1):48-55.

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