PENGARUH KOSENTRASI NAA DAN TDZ (THIDIAZURON) TERHADAP ORGANOGENESIS KALUS KENCUR (Kaempferia galanga L.)
DOI:
https://doi.org/10.30595/agritech.v24i2.14755Keywords:
Keywords, Kaempferia galanga L, oganogenesis, TDZ, and NAAAbstract
The production of kencur (Kaempferia galanga L.) with tissue culture is an alternative in kencur plant cultivation as a provider of seeds. In tissue culture, growth regulators can affect the formation of plant organs (organogenesis). The combination of growth regulators NAA and TDZ was used in this study to induce callus kencur organogenesis. The purpose of this research was to determine the effect of giving NAA and TDZ on the organogenesis of kencur callus, as well as the optimal combination of the two in the organogenesis of kencur callus. The design used was factorial RAL with two factors: NAA (0; 0.5 and 1 ppm) and TDZ (0; 2 and 4 ppm). Observation variables included number of shoots, shoot length, number of leaves, leaf length, number of roots, root length, fresh weight, and the first time shoots appeared. The results showed that the single NAA treatment affected the number of shoots, number of leaves, number of roots, root length, and fresh weight. In comparison, the single TDZ treatment affected shoot length, leaf length, number of roots, root length, and fresh weight. The optimal treatment combination was 1 ppm NAA and 2 ppm TDZ (N1T2), which gave the highest number of shoots. Higher concentrations of cytokinins can stimulate shoot growth.
References
DAFTAR PUSTAKA
Ahmed., M., R., dan Anis. M.,2012. Role of TDZ in the Quick Regeneration of Multiple Shoots from Nodal Explant of Vitex trifolia L.—an Important Medicinal Plant . Appl Biochem Biotechnol. 168: 957–966
Astutik, Sumiati, S., dan Sutoyo. 2021. Stimulasi Pertumbuhan Dendrobium Sp Menggunakan Hormon Auksin Naphtalena Acetic Acid (NAA) dan Indole Butyric Acid (IBA). Jurnal Buana Sains. 21(1) : 19 – 28
Buising, C. M., R. C. Shoemak er, and R. M. Benbow. 1994. Early events of multiple bud formation and shoot development in soy-bean embryonic axes treated with thecytokinin, 6-benzylaminopurine. Am. J.Bot. 81(1): 1435-1448.
Dewi, I.R. 2007. Rhizobacteria pendukung pertumbuhan tanaman. makalah. Fakultas Pertanian Universitas Padjadjaran. Jatinangor.
Dinika, A. R., Saputro, N. W., Sulandjari, K., dan Rahmi, H., 2021. Organogenesis Kalus Tanaman Krisan (Chrysanthemum Indicum L.) Dengan Penggunaan Kinetin dan NAA (Naphthalene Acetic Acid). Jurnal Agrium. 18(1): 72 – 79
Erisen, S., Atalay, E., dam Yorgancilar, M. 2011. The Effect of the thidiazuron on the in vitro shoot development of academic Astragalus ceriensis in Turkey. 35: 521 – 526
Fitriyani W, 2014. Respon Pertumbuhan Kalus Stevia (Stevia rebaudiana B.) Pada Media Ms Dengan Penambahan Zat Pengatur Tumbuh 2,4-D Yang Dikombinasikan Dengan Air Kelapa. Thesis. Malang
Friedman R, A Altman and Bahcrachu. 1985. Polyamines and root formation in mung bean hypocotyl cuttings. II. Incorporation of precursor into polyaminers. Plant Physiology 79: 80-83.
Golle,D.P.,2010.Establishment, multiplication, callogenesis, in vitro organogenesis and analysis of genetic diversity in accessions of Eugenia involucrata DC [thesis] Santa Maria: Universidade Federal de Santa Maria
Gubbuk, Hamide., dan M. Pekmezci. 2004. In vitro propagation of some new banana types (Musa spp.). Akdenik University 07059 Antalya. Turkey. Vol 28: 355-361
Guo, B., Abbasi, B. H., Zeb A, Xu L. L, dan Wei, Y.H. 2011. Thidiazuron: A multi dimensional plant growth regulator. Afr J Biotechnol .10: 8984 - 9000.
Hendaryono, D. P.S. dan Wijayani A. 1994. Teknik Kultur Jaringan, Pengenalan dan Petunjuk Perbanyakan Secara Vegetatif. Yogyakarta: Kanisius
Indriani, M., Suminar, E., Wicaksana., N., Sobardini, D., Sulistyaningsih., Nuraini, A., Nursuhud., dan Muibarok, S. 2017. Respon eksplan kunyit (Curcuma Domestica Val) pada berbagai jenis sitokinin dan auksin dalam media Murashige and Skoog (MS).
Karjadi, A. K., dan Buchory., A. 2008. Pengaruh Auksin dan Sitokinin Terhadap Pertumbuhan dan Perkembangan Jaringan Meristem Kentang Kultivar Granola. J. Hort. 18 (4) : 380 – 384
Lestari, A. T., T. Islami, dan E. Nihayati. 2017. Pengaruh konsentrasi NAA (naphthaleneacetic acid) dan BAP (6- benzyl amino purine) pada pembentukan planlet anthurium gelombang cinta (Anthurium plowmanii) secara in vitro. J. Produksi Tanaman. 5 (12) : 2047 – 2052.
Mashud, Nurbaini. 2013. Efek Zat Pengatur Tumbuh BAP Terhadap Pertumbuhan Planlet Kelapa Genjah Kopyor dari Kecambah Yang Dibelah. B.Palma.12(2).
Mawaddah, S. K., Saputro, N. W., & Lestari, A. (2021). Pemberian Naphthalene Acetic Acid (NAA) dan Kinetin Terhadap Multiplikasi Tunas Tanaman Jahe (Globba leucantha var. bicolor Holttum) pada Kultur In Vitro. Bioma : Berkala Ilmiah Biologi, 23(1), 43–50.
Nie, Y., Liana, L., K., dan Evacuasiany, E., 2012. The Effect Kencur’s Rhizome ethanol extract (Kaempferia galangan L) Against Gastric Mucosal To Swiss Webseter Mice In Induced by Asetosal. Jurnal Medika Planta, 2 (1): 78-84.
Nisak K., Tutik Nurhidayati., dan Kristanti I. Purwani. 2012.Pengaruh Kombinasi konsentrasi ZPT NAA dan BAP pada Kultur Jaringan Tembakau Nicotiana tabacum var. Prancak 95. Jurnal Sains Dan Seni Pomits. 1(1) 1-6
Ningrum, E., K., C., Rosyidi, I., N., Puspasari, R., R., dan Semiarti, E. 2017. Perkembangan Awal Protocorm Anggrek Phlaenopsis amabilis Secara In Vitro Setelah Penambahan Zat Pengatur Tumbuh a-Naphtaleneacetic acid dan thidiazuron. 34(1) : 9-14
Prasiwi dan Tatik.2018. Pengaruh Pemberian Thidiazuron (Tdz) Terhadap Pertumbuhan Tunas Nanas (Ananas Comosus (L.) Merr.) Cv. ‘Smooth Cayyene’ Asal Mahkota Buah. Jurnal Produksi Tanaman. 6(1) : 9-15
Rainiyati, Lizawati, dan M. Kristiana. 2009. Peranan IAA dan BAP terhadap perkembangan nodul pisang (Musa AAB) raja nangka secara in vitro. Jurnal Agronomi 13(1): 51-57
Rahman, M.M., Amin, M.N., Ahmed, T., Ahmad, S., Habib, A., Ahmed, R., Ahmed, M.B. dan Ali, M.R. 2005. In Vitro Rapid Propagation of Black Thorn (Kaempferia galanga L.): A Rare Medicinal and Aromatic Plant of Bangladesh. Journal of Biological Sciences. 5 (3): 300 - 304.
Salisbury, F.B.an Ross, C.W. 1995. Fisiologi Tumbuhan Edisi III. Dyah R. Lukman dan Sumaryono (Translator). Bandung (ID): ITB.
Restanto, D.P., B. Kriswanto, M.N. Khozim, dan S.Soeparjono, 2018. Kajian Thidiazuron (Tdz) Dalam Induksi PLB Anggrek Phalaenopsis sp Secara In Vitro. Agritrop, Volume 16 (1) Juli 2018
Sakina, S., Anwar, S.F., Kumiyati, F.,. Pertumbuhan Planlet Anggrek Dendrobium (Deondrobium sp.) secara in viro pada Konsentrasi BAP dan NNAA berbeda. 6(3) : 430 - 437
Samanhudi, Pujiasmanto, B., dan Dewi, E.P., 2021. Kajian Konsentrasi BAP dan NAA Terhadap Multiplikasi Kencur In Vitro. Jurnal Agrica Ekstensia. 15(1) : 1 – 20
Saptari, R. T. 2017. “Organogenesis untuk Perbanyakan Tanaman Hias”. Jurnal IRIBB, 5 (1): 18.
Sari, H. S., Dwianti,H. dan Budisantosa, I. 2015. Efek NAA dan BAP terhadap Pembentukan Tunas, Daun, dan Tinggi Tunas Stek Mikro Nepenthes ampullaria Jack. Biosfera. 32 (3) : 195 - 201
Shalifah, H.A.B., Muskhazli, Rusea, Nithiyaa. 2011. Variation in mycorrhizal specificity for in vitro symbiotic seed germination of Grammatophyllum speciosum Blume. Sains Malaysiana 40(5): 451-455.
Silva TS, Nepomuceno CF, Borges BPS, Alvim BFM, Santana JRF. 2013.In vitro multiplication of Caesalpinia pyramidalis (Leguminosae). Sitientibus series Biological Sciences. 13: 1-6
Suhentaka, E. B., dan Sobir. 2010. Pengaruh Konsentrasi BA dan NAA pada Tahap Multiplikasi Secara In vitro Terhadap KeberhasilanAklimatisasi Nenas (Ananas comosus L. Merr) Kultivar Smooth Cayenne. Makalah Seminar. Departemen Agronomi dan Hortikultura. Fakultas Pertanian. Institut Pertanian Bogor.
Suminar, E., Sumadi, S., Mubarok, T, Sumarto, N, Suswati dan E, Rini,. 2017. Percepatan Penyediaan Benih Sumber Kedelai Unggul secara in vitro. Jurnal Agrikultura 2017, 28 (3): 126 - 135 ISSN 0853 - 2885.
Supriyadi, Isnawan, dan Rineksane. 2017. Pengaruh Thidiazuron dan NAA Terhadap Multiplikasi Tunas Biji Tanaman Sarang Semut (Myrmecodia Pendans) Secara In Vitro.Thesis. Fakultas Pertanian. Universitas Muhammadiyah Yogyakarta.
Supriyadi, Isnawan, dan Rineksane. 2017. Pengaruh Thidiazuron dan NAA Terhadap Multiplikasi Tunas Biji Tanaman Sarang Semut (Myrmecodia Pendans) Secara In Vitro.Thesis. Fakultas Pertanian. Universitas Muhammadiyah Yogyakarta.
Sutriana, S., Jumin, H., B., dan Mardaleni. 2014. Interaksi BAP dan NAA Terhadap Pertumbuhan Eksplan Anggrek Vanda Secara In Vitro. Jurnal Dinamika Pertanian. 29(1): 1-8.
Wahyuningtiyas L; R. S Resmisari dan Nashichuddin, 2014. Induksi Kalus Akasia (Acacia mangium) Dengan Penambahan Kombinasi 2,4-D Dan BAB Pada Media MS. Thesis. Universitas Islam Negeri Maulana Malik Ibrahim Malang
Wakidah, K., dan Rahayu, E. S., 2020. Optimasi Jenis dan Konsentrasi Zat Pengatur Tumbuh Serta Pencahayaan untuk Pertumbuhan Plantlet Phalaenopsis sp. Secara In Vitro. Life Science. 9 (1) : 94 -102
Weindi, N. M. A., dan Yudhanto, A. S. 2015. Pengaruh Pemberian Auksin (NAA) dengan Sitokinin (BAP, Kinetin, dan 2ip) Terhadap Daya Proliferasi Tanaman Kantong Semar (Nepenthes mirabilis). Bul. Agrohorti. 3(3) : 276 – 284
Widiastoety, D. 2014. Pengaruh Auksin dan Sitokinin Terhadap Pertumbuhan Planlet Anggrek Mokara. J. HortI. 24(3) : 230 – 238Downloads
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