• Tidak ada hasil yang ditemukan

Anonim. 2005. Iradiasi sinar gamma meningkatkan keragaman krisan. Warta Penelitian dan Pengembangan Pertanian Vol. 27 No. 6.

Badriah, D.S. dan S. Soedjono. 1991. Perbaikan Varietas dengan Iradiasi. Laporan Hasil Penelitian Tanaman Hias. Sub Balai Penelitian Hortikultura. Cipanas. BPS. 2004. Statistic Tanaman Obat-Obatan dan Hias. Badan Pusat Statistik

Indonesia. Hal 21.

___. 2005. Statistik Tanaman Obat-Obatan dan Hias. Badan Pusat Statistik Indonesia. Hal 23.

___. 2011. Produksi Tanaman Hias di Indonesia. http://www.bps.go.id. Jakarta. [03 Juli 2011].

Broertjes, C dan A.M. Van Harten. 1988. Applied mutation breeding for vegetatively propagated crops. Elsevier Science Publ. Amsterdam. The Netherland. 3450p.

Campbell, N.A., J.B. Reece, dan L.W. Mitchell. 1999. Pembelahan mitosis dan

meiosis. Hal 250-251. Dalam A. Safitri (Ed.). Biologi Edisi Kelima.

Erlangga. Jakarta.

Cantor, M., I. Pop dan Korosfoys. 2002. Studies concerning the effect of gamma radiation and magnetic feild exposure on gladiolus. J. Central European Agric. Vol 3 (2002) No. 4. 277-284.

Crowder, L.V. 1990. Genetika Tumbuhan. Gajah Mada University Press. Yogyakarta. 499 hal.

D’Amato, F. 1986. Spontaneous mutations and somaclonal variation. P. 3-9. In

Proceedings on nuclear techniques and in vitro culture for plant improvement. International Atomic Energy Agency. Vienna.

Datta, S.K. 2001. Mutation studies on garden Chrysanthemum. A Review. Sci.

Hort. 7 : 159 - 199.

Direktorat Bina Produksi Hortikultura. 2004. http://www.hortikultura.deptan.go.id. Jakarta. [2 Januari 2005]

Evans, D.A. and W.R. Sharp. 1986. Somaclonal and gametoconal variation. In

Evans, D.A., W.R. Sharp, and P.V. Amirato (Ed.). Hand Book of Plant

Cell Culture. Volume 4. Mc. Millan Publ. New York.

Faradilla, F.M. 2008. Mutasi Induksi Melalui Sinar Gamma pada Dua Kultivar

Anthurium (Anthurium adreanum ‘Mini’ dan A. adreanum ‘Holland’).

Skripsi. Program Sarjana, Institut Pertanian Bogor. Bogor. 66 hal.

Handayani, A. 2007. Peningkatan Keragaman Tanaman Euphorbia milii melalui

Iradiasi Sinar Gamma. Institut Pertanian Bogor. Bogor. 28 hal.

Handro, W. 1981. Mutagenesis and In Vitro Selection. p 155-175. In T.A. Thrope.

(Ed.). Plant Tissue Culture: Method and Application in Agriculture.

Academic Press. London.

Hapsari, L. 2004. Induksi Mutasi pada Melati (Jasminum spp.) melalui Iradiasi

Sinar Gamma. Skripsi. Departemen Budidaya Pertanian, Fakultas Pertanian, IPB. Bogor

Harjadi, S. S. 1989. Dasar-Dasar Hortikultura. Faperta IPB. Bogor. 506 hal.

Horst, R. K. 1990. Chrysanthemum. In P.V. Ammirato, D.A. Evans, W.R. Sharp

and Y. P. S. Bajaj (Eds.) Handbook of Plant Cell Culture Ornamental

Species. McGraw Hill. Publish. Co. New York.

IAEA (International Atomic Energy Agency) 1992. Mutation Breeding News Letter. Joint Fao/Iaea. Vienna. No. 39:14-33.

Ibrahim, R. 1998. In vitro mutagenesis in Roses. A rose by any other name:

Application of Radiation Technique and Biotechnology for Production of Mutant Varieties of Rose. http://www.symbiosisonline.com. 3 Juni 2003. 1-5.

Ichikawa, S. and Y. Ikushima. 1967. A development study of diploid oats by means of radiation induced somatic mutation Rad. Bot. 7: 205-215.

International Chrysanthemum Society. 2002. Chrysanthemum: challenge and prospect. Mcgraw-Hill, Inc. NewYork. pp 4-5.

Ketaren, S. dan B. Djatmiko. 1981. Daya Guna Kelapa. Jurusan Teknologi Industri Fakultas Teknik Pertanian. IPB.

Krisantini. 1989. Florikultur. p. 469-477. dalam S.S. Harjadi (Ed.). Dasar-Dasar

Hortikultura. Jurusan Budidaya Pertanian. Fakultas Pertanian. Institut Pertanian Bogor. Bogor.

Lamseejan, S., Jompuk Peeranuch, A. Wongpiyasatid, S. Deeseepan, and P. Kwanthammachart. 2000. Gamma-rays induce morphological in

chrysanthemum (Chrysanthemum morifolium). Kasetsart J. (Nat. Sci.)34: 417 – 422.

Langton. 1987. Apical dissection and light integral monitoring as methods to determine when long day interruption should be given in chrysanthemum growing. Acta Hort. 197:31-41.

Larkin, P. J. and W. R. Scowcroft. 1981. Somaclonal variation anovel source of variabilityfrom cel culture for plant improvement. Theor. Appl. Genet. 60: 197- 204.

Lertphanichkul, D. Meepien dan Kassiri. 2003. Effect of gamma radiation on

mutation of gloxinia. http://user.school.net.th/~anuparp/aptc2.htm. 13

April 2004. 1-2.

Lint P.J.A.L. dan G. Heij. 1987. Effect of day and night temperature on growth and flowering of chrysanthemum. Acta Hort. 197:53-61.

Maaswinkel, R. dan Y. Sulyo. 2004. Chrysanthemum physiologie in Training on Chrysanthemum Cultivation I. Balithi.

Mortensen, L.M.. 2000. Effect of air humidity on growth, flowering, keeping quality and water relations of four short-day greenhouse species. Scientia Hortic. 86:299-310.

Nariah, F. 2008. Pengaruh Mutasi Fisik Melalui Iradiasi Sinar Gamma Terhadap

Keragaan Caladium spp. Skripsi. Program Sarjana, Institut Pertanian

Bogor. Bogor. 78 hal.

Pierik, R.L.M. 1987. Genetic Variability in Tissue Culture Impact on Germplasm Concervation and Utilization International Board for Plant Genetic

Resources. Rome. 41 p.

Poespadarsono, S. 1988. Dasar-Dasar Ilmu Pemuliaan Tanaman. Pusat Antar Universitas. IPB. 169 p. Tidak dipublikasikan.

Prasetyorini. 1991. Pengaruh Radiasi Sinar Gamma dan Jenis Eksplan terhadap

Keragaman Somaklonal pada Tanaman Gerbera (Gerbera jamesonii Bolus

ex Hook). Tesis. Program Pasca Sarjana. Institut Pertanian Bogor. Bogor. Tidak dipublikasikan.

Puslitbanghort. 2006. Budidaya Krisan Bunga Potong. Pusat Penelitian dan Pengembangan Hortikultura. Jakarta. 60 hal.

Putrasamedja, S. dan H. Sutapraja. 1989. Pengaruh beberapa media tumbuh terhadap pertumbuhan dan diameter bunga krisan. Bul. Penel. Hort. XVII: 89

Ratnasari. 2007. Evaluasi Keragaman Fenotipe Melati (Jasminum spp.) Hasil Iradiasi Berulang Sinar Gamma. Insitut Pertanian Bogor. Bogor. 38 hal. Reginawanti. 1999. Krisan. http://www.kpel.or.id. Bandung. [19 September 1999]. Salisbury, F. B. dan C. W. Ross. 1995. Fisiologi Tumbuhan Jilid Tiga. Institut

Teknologi Bandung. Bandung. 343 hal. (terjemahan)

Sanjay,L., Y.Supriyadi, R.Meilasari dan K. Yuniarto. 2003. Induksi Mutasi dengan Menggunakan Sinar Gamma pada Varietas-Varietas Krisan. Balai Penelitian Tanaman Hias. Cipanas. 1 hal.

Sanjaya, L. 1996. Krisan, bunga potong dan tanaman pot yang menawan. Jurnal Penelitian dan Pengembangan Pertanian. XV(3):55-60.

Sihombing, M. dan Rahayuningsih. 2004. Krisan Kian Digemari dan Menguntungkan. http://www.bisnis.com/servlet/page?. Jakarta. [18 Mei 2004].

Singarium, P. 1994. Effect of coir pith as an amendment for tannery polkited soils. Madras Aric. J. 81(10):548-549.

Soeminto B. 1985. Manfaat Tenaga Atom untuk Kesejahteraan Manusia. CV. Karya Indah. Jakarta. 236 hal.

Soedjono. 1992. Mutasi Imbas terhadap Bibit Alpinia purpurata. Jurnal

Hortikultura. Jakarta. Vol. 2 No. 4(1-5).

Sparrow, A.H. 1961. Types of Ionizing Radiation and Their Cytogenic Effects. p 55-119. Symposium of Mutation anf Plant Breeding. National Academic Sciences. Washington D.C.

Syafni, 2006. Induksi Keragaman Genetik Gloxinia (Siningia speciosa Benth.)

melalui Radiasi Sinar Gamma. Tesis. Program Pasca Sarjana. Institut Pertanian Bogor. Bogor. Tidak Dipublikasikan.

Valeria, B. K., M.P. Nikolai dan Y.G. Yari. 1997. Somaclonal variation and in vitro

induced mutagenesis in grapine. Plant cell, tissue and organ culture. 49 p. Van Harten, A.M. 1998. Mutation Breeding: Theory and Practical Applications.

Cambridge University Press. 353 p.

_______________. 2002. Mutation breeding of vegetatively propagated ornamental.

P. 104-128. In Vainstein A. (Ed). Bioteknologi Tanaman. PAU

Bioteknologi. IPB. Bogor. Hal 174-236.

Wardhani, M. U. D. 2005. Pengaruh Radiasi Sinar Gamma terhadap Keragaan Anggrek Brachypeza indusiata (Reichb. F) Garay secara In Vitro.

Wattimena, G.A. dan N.A. Mattjik dan L. W. Gunawan. 1988. Teknologi Kultur Jaringan untuk Mendapatkan Berbagai Varietas Bunga melalui Keragaman Somaklonal. Seminar dan Bisnis Bunga Jakarta 6-7 Juni. Wattimena, G.A. dan N.A. Mattjik. 1991. Pemuliaan Tanaman secara In Vitro. P

150-272. In G.A. Wattimena. (Ed.). Bioteknologi Tanaman. Tim

Laboratorium Kultur Jaringan Tanaman. Avery Publ. Group Inc. New Jersey/ 110 p.

Wilkins, H.F., W. E. Healy dan K.L. Grueber. 1990. Temperature regimes at various stage of production influences growth and flowering of Dendrathema x grandiflorum. J. Amer. Soc. Hort. Sci. 115(5):732-736.

Wulandari, A. 2001. Induksi Mutasi Krisan (Dendranthema grandiflora Tzvelev)

melalui Radiasi Stek Pucuk. [Skripsi] Fakultas Pertanian. Institut Pertanian Bogor. 36 hal. (Tidak dipublikasikan).

Wuryaningsih, S. 2008. Kajian karakter kuantitatif tanaman hias bunga potong krisan. http://www.wuryan.wordpress.com. [10 November 2008].

______________, A. Muharram dan I. Rusyadi. 2002 Tanggapan tiga kultivar mawar terhadap media tumbuh tanpa tanah. J. Hortikultura. 13 (2) : 76 – 85.

_______________. 2009. Pengaruh Iradiasi Sinar Gamma terhadap Penampilan dan Viabilitas PlantletLima Genotip Krisan Potong. http://www.wuryan.wordpress.com. [22 Januari 2009].

LAMPIRAN

Lampiran 1. Sidik Ragam Peubah Jumlah Tunas Hidup Minggu I

Source DF Type III SS Mean Square F Value Pr > F

D 3 7.65203252 2.55067751 21.35 0.0001

K 3 0.99811247 0.33270416 2.78 0.0486

D*K 9 1.78357327 0.19817481 1.66 0.1199

Minggu II

Source DF Type III SS Mean Square F Value Pr > F

D 4 14.26116230 3.56529057 99999.99 0.0001

K 3 0.72009292 0.24003097 99999.99 0.0001

D*K 12 2.97264563 0.24772047 99999.99 0.0001

Minggu III

Source DF Type III SS Mean Square F Value Pr > F

D 4 3.46063907 0.86515977 9.26 0.0001

K 3 1.36576381 0.45525460 4.87 0.0037

D*K 12 1.49855594 0.12487966 1.34 0.2161

Minggu IV

Source DF Type III SS Mean Square F Value Pr > F

D 4 2.81884637 0.70471159 8.13 0.0001

K 3 0.90662134 0.30220711 3.49 0.0198

D*K 12 1.90133234 0.15844436 1.83 0.0585

Minggu V

Source DF Type III SS Mean Square F Value Pr > F

D 4 3.86204521 0.96551130 10.43 0.0001

K 3 0.66616935 0.22205645 2.40 0.0747

D*K 12 1.49048072 0.12420673 1.34 0.2141

Minggu VI

Source DF Type III SS Mean Square F Value Pr > F

D 4 2.52289088 0.63072272 6.52 0.0002

K 3 0.81399753 0.27133251 2.80 0.0458

Lampiran 2. Sidik Ragam Peubah Tinggi Tunas Minggu II

Source DF Type III SS Mean Square F Value Pr > F

D 4 0.17637259 0.04409315 3.04 0.0222

K 3 0.22496654 0.07498885 5.16 0.0026

D*K 12 0.17966551 0.01497213 1.03 0.4297

Minggu III

Source DF Type III SS Mean Square F Value Pr > F

D 4 1.67519027 0.41879757 7.92 0.0001

K 3 1.43094518 0.47698173 9.02 0.0001

D*K 12 1.44685380 0.12057115 2.28 0.0155

Minggu IV

Source DF Type III SS Mean Square F Value Pr > F

D 4 6.59347224 1.64836806 13.42 0.0001

K 3 3.16337281 1.05445760 8.59 0.0001

D*K 12 3.66297283 0.30524774 2.49 0.0084

Minggu V

Source DF Type III SS Mean Square F Value Pr > F

D 4 13.00861298 3.25215324 6.46 0.0002

K 3 9.10068516 3.03356172 6.02 0.0010

D*K 12 10.97074918 0.91422910 1.81 0.0607

Minggu VI

Source DF Type III SS Mean Square F Value Pr > F

D 4 66.29477307 16.57369327 3.66 0.0090

K 3 44.93823023 14.97941008 3.31 0.0248

Lampiran 3. Sidik Ragam Peubah Jumlah Daun Minggu II

Source DF Type III SS Mean Square F Value Pr > F

D 4 2.37897342 0.59474335 0.90 0.4704

K 3 4.66146568 1.55382189 2.35 0.0809

D*K 12 6.11044552 0.50920379 0.77 0.6794

Minggu III

Source DF Type III SS Mean Square F Value Pr > F

D 4 28.32156341 7.08039085 1.86 0.1280

K 3 53.60792023 17.86930674 4.68 0.0049

D*K 12 81.61758976 6.80146581 1.78 0.0681

Minggu IV

Source DF Type III SS Mean Square F Value Pr > F

D 4 127.80022236 31.95005559 3.28 0.0158

K 3 144.73937282 48.24645761 4.96 0.0035

D*K 12 362.31438912 30.19286576 3.10 0.0014

Minggu V

Source DF Type III SS Mean Square F Value Pr > F

D 4 197.40474931 49.35118733 3.10 0.0208

K 3 320.77322034 106.92440678 6.72 0.0005

D*K 12 621.77959535 51.81496628 3.26 0.0009

Minggu VI

Source DF Type III SS Mean Square F Value Pr > F

D 4 531.52052945 132.88013236 5.66 0.0005

K 3 434.44862866 144.81620955 6.17 0.0009

MELALUI IRADIASI SINAR GAMMA SECARA IN VITRO

Dokumen terkait