scholarly journals PERBANYAKAN IN VITRO PISANG KEPOK var. UNTI SAYANG TAHAN PENYAKIT DARAH MELALUI PROLIFERASI TUNAS

2018 ◽  
Vol 5 (1) ◽  
pp. 36
Author(s):  
Maria Imelda ◽  
Aida Wulansari ◽  
Laela Sari

In Vitro Propagation of Kepok Banana var. Unti Sayang Resistant to Blood Disease through Shoot ProliferationABSTRACTKepok is a popular banana variety but sensitive to blood disease caused by Ralstonia solanacearum (Smith). The discovery of a natural mutant of Kepok banana var. Unti Sayang from Sulawesi which male bud falls naturally, is a shortcut to bypass the chains of the spread of blood disease, since the disease is transmitted by insects through the wounds of the male buds. The superior mutant needs to be mass propagated and disseminated to endemic areas to inhibit the spread of blood disease. To achieve that goal, an efficient and effective techniques of in vitro shoot proliferation needs to be developed. Shoot proliferation was performed by addition of BAP, thidiazuron and adenine sulphate. The results showed that the best medium for shoot multiplication was B2T5A (MS+2 mg/L BAP+0,5 mg/L TDZ+20 mg/L adenine sulphate), and for shoot growth was B4A (MS+4 mg/L BAP+20 mg/L adenine sulphate). Rooting was induced on MS medium without hormones. Acclimatization of plantlets on mixed soil, compost and husks with a ratio of 1:1:1 resulted in 92,35% survival rate.Keywords: blood disease, in vitro shoot,  male budless, natural mutant, var. Unti Sayang  ABSTRAKPisang kepok merupakan varietas yang digemari tetapi sangat peka terhadap penyakit darah yang ditimbulkan oleh bakteri Ralstonia solanacearum (Smith). Ditemukannya mutan alami pisang kepok yang jantungnya gugur secara alami yaitu varietas Unti Sayang dari Sulawesi, merupakan jalan pintas untuk memotong rantai penyebaran penyakit darah, mengingat penyakit ini ditularkan oleh serangga melalui luka bekas bunga jantan pada jantung. Mutan unggul tersebut perlu diperbanyak secara massal dan disebarluaskan ke daerah endemik untuk menghambat penyebaran penyakit darah. Untuk mencapai tujuan tersebut, perlu dikembangkan teknik perbanyakan in vitro pisang kepok Unti Sayang yang efektif dan efisien melalui proliferasi tunas. Proliferasi tunas dilakukan dengan penambahan BAP, thidiazuron dan adenin sulfat. Hasil penelitian ini menunjukkan bahwa media terbaik untuk multiplikasi tunas adalah B2T5A (MS+2 mg/L BAP+0,5 mg/L TDZ+20 mg/L adenin sulfat), media terbaik untuk pertumbuhan tunas adalah B4A (MS+4 mg/L BAP+20 mg/L adenin sulfat). Akar dapat diinduksi pada media MS tanpa hormon. Aklimatisasi planlet pada media campuran tanah, kompos dan sekam dengan perbandingan 1:1:1 menghasilkan 92,35% planlet hidup.Kata Kunci: penyakit darah, tunas in vitro, tanpa jantung, mutan alami, var. Unti Sayang 

2002 ◽  
Vol 50 (2) ◽  
pp. 191-195 ◽  
Author(s):  
K. Magyar-Tábori ◽  
J. Dobránszki ◽  
E. Jámbor-Benczúr

The in vitro shoot multiplication of apple cv. Jonagold was tested on media containing benzyladenine, benzyladenine riboside or meta-topolin in different concentrations (from 0.0 to 5.0 mg l-1). The optimal concentration for the best multiplication varied according to the type of cytokinin. The highest multiplication rate (on average 6.9 and 5.9 new shoots per explant) was achieved using 5.0 mg l-1 meta-topolin or 2.0 mg l-1 benzyladenine riboside. The longest shoots were formed on media containing benzyladenine riboside at a concentration of 0.5 mg l-1. The length of newly developed shoots was strongly suppressed by high concentrations of different cytokinins, but the suppression effect of a high concentration of meta-topolin on shoot length was less than that of benzyladenine or benzyladenine riboside. In this study meta-topolin and benzyladenine riboside proved to be effective cytokinins to induce adequate shoot proliferation, while benzyladenine was the least active cytokinin


1970 ◽  
Vol 19 (2) ◽  
pp. 237-245 ◽  
Author(s):  
Pranay Bantawa ◽  
Olivia Saha Roy ◽  
Parthadeb Ghosh ◽  
Tapan Kumar Mondal

An alternative protocol for in vitro propagation of Picrorhiza scrophulariiflora is described using bavistin and adenine sulphate. The explants differentiated into multiple shoot buds on MS supplemented with various concentrations of bavistin and adenine sulphate ranging from 0 - 400 mg/l either alone or in combination. Maximum number of multiple shoots were obtained on MS containing the combination of bavistin (100 mg/l) and adenine sulphate (100 mg/l). In this combination as high as 28 shoots per explant was achieved and also vetrification of the cultures were not recorded. This study also demonstrates that the bavistin has stronger cytokinin-like activity than adenine sulphate. For instance, it was observed that bavistin alone in the concentration of 300 mg/l produced as high as 24 shoots per explant, however, adenine sulphate (100 mg/l) could produce a maximum of 18 shoots per explant. Moreover, higher or lower concentration did not improve the shoot multiplication. The microshoots were separated from the multiple shoots and transferred to MS containing various concentrations of auxins. Among them, NAA (1 mg/l) produced as high as 6 roots per explant. The regenerated plantlets were hardened in plastic cups (6 x 8 cm) containing 9 : 1 virgin soil and soil at Kyongnosla nursery and acclimated for four weeks. A 90% survival rate of the plants was recorded after 60 days. D.O.I. 10.3329/ptcb.v19i2.5441 Plant Tissue Cult. & Biotech. 19(2): 237-245, 2009 (December)


1985 ◽  
Vol 65 (4) ◽  
pp. 1025-1032 ◽  
Author(s):  
BRIAN W. DYKEMAN ◽  
BRUCE G. CUMMING

Methods were developed for the successful in vitro propagation of ostrich fern (Matteuccia struthiopteris (L.) Todaro) clones utilizing shoot tips derived by forcing lateral buds on the rhizome. Maximum shoot proliferation was attained with 6-furfurylaminopurine (kinetin) at 1.0 mg/L with half-strength Murashige and Skoog (MS) inorganic salts and sucrose, agar, NaH2PO4, adenine sulphate, i-inositol and thiamine∙HCl at 30 000, 4000, 85, 40, 100, 0.4 mg/L, respectively. Excellent frond and root development was achieved with half-strength MS salts and sucrose, agar, i-inositol and thiamine∙HCl at 7500, 4000, 100 and 0.4 mg/L, respectively. The methods developed were satisfactory for a cross section of clones. Morphogenesis in vitro was dependent on medium osmotic potential.Key words: Matteuccia struthiopteris, in vitro propagation, tissue culture, morphogenesis, fern (ostrich)


HortScience ◽  
2002 ◽  
Vol 37 (1) ◽  
pp. 194-195 ◽  
Author(s):  
Masanori Kadota ◽  
Takashi Hirano ◽  
Kiyotoshi Imizu ◽  
Yoshiji Niimi

Effects of PA on in vitro shoot proliferation and root formation were investigated using shoot cultures of three Japanese pear (Pyrus pyrifolia Nakai) cultivars. PA inhibited shoot multiplication and promoted initiation and development of roots in the cultured shoots of three cultivars, resulting in increasing the proportion of rooted shoots. Chemical name used: pyroligneous acid (PA).


2007 ◽  
Vol 55 (4) ◽  
pp. 471 ◽  
Author(s):  
S. J. Trueman ◽  
D. M. Richardson

Hybrids between Corymbia torelliana (F.Muell.) K.D.Hill & L.A.S.Johnson and C. citriodora subsp. variegata (F.Muell.) A.R.Bean & M.W.McDonald are used extensively to establish forestry plantations in subtropical Australia. Methods were developed for in vitro seed germination, shoot multiplication and plantlet formation that could be used to establish in vitro and ex vitro clone banks of juvenile Corymbia hybrids. Effects of sodium hypochlorite concentration and exposure time on seed contamination and germination, and effects of cytokinin and auxin concentrations on shoot multiplication and subsequent rooting, were assessed. A two-step surface sterilisation procedure, involving 70% ethanol followed by 1% sodium hypochlorite, provided almost no contamination and at least 88% germination. A novel method of cytokinin-free node culture proved most effective for in vitro propagation. Lateral bud break of primary shoots was difficult to induce by using cytokinin, but primary shoots rooted prolifically, elongated rapidly and produced multiple nodes in the absence of exogenous cytokinin. Further multiplication was obtained either by elongating lateral shoots of nodal explants in cytokinin-free medium or by inducing organogenic callus and axillary shoot proliferation with 2.2 µm benzyladenine. Plantlets were produced using an in vitro soil-less method that provided extensive rooting in sterile propagation mixture. These methods provide a means for simultaneous laboratory storage and field-testing of clones before selection and multiplication of desired genotypes.


2016 ◽  
Vol 77 (1) ◽  
Author(s):  
Imron RIYADI ◽  
J. S. TAHARDI TAHARDI

AbstractThe use of the appropriate source of nodalbud explants in culture can increase theeffectiveness and efficiency of shootmultiplication. An experiment was conducted todetermine and compare the rate of in vitro shootmultiplication from apical and axillary budsin cinchona (Cinchona ledgeriana Moens) andtheir subsequent growth and development. Theplant material used was Cinchona ledgerianaoriginating from the Indonesian Tea andCinchona Research Institute, Gambung, WestJava. Explants were taken from apical andaxillary nodes from in vitro germinated seedlings.The cultures were incubated at 26 0 C and 60%relative humidity under a 14-h photoperiod withlight intensity of 30 µmol photon/m 2 /sec.provided by cool-white fluorescent tubes (TL40 W) for 4 - 8 weeks. The parameters observedwere shoot multiplication rate, shoot growth anddevelopment such as shoot length, leaf numberand rooting frequency. Apical and axillary nodesproduced shoots at different multiplication rateson Murashige-Skoog (MS) standard mediumcontaining 30 g/L sucrose and supplemented with1 – 5 mg/L BA in combination with 0.1 mg/L IBA.Furthermore, shoots or plantlets of cinchonagrew and developed on the same mediacontaining 5 – 10 mg/L IAA combined with0.5 mg/L IBA. The results showed that shootmultiplication rate was higher in axillary than inapical nodes. The highest multiplication rate inaxillary nodes was 24.6 shootlets with 3 mg/LBA treatment, whereas in apical nodes it was17.2 shootlets with 5 mg/L BA treatment for eightweeks. The highest rooting frequency ofcinchona plantlet was 90%, achieved with 5 mg/LIAA in combination with 0.5 mg/L IBA. Theplantlets were successfully acclimatized andtransplanted to the fieldAbstrakSumber eksplan berupa nodus/tunas padakultur in vitro umum digunakan untuk multi-plikasi tunas. Penelitian ini bertujuan untukmembandingkan tingkat multiplikasi antara tunasapikal dengan tunas aksiler tanaman kina Ledgersecara in vitro. Bahan tanaman yang digunakanadalah kina Ledger (Cinchona ledgeriana Moens)yang berasal dari Pusat Penelitian Teh dan Kina,Gambung, Jawa Barat. Eksplan berupa nodus/tunas apikal dan aksiler asal biji yang dikecam-bahkan secara in vitro. Kultur tersebut diinku-basikan dalam ruang terang pada intensitascahaya 30 μmol foton/m 2 /detik dengan periodepenyinaran 14 jam pada suhu 260 C dankelembaban relatif + 60% selama 4 – 8 minggu.Parameter yang diamati adalah perbandinganmultiplikasi tunas dan pertumbuhan tunas yangmeliputi rata-rata tinggi tunas, jumlah daun danfrekuensi pengakaran. Nodus apikal maupunaksiler menghasilkan tunas dengan tingkatMurashige-Skoog (MS) standar yang me-ngandung sukrosa30 g/L dan ditambahkan BA1 – 5 mg/L dikombinasikan IBA 0,1 mg/L.Selanjutnya tunas/planlet kina tersebut berhasiltumbuhdan berkembang pada medium sama yangdiberi IAA 5 – 10 mg/L dikombinasikan denganIBA 0,5 mg/L. Hasil penelitian menunjukkanbahwa tingkat multiplikasi tunas aksiler lebihtinggi dari pada tunas apikal. Multiplikasi tunasaksiler menghasilkan jumlah tunas rata-ratatertinggi sebesar 24,6 tunas per eksplan padaperlakuan BA 3 mg/L sedangkan multiplikasitunas apikal tertinggi sebesar 17,2 tunas pereksplan pada perlakuan BA 5 mg/L pada umurdelapan minggu. Frekuensi pengakaran planletkina tertinggi mencapai 90% pada perlakuan IAA10 mg/L yang dikombinasikan dengan IBA 0,5mg/L. Planlet yang dihasilkan telah berhasildiaklimatisasi dan dipindahkan ke tempatpersemaian lapang.


2016 ◽  
Vol 77 (1) ◽  
Author(s):  
Imron RIYADI ◽  
J. S. TAHARDI TAHARDI

AbstractThe use of the appropriate source of nodalbud explants in culture can increase theeffectiveness and efficiency of shootmultiplication. An experiment was conducted todetermine and compare the rate of in vitro shootmultiplication from apical and axillary budsin cinchona (Cinchona ledgeriana Moens) andtheir subsequent growth and development. Theplant material used was Cinchona ledgerianaoriginating from the Indonesian Tea andCinchona Research Institute, Gambung, WestJava. Explants were taken from apical andaxillary nodes from in vitro germinated seedlings.The cultures were incubated at 26 0 C and 60%relative humidity under a 14-h photoperiod withlight intensity of 30 µmol photon/m 2 /sec.provided by cool-white fluorescent tubes (TL40 W) for 4 - 8 weeks. The parameters observedwere shoot multiplication rate, shoot growth anddevelopment such as shoot length, leaf numberand rooting frequency. Apical and axillary nodesproduced shoots at different multiplication rateson Murashige-Skoog (MS) standard mediumcontaining 30 g/L sucrose and supplemented with1 – 5 mg/L BA in combination with 0.1 mg/L IBA.Furthermore, shoots or plantlets of cinchonagrew and developed on the same mediacontaining 5 – 10 mg/L IAA combined with0.5 mg/L IBA. The results showed that shootmultiplication rate was higher in axillary than inapical nodes. The highest multiplication rate inaxillary nodes was 24.6 shootlets with 3 mg/LBA treatment, whereas in apical nodes it was17.2 shootlets with 5 mg/L BA treatment for eightweeks. The highest rooting frequency ofcinchona plantlet was 90%, achieved with 5 mg/LIAA in combination with 0.5 mg/L IBA. Theplantlets were successfully acclimatized andtransplanted to the fieldAbstrakSumber eksplan berupa nodus/tunas padakultur in vitro umum digunakan untuk multi-plikasi tunas. Penelitian ini bertujuan untukmembandingkan tingkat multiplikasi antara tunasapikal dengan tunas aksiler tanaman kina Ledgersecara in vitro. Bahan tanaman yang digunakanadalah kina Ledger (Cinchona ledgeriana Moens)yang berasal dari Pusat Penelitian Teh dan Kina,Gambung, Jawa Barat. Eksplan berupa nodus/tunas apikal dan aksiler asal biji yang dikecam-bahkan secara in vitro. Kultur tersebut diinku-basikan dalam ruang terang pada intensitascahaya 30 μmol foton/m 2 /detik dengan periodepenyinaran 14 jam pada suhu 260 C dankelembaban relatif + 60% selama 4 – 8 minggu.Parameter yang diamati adalah perbandinganmultiplikasi tunas dan pertumbuhan tunas yangmeliputi rata-rata tinggi tunas, jumlah daun danfrekuensi pengakaran. Nodus apikal maupunaksiler menghasilkan tunas dengan tingkatMurashige-Skoog (MS) standar yang me-ngandung sukrosa30 g/L dan ditambahkan BA1 – 5 mg/L dikombinasikan IBA 0,1 mg/L.Selanjutnya tunas/planlet kina tersebut berhasiltumbuhdan berkembang pada medium sama yangdiberi IAA 5 – 10 mg/L dikombinasikan denganIBA 0,5 mg/L. Hasil penelitian menunjukkanbahwa tingkat multiplikasi tunas aksiler lebihtinggi dari pada tunas apikal. Multiplikasi tunasaksiler menghasilkan jumlah tunas rata-ratatertinggi sebesar 24,6 tunas per eksplan padaperlakuan BA 3 mg/L sedangkan multiplikasitunas apikal tertinggi sebesar 17,2 tunas pereksplan pada perlakuan BA 5 mg/L pada umurdelapan minggu. Frekuensi pengakaran planletkina tertinggi mencapai 90% pada perlakuan IAA10 mg/L yang dikombinasikan dengan IBA 0,5mg/L. Planlet yang dihasilkan telah berhasildiaklimatisasi dan dipindahkan ke tempatpersemaian lapang.


2016 ◽  
Vol 8 (4) ◽  
pp. 1999-2006
Author(s):  
Smita Kadam ◽  
R. M. Patel ◽  
Pushpraj Singh

In the present experiment an attempt has been made to optimize the effect of different medium, levels of sucrose, pH, adenine sulphate and light intensity for culture establishment and shoot proliferation in guava using nodal segment explants. Culture establishment was greatly influenced by media types. Maximum establishment ofexplants (74.57%) was recorded on MS medium supplemented with 2.0 mg/l BAP + 0.2 mg/l IBA. In proliferation study, the maximum shoot proliferation was observed in MS + 1 mg/l BAP + 0.25 mg/l GA3. Sucrose 3% was found to be more favorable for maximum proliferation and growth of shoots moreover, it was reduced gradually as increased or decreased levels of sucrose from 30 g/l. among the various pH levels tested, pH 5.5 recorded maximum number of shoots (8.08) and maximum length of shoots (3.75 cm).In proliferation medium the length of shoot, numbers of shoots and growth rate were increased as increased the adenine sulphate level in the medium. Maximum proliferation was observed on 160 mg/l adenine sulphate in the medium. High light intensity 3000 lux was found to be most suitable for proper growth of regenerated shoots. Low light intensity (1000 lux) resulted in stunted growth. All the above factors significantly influenced shoot multiplication and growth. Thus, optimization of these factors showed significantly increased number of shoots and rapid multiplication. This could be useful for the in vitro production of cost effective healthy planting material of guava


HortScience ◽  
2016 ◽  
Vol 51 (12) ◽  
pp. 1573-1580 ◽  
Author(s):  
Bärbel Röck-Okuyucu ◽  
Meltem Bayraktar ◽  
Ismail Hakki Akgun ◽  
Aynur Gurel

Stevia rebaudiana is of great importance due to its steviol glycosides (SGs) which are natural sweeteners used by the food industry as well as having medicinal purposes. In the present study, the effect of plant growth regulators (PGRs) and explant types on in vitro propagation and shoot growth of S. rebaudiana were studied, the effect of PGRs on SGs production was determined. For this purpose, nodal explants and shoot tip explants were cultured on woody plant medium (WPM) supplemented with cytokinins [6-benzyladenine (BA), kinetin (Kn), or thidiazuron (TDZ)] or cytokinins + auxins combinations [BA + indoleacetic acid (IAA); BA + naphthaleneacetic acid (NAA); Kn + IAA; Kn + NAA]. Although, the best shoot proliferation was obtained on WPM supplemented with BA + NAA combinations, shoots grown on PGR-containing media produced callus at the base of the shoots and showed chlorosis and necrosis. Additionally, shoots showed at all concentrations of TDZ, and at higher concentrations of BA, morphological changes such as malformed leaves and poor shoot growth. In contrast to PGR-containing media, on the PGR-free control medium, the development of shoots and roots occurred simultaneously and healthy and well-developed plantlets were obtained. Thus, we developed an economical viable means of in vitro propagation by minimizing the micropropagation steps and removing the requirement of PGRs. According to the high-performance liquid chromatography (HPLC) results, PGR-free control medium (WPM) led to considerably higher stevioside content in the leaves compared with the PGR(s)-containing media and the highest stevioside [34 mg·g−1 dry weight (DW)] and rebaudioside A content was only detected on the control medium without PGRs. Steviolbioside, rubusoside, and dulcoside A were detected qualitatively in the leaves of shoots grown on WPM supplemented with 2.27 μm TDZ, 4.54 μm TDZ, 2.22 μm BA + 2.69 μm NAA, 2.22 μm BA + 5.37 μm NAA, 2.32 μm Kn + 5.71 μm IAA, or 2.32 μm Kn + 2.69 μm NAA.


2019 ◽  
Vol 47 (3) ◽  
pp. 987-994
Author(s):  
Joon-Ho KWON ◽  
Young-Sik PARK ◽  
Si-Hong KIM ◽  
Jae-Yun HEO

Vitis amurensis ‘Cheongsan’ is a plant with high economic value in both medical and agricultural applications. However, its utilization has been restricted owing to difficulties encountered when applying traditional mass propagation methods, requiring instead application of in vitro propagation methods for their mass scale production. Hence, this study was conducted to find the optimal plant growth regulators for shoot multiplication and root induction during in vitro propagation. Among the three cytokinins used at multiple concentrations for culture initiation and shoot multiplication, the most positive response was found with MS medium containing 5.0 μM 6-benzyladenine (BA), compared to more modest responses from other types of cytokinin, such as kinetin (KIN) and thidiazuron (TDZ). For root induction, medium supplemented with α-naphthaleneacetic acid (NAA) produced a callus and inhibited shoot growth in explants, whereas indole-3-butyric acid (IBA) and indole-3-acetic acid (IAA) did not create any significant problems, but did display differences in root induction efficiencies. Generally, root induction responses with IBA were better that those with IAA. The maximum rooting rates were observed without callus formation and no shoot growth inhibition from explants grown on media supplemented with 0.67 μM IBA. Further, inter-simple sequence repeat (ISSR) analyses revealed that micropropagated plantlets generated in medium supplemented with 5.0 μM BA and 0.67 μM IBA did not lead to genetic variation. Therefore, the application of the in vitro propagation method developed in this study could be used on a commercial scale and will offer opportunities to strengthen the industrial use of V. amurensis ‘Cheongsan’.


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