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1.
An efficient plant propagation system through somatic embryogenesis was established in Cymbopogon pendulus, an aromatic grass followed by analysis of genetic status of regenerants using ISSR markers. Optimum embryogenic callus induction was observed on MS basal medium supplemented with 13.57 μM 2,4-dicholorophenoxyacetic acid (2,4-D) with 8.88 μM N6-benzyladenine (BA). Subsequent culturing of embryogenic calli on MS medium containing 4.52 μM 2,4-D and 8.88–13.32 μM BA gave maximum number of somatic embryos. Addition of coconut water (CW) promoted induction, growth and differentiation of callus and somatic embryogenesis. Further development of embryos into plantlets was achieved on MS medium supplemented with lower concentration of biotin and calcium pantothenate (CaP) along with BA (4.44–13.32 μM) and kinetin (2.32–4.65 μM). The root meristems were established on half strength MS medium containing 2% sucrose and 2.46–9.84 μM Indole3-butyric acid (IBA) and successfully established in soil with 77.8% survival rate in field condition. Thirteen randomly selected regenerated clones were screened using six ISSR primers. Nine clones produced similar monomorphic amplification profiles while remaining clones showed minor variation with absence of certain parental bands and appearance of unique band. Majority of the regenerants maintained genetic fidelity with the generation of few variants as evidenced from similarity matrix estimates using Nei Li's coefficient of similarity data.  相似文献   

2.
Summary

An efficient in vitro regeneration procedure using thidiazuron (TDZ) has been developed to allow high frequency, multiple shoot induction from cotyledonary node explants of cluster bean (Cyamopsis tetragonoloba). Shoot bud induction occurred on Murashige and Skoog (MS) medium after 4 weeks in the presence of TDZ, followed by transfer onto shoot multiplication and elongation media containing MS salts, B5 vitamins, and different combinations of auxins and cytokinins. Multiple shoots were induced at all levels of TDZ in the medium, but the best proliferation capacity occurred at 5 µM TDZ. Combinations of auxins and cytokinins showed a stimulatory effect on shoot multiplication and also on the length of the newly formed shoots. Maximum shoot induction [i.e., the highest number of shoots (16.0 ± 0.94) per explant] was obtained on agar-solidified medium containing 5 µM benzyladenine (BA) with 0.5 µM indole-3-acetic acid (IAA). Rooting of in vitro-regenerated shoots was achieved in ex vitro conditions by a pulse treatment with 300 µM indole-3-butyric acid (IBA) for 15 min. Rooted plantlets were transferred to soil where 70 – 75% attained sexual maturity and produced viable seeds under greenhouse conditions. The present regeneration system is efficient and can be used in various in vitro manipulation studies.  相似文献   

3.
We report the successful micropropagation of a critically endangered medicinal plant Aconitum heterophyllum Wall., using low concentrations of plant growth regulators (PGRs) and molecular validation of the clonal stocks. The maximum rate of in vitro shoot multiplication was obtained on 1.0 × Murashige and Skoog (MS) medium containing 0.25 mg L?1 Kinetin (Kn) plus 0.25 mg L?1 Indole acetic acid (IAA). Up to 100% rooting was obtained 15 for shoots cultured on 1.0 × MS medium supplemented with 1.0 mg L?1 IAA. Adding 0.25 mg L?1 2,4-dichlorophenoxyacetic acid (2, 4-D) to 1.0 × MS medium resulted in 100% callus formation, while adding 0.25 mg L?1 IAA plus 0.25 mg L?1 Kn to 1.0 × MS medium containing 0.25 mg L?1 2,4-D resulted in 100% generation of embryogenic callus. Inter-simple sequence repeat (ISSR) marker analysis was carried out to check for possible somaclonal variation in the plantlets obtained after three consecutive sub-cultures. Of the 15 ISSR primers used, 10 were found to be monomorphic, with 95–98% similarity, and were used for cluster analysis by the unweighted pair group using arithmetic averages (UPGMA) method. The results revealed that in vitro-regenerated plantlets did not exhibit any genetic polymorphism.  相似文献   

4.
Protocols are outlined for the regeneration of Curcuma soloensis, an attractive tropical ornamental plant, from young vegetative bud explants. We used both direct and callus-mediated regeneration techniques to produce material suitable for mass propagation and the development of transgenic plants. During direct plantlet propagation, the presence of thidiazuron (TDZ) in the growing medium induced more than three times as many shoots as 6-benzylaminopurine (BA), with a mean of 18.7 shoots per explant on MS medium containing 2.5 μM TDZ compared to 5.0 shoots with 40 μM BA. Subsequently, the shoots rooted readily on MS basal medium that was free of plant growth regulators. During indirect plantlet regeneration, TDZ combined with BA and 2,4-dichlorophenoxyacetic acid (2,4-D) had significant effects on embryogenic callus induction and multiplication. The frequency of callus formation was 91.1% for explants cultured on MS basal medium supplemented with 2.5 μM TDZ, 2.0 μM BA and 1.2 μM 2,4-D. On average 7.1 shoots were produced per callus mass cultured on MS medium supplemented with 2.5 μM TDZ, 9.0 μM BA and 1.2 μM naphthaleneacetic acid (NAA). Regenerated shoots were transferred to MS medium supplemented with 2.5 μM TDZ, to produce multiple shoots. In vitro cultured plantlets readily acclimatized to greenhouse conditions, showing 100% survival rates in a sphagnum, perlite and sand (1:1:1) medium. These plants were transplanted into pots or planted in the field. The ex vitro acclimated plants grew vigorously and produced showy inflorescences 5–6 months after planting. The high-frequency of shoot multiplication and rapid flowering of tissue-cultured plants indicate that C. soloensis has great potential in the floricultural market.  相似文献   

5.
In the present study we have developed an efficient and effective method of synthetic seed production and its two-way germination system of Vitex trifolia, for easy transport of the propagules and efficient utilization of its in vitro regeneration system. Nodal segments harvested from 8-week-old in vitro cultures were encapsulated in calcium alginate beads. Three percent (w/v) Na-alginate polymerized in 100 mmol/L CaCl2.2H2O for 30 min produced clear and uniform beads. Germination of encapsulated beads with shoot and roots was achieved on Murashige and Skoog (MS) medium augmented with 6-furfurylaminopurine (KN, 2.5 µmol/L) + α-naphthalene acetic acid (NAA, 1.0 µmol/L). For multiple shoot production, synseeds were incubated on 6-benzyladenine (BA, 5.0 µmol/L) + NAA (0.5 µmol/L) augmented MS medium followed by in vitro rooting on MS + indole-3-butyric acid (IBA, 1.0 µmol/L). The synseeds produced retained about 90% regeneration potential even after 4 weeks of storage at 4°C. Genetic stability of the regenerated plants was evaluated using 13 inter simple sequence repeats (ISSR) primers. The study thus provides an efficient system for production of synthetic seeds, their storage and subsequent conversion into genetically identical plants.  相似文献   

6.
Summary

In Poncirus trifoliate, a highly efficient clonal propagation system for the culture of shoot primordia was devised. Shoot primordia were induced at the base of hypocotyl tissue cultured on MS medium supplemented with 44.4 µM BA, 3% sucrose and 0.8% agar. In MS liquid medium (44.4 µM BA, 3% sucrose) on a rotary shaker at two revolutions per minute, shoot primordia of Poncirus grew in size and number. Plant regeneration occurred on MS solid medium. Frequency of regeneration was highest on MS basal medium containing 3% sucrose and 0.8% agar. About 75 shoot buds regenerated from one shoot primordium. Histological observations showed that shoot buds arose from cells in the hypodermal layers of the shoot primordium. The shoot bud developed a vascular system, which became connected to the shoot primordium tissue. Regenerated shoots rooted on 1/2 MS basal medium or 1/2 MS medium supplemented with 0.5 or 5.0 µM IBA. These rooted shoots were acclimatized easily under intermittent mist.  相似文献   

7.
Summary

This is the first report describing the culture conditions necessary to induce somatic embryogenesis and plantlet regeneration from transverse thin cell-layers (tTCL) of the rare and endangered bulb species, Lilium ledebourii (Baker) Boiss. (Liliaceae). The tTCLs were transferred onto 1.0 Murashige and Skoog medium (MS) containing various sucrose concentrations [3.0, 4.5, or 6.0% (w/v)] and different combinations of two cytokinins [6-benzylaminopurine (BA) or thidiazuron (TDZ)] with 1.0 µM -naphthaleneacetic acid (NAA) in the dark, or exposed to light (40 µmol m–2 s–1). The aims of this work were to provide an improved propagation method torescue L. ledebourii, and to determine the effects of sucrose concentration, light, and different cytokinins on somatic embryogenesis. Embryogenic callus cultures were obtained only when the tTCLs were transferred onto 1.0 MS medium containing 1.0 µM NAA, various levels of BA (0.4, 1.1, or 2.2 µM), and sucrose [3.0, 4.5, or 6.0% (w/v)] after 3 months culture in the light or in darkness. Combinations of various concentrations of TDZ and NAA did not generate embryogenic calli. The highest rate of growth of embryogenic calli was achieved on 1.0 MS medium supplemented with 1.0µM NAA, 1.1 µM BA, and 4.5% (w/v) sucrose, in the light. Embryo-like structures were grown into plantlets after transfer onto 1.0 MS medium without any plant growth regulators and incubated in the light. Regenerated plants were successfully acclimatised to ex vitro conditions, with a survival rate of 90%.  相似文献   

8.
Cardiospermum halicacabum Linn. is an important medicinal twining herb belonging to the family sapindaceae. A method for rapid micropropagation of C. helicacabum through plant regeneration from leaf and nodal explant derived calli has been developed. The nodal and leaf segments were cultured on Murashige and Skoog (MS) medium supplemented with 2,4-dichlorophenoxy acetic acid (2,4-D; 0.5–9 μM) for callus induction. Callus production was highest at 5 μM 2,4-D where 96 and 90% of cultured leaf and nodal cuttings produced callus, respectively. The viable calli were maintained at reduced concentration of 2,4-D (2 μM). These calli were transferred to MS medium supplemented with various concentrations of 6-benzyladenine (BA; 2–10 μM) or kinetin (2–10 μM) alone or in combination with indole 3-acetic acid (IAA; 0.2–1.0 μM) for shoot regeneration. The addition of low concentrations of IAA into BA or kinetin containing medium significantly increased the frequency of shoot regeneration in both nodal cuttings and leaf-derived calli. The highest number of adventitious shoots (28 per callus) formed at 8 μM Kin and 0.5 μM IAA. For rooting of the shoots, half-strength MS medium supplemented with different concentrations of indole 3-acetic acid, indole 3-butyric acid (IBA) and (alpha)-naphthalene acetic acid (NAA) 1–5 μM was tried. The optimal result was observed on half-strength MS medium supplemented with 2.5 μM IBA, on which 91% of the regenerated shoots developed roots with an average of 4.2 roots per shoot within 45 days. The in vitro raised plantlets were acclimatized and transferred to soil with 90% success. This in vitro propagation protocol should be useful for conservation as well as mass propagation of this medicinal plant.  相似文献   

9.
Organogenic callus induction and high frequency shoot regeneration were achieved from cotyledon explants of cucumber. About 86.2% of cotyledon explants derived from 5-day-old in vitro raised seedlings produced green, compact nodular organogenic callus in MS medium containing NAA (2.69 μM) and BA (4.44 μM) after two successive transfers at 20 days interval. Adventitious shoots were produced from the organogenic callus when it was transferred to MS medium supplemented with NAA (1.34 μM), BA (8.88 μM), zeatin (0.91 μM) and l-glutamine (136.85 μM) with shoot induction frequency of 75.6%. Shoot proliferation occurred when callus with emerging shoots was transferred in the same medium at an interval of 20 days. Shoots (1.0 cm length) were excised from callus and were elongated in MS medium fortified with GA3 (1.44 μM) and BA (4.44 μM). The elongated shoots were rooted in MS medium supplemented with IBA (3.42 μM) and BA (4.44 μM). Rooted plants were acclimatized in green-house and subsequently established in soil with a survival rate of 80%. This protocol yielded an average of 35 shoots per cotyledon explant in a culture duration of 120–140 days.  相似文献   

10.
《Scientia Horticulturae》2005,106(4):593-602
A brief culture of mulberry leaves for 8–10 days on MS medium with 18.17 μM TDZ followed by transfer to 8.88 μM BAP supplemented medium triggered high frequency shoot organogenesis (77.6–89.2%) and favoured shoot elongation in Morus spp. Shoot proliferation was highest in the presence of 2.22 μM BAP with induction of 9.4–10.6 shoots per culture. High frequency of root induction (76.0–86.6%) was observed on medium supplemented with 0.49 μM IBA whereas increase in the level of IBA (4.92 μM) resulted in induction of roots along with development of callus from the base of the shoots. The regenerated plants established in soil at higher frequency in rainy season compared to winter and summer.  相似文献   

11.
Callus induction and plant regeneration of Mniochloa abersend via lateral shoots were conducted in this study. Murashige and Skoog (MS) medium supplemented with 1.0 mg/L 2,4-dichlorophenoxyacetic acid (2,4-D) and 1.0 mg/L naphthaleneacetic acid (NAA) was effective for compact callus induction. Remarkably, calli on the MS medium with 0.1 mg/L 2,4-D yielded the highest folds of proliferation (8.01), and showed a high potential capacity to differentiate 1 year after subculture. In addition, the compact calli possessed 100% differentiation rate and generated more shoots that were green and strong in 1.0 mg/L kinetin and 1.0 mg/L NAA. Vigorous roots were generated in the 1/2MS supplemented with 0.5 mg/L indole-3-butyric acid, and the resultant plantlets exhibited 90% survival rate after they were hardened and transplanted. The established regeneration system of M. abersend provides a promising platform for bamboo gene function study.  相似文献   

12.
An indirect organogenesis regeneration protocol for Opuntia ficus-indica (L.) Mill var “Blanco sin Espinas” is described. One centimeter square cladode explants sections from previously micropropagated prickly pear plants were cultured in Murashige and Skoog (MS) basal medium supplemented with 20 different combinations of 2,4-dichlorophenoxy acetic acid (2,4-D) and benzyladenine (BA). The best calli induction and regeneration response were observed when 2.26 μM 2,4-D and 2.21 μM BA combination was applied to the nopal explants. Regenerating calli was capable of forming new buds when transferred to MS basal medium supplemented with 0.5 μM BA (proliferation medium). Shoot elongation and rooting were achieved on MS medium without plant growth regulators. Excellent acclimatization to greenhouse conditions was observed for all transferred plantlets. By this procedure no morphological differences were observed between the regenerated and mother plants. This protocol may be also utilized to carry out plant regeneration after genetic transformation, in order to develop transformed plants without the presence of chimeric zones.  相似文献   

13.
Summary

Secondary somatic embryogenesis and plant regeneration from seedling explants of Angelica glauca, an endangered medicinal plant of the Himalaya, is reported for the first time. Callus was obtained from all the explants tested in the present study (i.e., epicotyls, hypocotyls, and cotyledonary nodes). The highest frequency of callus formation (95.8%) was observed using epicotyl explants on 4.0 µM 2,4-dichlorophenoxyacetic acid (2,4-D), whereas 70.8% of hypocotyl explants, and 58.3% of cotyledonary nodes produced callus. One-hundred percent embryogenic callus was induced from epicotyl explants in 2.0 µM 6-benzyladenine (BA) and 2.0 µM μnaphthaleneacetic acid (NAA), together with the maximum number of somatic embryos (34.2 embryos per explant). Cotyledonary nodes did not produce somatic embryos. Histological studies confirmed the induction of somatic embryogenesis. Somatic embryos germinated into plantlets upon transfer to half-strength Murashige and Skoog (MS) medium without added plant growth regulators. We observed 85% survival of these plantlets under field conditions. The development of secondary embryos was also observed when primary embryos were sub-cultured on full-strength MS medium containing 2.0 µM NAA plus 2.0 µM BA. This system of recurrent somatic embryogenesis provides a route for gene transfer and also for the large-scale production of this critically endangered medicinal plant.  相似文献   

14.
Shoots regenerated adventitiously on epicotyl segments from in vitro seedlings of Emblica officinalis var. ‘Kanchan’. Epicotyls derived from 2-week-old aseptic seedlings were most responsive and produced a maximum number of 303 shoots per explant in Murashige and Skoog (1962) medium (MS) augmented with 8.8 μM N6-benzyladenine (BA) + 1.425 μM indole-3-acetic acid (IAA). Shoots readily elongated in MS lacking growth regulators and rooted in half-salt-strength MS (1/2 MS) supplemented with indole-3-butyric acid (IBA) or α-naphthalene acetic acid (NAA). The highest rooting response was recorded in 1/2 MS containing 14.7 μM IBA. Plantlets were acclimatized inside the green house and 80% of the plantlets survived on transfer to garden soil.  相似文献   

15.
Sequential subculturing leads to a gradual physiological change in cells that may be termed ‘rejuvenation’. The effect of repetitive subculturing on callus induction and shoot regeneration from leaf explants of Punica granatum L. ‘Kandhari Kabuli’ were investigated. Surface-sterilised leaves were cultured on 1.0× Murashige and Skoog (MS) medium supplemented with 4.0 mg l1 α-naphthaleneacetic acid (NAA) and 2.0 mg l1 6-benzyladenine (BA) for callus induction. Shoots were regenerated from callus on 1.0× MS medium supplemented with 1.5 mg l1 BA, 0.5 mg l1 kinetin, and 0.25 mg l1 NAA. Subculturing of callus onto fresh medium maintained the rate of shoot formation and substantially increased the production of shoot buds up to the second subculture. Following further subculture passages, a lower shoot regeneration potential from callus was observed. A maximum shoot bud induction from callus of 63.9% was observed at the second subculture passage. The rate of multiplication of in vitro shoots increased until the fourth subculture, then became constant. Similarly, in vitro rooting of micro-shoots increased up to the third subculture, followed by a decline during further subculturing.  相似文献   

16.
The establishment of in vitro cultures of Echinacea angustifolia D.C. was obtained directly from sections of flower stalks of adult plants. The shoot formation was obtained from this plant material placed on a modified MS basal medium named CH supplemented with 0.5 mg L−1 6-benzylaminopurine (BA). The in vitro propagation procedure of E. angustifolia consisted of three distinct phases: an initial regeneration phase from stalk sections (IP shoots on basal medium with 0.25 mg L−1 BA), an elongation phase on active charcoal and an axillary proliferation of the shoots (AP shoots on basal medium with 0.5 mg L−1 BA).Regenerating calli were established from leaves of in vitro shoots cultured on CH medium supplemented with 3 mg L−1 BA and 0.5 mg L−1 indole-3-butyric acid (IBA). Developed shoots from the callus cultures were subcultured on the CH medium with 0.5 mg L−1 BA (leaf regenerated shoots: LR shoots). The secondary metabolite content of the in vitro plant material was compared with that of the greenhouse growing plants. The quali-quantitative LC-DAD-ESI-MS analysis on the extracts from axillary proliferation shoots (AP shoots) showed significant production of caffeic acid derivatives while leaf callus and LR shoots, accumulated mainly alkamides. These results showed that the proper choice of the procedures for in vitro multiplication allowed us to obtain plant biomass able to produce the active compounds typical of E. angustifolia plants.  相似文献   

17.
The present study was carried out to assess the effect of explant preparation and sizing for in vitro micropropagation of Aloe vera L. The stem nodal explants and shoot tips were cultured on modified Murashige and Skoog's medium (1962) supplemented with different concentrations of 6-benzylaminopurine (BA), kinetin (KIN), indole-3-acetic acid (IAA), indole-3-butyric acid (IBA) and α-naphthaleneacetic acid (NAA) either singly or in combination. The best media composition was found to be MS medium supplemented with IAA (11.42 μM), IBA (9.8 μM) and BA (8.88 μM). The explants were divided into 2 sets, with and without ensheathing leaf base. Explant sizing, pruning and retention of mother tissue was highly significant in induction of multiple shoots and roots. The stem nodal explants with leaf base performed much better than those without such covering. A very high number of shoots and roots grew from these explants. The rooted plantlets were successfully acclimatized and transferred to the green house conditions and finally to field conditions.  相似文献   

18.
A protocol for the production of complete plantlets through multiple shoots from the cotyledon-derived calli of ash gourd (Benincasa hispida L.) is described. The embryos were excised from mature seeds and cultured on Murashige and Skoog (MS) medium supplemented with 6-benzylaminopurin (BAP, 1–5 μM). After 10 days the well-developed green cotyledons from the growing embryos were isolated and cultured on MS medium fortified with 2,4-D (1–6 μM). The cultured cotyledons gave rise to luxuriantly growing calli after 6 weeks. These calli were subcultured on MS medium supplemented with various concentrations of BAP (1–6 μM) alone or in combination with naphthalene acetic acid (NAA, 0.2 and 0.5 μM) for regeneration. The regenerated shoots were multiplied and rooted on quarter strength MS medium supplemented with indole-3-butyric acid or NAA (1–5 μM). The rooted shoots were transplanted to soil with 90% success.  相似文献   

19.
SUMMARY

The effect of benzyladenine (BA) concentrations both during the last proliferating subculture before regeneration (10-222 and, 444 µM) and during organogenesis (11.1 and 22.2 µM), leaf excision time (15 and 30 d from the beginning of the subculture), leafage and dark treatments, on adventitious shoot regeneration of M.26 apple roostock were evaluated. Leaves excised 30 d after the beginning of the last proliferating subculture and grown wkhout BA in thè medium gave the highest percentages of organogenesis, while the number of "regenerated shoots per leaf did not differ significantly among the different BA x leaf excision time combinations. The highest BA concentration (22.2 µM) in the organogeneticmedium produced thehighest percentage of regenerating leaves, with no differences between the lengths and numbers of shoots per regenerating leaf. The first twMjnfurled apical leaves showed a greater regenerative ability than the third and fourth ones, whereas the lengths and numbers of regenerated shoots per leaf were similar. The highest leaf organogenetic ratejyas observed when darkness was imposed at the begirP-ning of the last proliferating subculture and/or at the beginning of the organogenetic phase, but more regenerated shoots per leaf were obtained with darkness provided at the beginning or at the end of the lastproliferating subculture; shoot lengths were similar in all the dark treatments. The great influence onorganogenesis of all the treatments applied in the last proliferating subculture indicates the importance of this stage inpreparing explants for shoot regeneration and thus the possibility of using inductive factors in this phase.  相似文献   

20.
An efficient indirect somatic embryogenesis and Agrobacterium-mediated transformation protocol for Limonium sinense has been established, wherein neomycin phosphotransferase II (npt II) and β-glucuronidase (GUS) genes were used as selectable and screenable markers, respectively. The efficiency of plantlet regeneration from transformed tissue was compared between direct embryogenesis from leaf and indirect embryogenesis from callus. Embryogenic callus (EC) was initiated from leaf explants on MS medium supplemented with 6.7 μM 2,4-D and 2.22 μM BA. The somatic embryos were induced, matured, and germinated when ECs were transferred onto MS medium supplemented with 4.44 μM BA and 1.07 μM NAA. Agrobacterium tumefaciens strain LBA 4404 containing the vector pBI121 was used for the transformation. Transient GUS expression frequency was evaluated and putative transgenic plants were successfully grown on culture medium in presence of kanamycin (80–100 mg L?1). PCR analysis of putative transgenic plants confirmed the presence of GUS and nptII genes. The transformation efficiency obtained through indirect embryogenesis from calluses (4%) was much higher than through direct embryogenesis from leaf explants (0.9%).  相似文献   

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