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1.
Summary A highly efficient protocol for callus induction and plant regeneration in Sorghum bicolor was developed by varying the concentrations of copper (0.1, 0.3, 0.5, 0.7, 1, 1.5, 2.5 μM) in Murashige and Skoog (MS) medium. The mature embryos of Sorghum bicolor were cultured on MS medium containing 2,4-dichlorophenoxyacetic acid (9μM), kinetin (2.3 μM), and 3% (w/v) sucrose for embryogenic callus induction. Plant regeneration from this callus occurred on MS medium containing
kinetin (9.2 μM) and indole-3-acetic acid (2.85 μM). A much greater response was noted on these media with higher levels of copper. Frequency of plant regeneration and number
of regenerants dramatically increased with an optimal amount of copper (2 μM) in the MS medium. Rooting of the regenerated shoots readily occurred on half-strength MS medium supplemented with α-naphthaleneacetic
acid (10.7 μM) and 3% (w/v) sucrose. Well-developed plantlets were transferred to the field where 100% survival and normal seed setting
was noted. 相似文献
2.
M. Capuana G. Petrini A. Di Marco R. Giannini 《In vitro cellular & developmental biology. Plant》2007,43(2):101-110
This is the first report on somatic embryogenesis in common ash (Fraxinus excelsior L.). Experiments on somatic embryogenesis induction were carried out on zygotic embryos at different phases of development
and maturation. The embryo axes were isolated and cultured on media containing different plant growth regulators (PGRs). Embryogenic
tissues were obtained from embryos collected at an incomplete maturation phase and cultured on a modified Murashige and Skoog
medium containing 8.8 μM 2,4-dichlorophenoxyacetic acid and 4.4 μM benzyl-adenine (BA). Embryos isolated from seeds at an
advanced stage of maturation showed only organogenetic phenomena. Embryogenic tissues were successfully subcultured and multiplied
on medium containing a reduced concentration of PGRs. After their isolation, somatic embryos were induced to develop and mature
by transfer to PGR-free medium and subsequent culture on medium containing 0.1 μM BA. Somatic embryos developed completely
and also germinated spontaneously. Embryo germination and conversion were significantly improved when subjected to a period
of storage at 4°C and transplant onto woody plant medium. Plantlets were successfully transferred to soil and acclimatized
in a “misted” greenhouse. 相似文献
3.
Konstantin V. Kiselev Anna V. Turlenko Yuri N. Zhuravlev 《Plant Cell, Tissue and Organ Culture》2009,99(2):141-149
A somatic embryogenesis protocol for plant regeneration of northern red oak (Quercus rubra) was established from immature cotyledon explants. Embryogenic callus cultures were induced on Murashige and Skoog medium
(MS) containing 3% sucrose, 0.24% Phytagel™, and various concentrations of 2,4-dichlorophenoxyacetic acid (2,4-d) after 4 weeks of culture in darkness. A higher response (66%) of embryogenic callus was induced on 0.45 μM 2,4-d. Higher numbers of globular- (31), heart- (17), torpedo- (12), and cotyledon-stage (8) embryos per explant were obtained
by culturing embryogenic callus on MS with 3% sucrose, 0.24% Phytagel™, and devoid of growth regulators after 8 weeks culture
in darkness. Continuous sub-culturing of embryogenic callus on medium containing 2,4-d yielded only compact callus. Desiccation of embryos for 3 days in darkness at 25 ± 2°C followed by cold storage at 4°C in
darkness for 8 weeks favored embryo germination and development of plantlets. Cotyledon-stage embryos subjected to desiccation
and chilling treatment cultured on MS with 3% sucrose, 0.24 Phytagel™, 0.44 μM 6-benzylaminopurine (BA), and 0.29 μM gibberellic
acid germinated at a higher frequency (61%) than with 0.44 μM BA alone and control cultures. Germinated plantlets developed
a shoot and root, were acclimatized successfully, and maintained in a growth room for plantlet development. 相似文献
4.
Summary High-frequency somatic embryogenesis and plant regeneration was achieved on callus derived from leaf (petiole and lamina)
and internode explants of Centella asiatica L. Growth regulators significantly influenced the frequency of somatic embryogenesis and plant regeneration. Calluses developed
on Murashige and Skoog (MS) medium fortified with 4.52 μM 2,4-dichlorophenoxyacetic acid (2,4-D) or 5.37 μM α-naphthaleneacetic acid (NAA), both with 2.32 μM kinetin (Kn), were superior for somatic embryogenesis. Callus developed on NAA and Kn-supplemented medium favored induction
and maturation of embryos earlier compared to that on 2,4-D and Kn. Embryogenic callus transferred from NAA and Kn-supplemented
medium to suspension cultures of half-strength MS medium with NAA (2.69 μM) and Kn (1.16 μM) developed a mean of 204.3 somatic embryos per 100 mg of callus. Embryogenic callus transferred from 2,4-D and Kn subsequently
to suspension cultures of half-strength MS medium with 2,4-D (0.45 μM) and Kn (1.16 μM) developed a mean of 303.1 embryos per 100 mg of callus. Eighty-eight percent of the embryos underwent maturation and conversion
to plantlets upon transfer to half-strength MS semisolid medium having 0.054 μM NAA with either 0.044 μM BA or 0.046 μM Kn. Embryo-derived plantlets established in field conditions displayed morphological characters identical to those of the
parent plant. 相似文献
5.
Siela N. Maximova Ann Young Sharon Pishak Mark J. Guiltinan 《In vitro cellular & developmental biology. Plant》2008,44(6):487-493
Somatic embryogenesis is an in vitro clonal propagation method with potential to contribute to the improvement of cacao varieties. Before using this technology
for commercial production, it is essential that somatic embryogenesis-derived plants be tested in field conditions. Therefore,
we established a field test at Union Vale Estate, Saint Lucia. Thirty- to 50-yr-old trees were selected for clonal propagation
as potentially high yielding based on local farmers observations. Clonal plants were propagated in vitro from immature flowers by embryogenesis and micropropagation. Multiple plants from nine genotypes were acclimated to greenhouse
conditions then returned to Saint Lucia and planted in a field. Orthotropic rooted cuttings and locally propagated open pollinated
seedlings were also planted for a total of 214 trees. Growth data were collected every 4–6 mo. including: stem diameter, stem
height, length of the longest jorquette branch, number of jorquette branches, and dates of first flowering and fruiting. At
4.5 yr after planting in the field there were no major differences in all growth parameters among the propagation methods
evaluated with exception of the orthotropic rooted cuttings. Trees grown from seeds were slightly taller then trees propagated
by the other methods. Trees propagated as orthotropic rooted cuttings exhibited smaller average stem diameters, shorter stem
heights to the jorquette, and shorter jorquette branches. We concluded that somatic embryo-derived plants demonstrated normal
phenotypes in field conditions and have growth parameters similar to plants propagated by traditional methods. 相似文献
6.
E. Carneros C. Celestino K. Klimaszewska Y.-S. Park M. Toribio J. M. Bonga 《Plant Cell, Tissue and Organ Culture》2009,98(2):165-178
Regeneration of plants by somatic embryogenesis (SE) was achieved in Stone pine (Pinus pinea), one of the most characteristic tree species of the Mediterranean ecosystem. The initial explants were megagametophytes
containing zygotic embryos from five selected half-sib families collected at different dates over 2 consecutive years. Rates
of extrusion and initiation of SE differed in both years. However, qualitative patterns were very similar: for most families,
the responsive developmental window was from late cleavage polyembryony to early cotyledonary stage. The highest overall mean
frequencies of extrusion and SE initiation (7 and 0.9%, respectively, for the five families and the eight 2006 collections)
were obtained on a modified Litvay’s medium with 9 μM 2,4-D and 4.5 μM BAP, supplemented with L-glutamine and casein hydrolysate. Families showed large differences in frequencies of SE initiation from year to year. Only
seven embryogenic lines were induced in 2005, representing three of the five families tested, whereas 34 lines from all the
families were obtained in 2006. Proliferation of embryonal masses (EM) was significantly improved when they were subcultured
after dispersing in liquid medium and collected on filter paper disks, instead of being subcultured as small clumps. This
effect showed a significant interaction with genotype. Several preconditioning treatments and culture media combinations were
tested for embryo development and maturation. The high proliferation rate of EM hampered somatic embryo development. However,
up to 42 mature embryos from different lines of three of the five families were obtained, 23 of them germinated and seven
converted into somatic seedlings. 相似文献
7.
XiaoPeng Fu ShuHua Yang ManZhu Bao 《In vitro cellular & developmental biology. Plant》2008,44(3):194-202
In this study, we aimed to maximize the rates of somatic embryogenesis achievable in anther cultures of Chinese pink (Dianthus chinensis L.) (2n = 2x = 30). The genotype of the donor plant was found to be a major factor in determining the success rate. Conditions
imposed during anther culture (notably medium composition and light conditions) and pretreatments (namely, cold, heat, and
mannitol incubations) were also found to influence somatic embryo induction. For example, the highest levels of embryogenic
callus induction were achieved when the donor buds had been cold pretreated and the subsequent anther culture was maintained
in darkness. Furthermore, there appeared to be an interaction of genotype with culture conditions. Thus, in cultures of the
cultivar (cv.) ‘Carpet’, the highest rates of embryogenesis were obtained when the anthers had received a 5-d heat-shock,
but such a thermal treatment did not generally produce a significant effect. Likewise, a 3-d mannitol pretreatment was optimal
only for the cross-hybrid line ‘HC’. Assessment of the ploidy of the plants regenerated from the anther cultures revealed
both diploid and tetraploid plants. Histological and cytological observations showed that all of these (both from n-pollen
and 2n-pollen lines) derived from anther wall cells. Spontaneous chromosome doubling was inferred to have occurred during
the embryogenic callus culture period. 相似文献
8.
Marco Manzelli Luca Pileri Nadia Lacerenza Stefano Benedettelli Vincenzo Vecchio 《Biodiversity and Conservation》2007,16(6):1715-1730
In the north-western region of Somalia, bordering Ethiopia, sorghum represents an important resources for human and animal
nutrition. The critical situation of Somalia is threatening the preservation of this valuable resource and it becomes urgent
to develop a strategy of correct evaluation of the sorghum germplasm in order to promote conservation and preservation programs.
Microsatellites, also known as Simple Sequence Repeats (SSRs), are reproducible molecular markers useful in assessing the
level of genetic diversity of plants. A total of 5 sorghum SSR-specific primer pairs were used to assess the genetic diversity
of Somali sorghum landraces. Extensive variation was found at the microsatellite loci analysed, except for a locus that resulted
in a monomorphic for some accessions. Considerable differences were found between total and effective number of alleles indicating
non uniform allele frequency. Moreover allele frequency at a single locus significantly changed among accessions. Total gene
diversity calculated for each locus ranged from 0.44 to 0.79. Most of the genetic diversity occurred within accessions demonstrating
that accessions are not under selection processes and/or there is a continuous exchange of genes between sorghum populations.
In any case, the patterns of clustering were significantly affected by the presence/absence of some alleles with high discriminant
weight. Accessions Carabi, Abaadiro, Masego Cas and Masego Cad represent distinct genotypes confirming finding observed in
previous phenotypic studies. The results highlight the central role of local farmers in maintaining and shaping local germplasm. 相似文献
9.
Marie-Anne Lelu-Walter Michèle Bernier-Cardou Krystyna Klimaszewska 《Plant Cell, Tissue and Organ Culture》2008,92(1):31-45
Several factors affecting somatic embryogenesis (SE) in Pinus sylvestris from self- and cross-pollinated seed families were studied with the aim of producing large quantities of clonal plants. Somatic
embryogenesis initiation from zygotic embryos was improved on a medium with lower than standard concentrations of 2,4-dichlorophenoxyacetic
acid (2.2 vs. 9.5 μM) and 6-benzyladenine (2.2 vs. 4.5 μM). On this medium, initiation rates of four controlled crosses, including
one self-cross, varied from 3% to 25%. Among the maturation factors tested, the concentration of abscisic acid (ABA 80, 120 μM)
had no significant effect on the production of mature somatic embryos when the medium contained 0.1 M sucrose. When sucrose
concentration was 0.2 M, however, 1.4 times more mature somatic embryos were produced on medium with 80 μM compared with 120 μM
ABA. Under our best maturation conditions, mature somatic embryos accumulated amounts of storage proteins that were similar
to the amounts in mature zygotic embryos. Activated charcoal exerted a beneficial effect on mature somatic embryo production
of 24-week-old cultures; there was no evidence of such an effect in 8-week-old cultures. Thirty-seven embryogenic lines from
a self-cross and an out-cross were chosen for clonal plant production. Highly embryogenic lines produced mature somatic embryos
that were more likely to convert to plants than those from less embryogenic lines. After 4 months of growth in a shade house,
plantlet survival rates exceeded 70% for 31 lines out of 35. This report describes an improved method for accelerated production
of large quantities of Scots pine for clonal tests. 相似文献
10.
Bolibok H Gruszczyńska A Hromada-Judycka A Rakoczy-Trojanowska M 《Cellular & molecular biology letters》2007,12(4):523-535
This study was conducted in order to identify quantitative trait loci (QTLs) for the in vitro culture response of winter rye (Secale cereale L.) immature embryos and immature inflorescences. A genetic linkage map comprising 67 SSRs, 9 ISSRs, 13 SAMPLs, 7 RAPDs,
2 SCARs and one EST marker was created based on the analyses of 102 recombinant inbred lines from the cross between lines
L318 (which has a good response in tissue cultures) and L9 (which is unable to regenerate plants from somatic tissues and
anthers). The map spans 979.2 cM, and the average distance between markers is 9.9 cM. Two characteristics were evaluated:
callus induction (CI) and somatic embryogenesis ability (SE). They were expressed as the percentage of immature embryos/inflorescences
producing callus (designated ECI/ICI) and the percentage of explants producing somatic embryos (ESE/ISE). All the analysed
traits showed continuous variation in the mapping population but a non-normal frequency distribution. We identified nine putative
QTLs controlling the tissue culture response of rye, explaining up to 41.6% of the total phenotypic variation: two QTLs for
ECI — eci-1, eci-2; 4 for ESE — ece-1, ese-2, ese-3, ese-4; 2 for ICI — ici-1, ici2; and 1 for ISE — ise-1. They were detected on chromosomes 1R, 4R, 5R, 6R and 7R. 相似文献
11.
Summary Efficient in vitro propagation of Ceropegia candelabrum L. (Asclepidaceae) through somatic embryogenesis was established. Somatic embryogenesis depended on the type of plant growth
regulators in the callus-inducing medium. Friable callus, developed from leaf and internode explants grown on Murashige and
Skoog (MS) medium supplemented with 4.52μM2,4-dichlorophenoxyacetic acid (2,4-D), underwent somatic embryogenesis. Compared to solid media, suspension culture was superior
and gave rise to a higher number of somatic embryos. Transfer of the friable callus developed on MS medium containing 4.52μM 2,4-D to suspension cultures of half- or quarter-strength MS medium with lower levels of 2,4-D (0.23 or 0.45 μM) induced the highest number of somatic embryos, which developed up to the torpedo stage. Somatic embryogenesis was asynchronous
with the dominance of globular embryos. About 100 mg of callus induced more than 500 embryos. Upon transfer to quarter-strength
MS agar medium without growth regulators, 50% of the somatic embryos underwent maturation and developed into plantlets. Plantlets
acclimatized under field conditions with 90% survival. 相似文献
12.
Harsh Chauhan Srinivas A. Desai Paramjit Khurana 《Plant Cell, Tissue and Organ Culture》2007,91(3):191-199
An efficient genotype independent, in vitro regeneration system was developed for nine popular Indian wheat cultivars, three
each of Triticum aestivum L. viz., CPAN1676, HD2329 and PBW343, Triticum durum Desf. viz., PDW215, PDW233 and WH896, and Triticum dicoccum Schrank. Schubl. viz., DDK1001, DDK1025 and DDK1029, by manipulating the concentration and time of exposure to the growth
regulator, thidiazuron (TDZ). A total of 18 (for immature inflorescence and embryo explant) and six (for mature embryo explant)
different combinations of growth regulators were tried for callusing and regeneration, respectively. Media combination with
low concentration of TDZ (2.2 μM) in combination to auxin and/or cytokinin (depending upon culture stage), was found to be
effective for immature and mature explants. Compact, nodular and highly embryogenic calli were obtained by using immature
embryo, immature inflorescence and mature embryo explants, and regeneration frequency up to 25 shoots/explant with an overall
80% regeneration was achieved. Comparable regeneration frequency was achieved for mature embryo explants. No separate hormone
combination for rooting was required and plantlets ready to transfer to soil could be obtained in a short period of 8–10 weeks.
This protocol can be used for raising transgenic plants for functional genomics analysis of agronomically important traits
in the three species of wheat. 相似文献
13.
Ananya Paul Kalyan Mitter Sarmistha Sen Raychaudhuri 《Plant Cell, Tissue and Organ Culture》2009,97(3):303-311
The effects of exogenous polyamines (PAs) on enhancement of somatic embryogenic calli was investigated in Momordica
charantia L. in vitro. Induction of somatic embryogenesis (SE) in leaf explants of M. charantia after 21 days of culture in Murashige and Skoog (MS) medium was determined using scanning electron microscopy. During induction
of SE there were high titers of Putrescine (Put) as compared to Spermidine (Spd) and Spermine (Spm), a prerequisite for cell
division. Addition of PAs to the embryogenic media resulted in an increase in fresh weights and number of somatic embryos
of 21-day old embryogenic calli. Put at a concentration of 1 mM showed maximum increase in fresh weights of embryogenic calli
(5 fold) and number of somatic embryos produced per 0.2 g of callus (2.5 fold). Moreover addition of PAs to the embryogenic
media resulted in lowering of endogenous free PA level of 21-day old embryogenic calli. Thus, when the media was supplemented
with exogenous PAs a positive correlation was found to exist between Somatic Embryogenesis enhancement and decrease in endogenous
free PA levels. 相似文献
14.
Summary A new protocol has been developed for the highly efficient somatic embryogenesis and plant regeneration of 10 recalcitrant
Chinese cotton cultivars. Calluses and embryogenic calluses were induced on MSB1 medium containing the optimal combination
of indolebutyric acid (IBA; 2.46 μM) and kinetin (KT; 2.32 μM). Up to 86.7% of embryogenic calluses differentiated into globular somatic embryos 2 mo. after culture on MSB2 medium containing
double KNO3 and free of growth regultors. Up to 38.3% of the somatic embryos were converted into complete plants in 8 wk on MSB3 medium
with l-asparagine (Asn)/l-glutamine (Gln) (7.6/13.6 mM). The plants were successfully transferred to soil and grew to maturity. With the protocol described here, we have obtained
hundreds of regenerating plantlets from 10 recalcitrant cultivars, which is important for the application of tissue culture
to cotton breeding and biotechnology. 相似文献
15.
Protoplasts isolated from wild cotton Gossypium davidsonii were cultured in KM8P medium supplemented with different phytohormones. The most effective combination was 0.45 μM 2,4-dichlorophenoxyacetic acid,
2.68 μM α-naphthaleneacetic acid and 0.93 μM kinetin and the division percentage at the 8th day was 30.78 ± 3.04 %. The density of protoplasts at 2–10 × 105 cm−3 was suitable for protoplast division and calli formation, with a division percentage of 32.21 ± 3.64 % and a plating efficiency
of 9.12 ± 2.61 % at the 40th day. The optimal osmotic potential was achieved using 0.5 M glucose or 0.1 M glucose plus 0.5 M mannitol. Protoplasts were
cultured in three ways, a double-layer culture system, with liquid over solid medium was proved to be the best way. Embryo
induction was further increased by addition of 0.14 μM gibberellic acid. 相似文献
16.
A protocol was developed for rapid and efficient production of transgenic celery plants via somatic embryo regeneration from
Agrobacterium tumefaciens- inoculated leaf sections, cotyledons and hypocotyls. These explants were excised from in vitro seedlings of the cvs. XP166
and XP85 and inoculated with A. tumefaciens strain EHA105 containing the binary vector pBISN1. PBISN1 has the neomycin phosphotransferase gene (nptII) and an intron interrupted β-glucuronidase (GUS) reporter gene (gusA). Co-cultivation was carried out for 4 d in the dark on callus induction medium (CIM): Gamborg B5 + 2.79 μM kinetin + 2.26 μM
2,4-dichlorophenoxyacetic acid (2,4-D) supplemented with 100 μM acetosyringone. Embryogenic calluses resistant to kanamycin
(Km) were then recovered on CIM + 25 mg l−1 Km + 250 mg l−1 timentin after 12 weeks. Subsequently, a large number of Km-resistant and GUS-positive transformants, tens to hundreds per
explant were regenerated via somatic embryogenesis on Gamborg B5 + 4.92 μM 6 (γ,γ-dimethylallylamino)-purine (2iP) + 1.93 μM
α-naphthaleneacetic acid (NAA) + 25 mg l−1 Km + 250 mg l−1 timentin after 8 weeks. Using this protocol, the transformation frequency was 5.0% and 5.0% for leaf sections, 17.8% and
18.3% for cotyledons, and 15.9% and 16.7% for hypocotyl explants of cvs. XP85 and XP166, respectively. Stable integration
of the model transgenes with 1–3 copy numbers was confirmed in all ten randomly selected transgenic events by Southern blot
analysis of gusA. Progeny analysis by histochemical GUS assay showed stable Mendelian inheritance of the transgenes. Thus, A. tumefaciens-mediated transformation of cotyledons or hypocotyls provides an effective and reproducible protocol for large-scale production
of transgenic celery plants. 相似文献
17.
A method to produce transgenic plants of Vitis rotundifolia was developed. Embryogenic cultures were initiated from leaves of in vitro grown shoot cultures and used as target tissues
for Agrobacterium-mediated genetic transformation. A green fluorescent protein/neomycin phosphotransferase II (gfp/nptII) fusion gene that allowed for simultaneous selection of transgenic cells based on GFP fluorescence and kanamycin resistance
was used to optimize parameters influencing genetic transformation. It was determined that both proembryonal masses (PEM)
and mid-cotyledonary stage somatic embryos (SE) were suitable target tissues for co-cultivation with Agrobacterium as evidenced by transient GFP expression. Kanamycin at 100 mg l−1 in the culture medium was effective in suppression of non-transformed tissue and permitting the growth and development of
transgenic cells, compared to 50 or 75 mg l−1, which permitted the proliferation of more non-transformed cells. Transgenic plants of “Alachua” and “Carlos” were recovered
after secondary somatic embryogenesis from primary SE explants co-cultivated with Agrobacterium. The presence and stable integration of transgenes in transgenic plants was confirmed by PCR and Southern blot hybridization.
Transgenic plants exhibited uniform GFP expression in cells of all plant tissues and organs including leaves, stems, roots,
inflorescences and the embryo and endosperm of developing berries. 相似文献
18.
G. Pacheco R. F. Gagliardi L. A. Carneiro C. H. Callado J. F. M. Valls E. Mansur 《Plant Cell, Tissue and Organ Culture》2007,88(2):121-126
Somatic embryogenesis was induced from seed explants of Arachis archeri, A. porphyrocalix (Section Erectoides) and A. appressipila (Section Procumbentes) in response to 6-benzylaminopurine (BAP). Embryo axes first developed into single shoots in response to 4.4 μM BAP. Friable
embryogenic calluses were produced from the hypocotyl region of these explants in response to different BAP concentrations.
Embryonic leaflets also gave rise to friable calluses, but somatic embryos were only observed in explants of A. archeri and A. appressipila. Histological analyses revealed the presence of heart-shaped, torpedo and cotyledonary stages embryos, both as isolated and
fused structures. A low frequency of embryo-to-plant conversion was achieved by inducing shoot development on medium solidified
with 0.5% phytagel and supplemented with 1.5% or 3% sucrose. Rooting was induced on MS supplemented with indole-3-acetic acid
(IAA). 相似文献
19.
In the present study, the procedures for induction of somatic embryogenesis (SE) in an in vitro culture of the tulip have been developed. SE was initiated on flower stem explants isolated from “Apeldoorn” bulbs during
their low-temperature treatment. Bulbs had not been chilled or had been chilled for 12 or 24 weeks at 5°C. The explants were
cultured with exogenous auxins 2,4-dichlorophenoxyacetic acid (2,4-D), 4-amino-3,5,6-trichloropicolinic acid (Picloram), α-naphthaleneacetic
acid (NAA) at 1–100 μM and cytokinins: benzyladenine (BA) and zeatin (ZEA) at 0.5–50 μM. Increase in auxin concentrations
caused an intensive enlargement of the explant parenchyma, which changed into homogenous colorless callus. On the same media,
vein bundles developed into yellowish, nodular callus. Picloram was more efficient in inducing the formation of embryogenic
nodular callus than 2,4-D, whereas the latter stimulated formation of colorless callus. The base of the lower part of the
flower stem isolated from bulbs chilled for 12 weeks proved to be the best explant for callus formation. The highest number
of somatic embryos was produced on medium with 25 μM Picloram and 0.5 μM BA. Development of adventitious roots was noticed
in the presence of 2,4-D. Globular embryos developed into torpedo stage embryos under the influence of BA (5 μM) and NAA (0.5 μM).
Morphological and anatomical data describing development of callus and somatic embryos are presented. 相似文献
20.
Tanoh Hilaire Kouakou Pierre Waffo-Téguo Yatty Justin Kouadio Josep Valls Tristan Richard Alain Decendit Jean-Michel Mérillon 《Plant Cell, Tissue and Organ Culture》2007,90(1):25-29
Studies of phenolic compounds were performed during cell suspension cultures in relation with the induction of embryogenic
structures in two cultivars of cotton. Coker 312 produced embryogenic structures, unlike R405-2000 which was found to be a
non-embryogenic cultivar. Embryogenesis induction in Coker 312 was strongly linked to a higher content of caffeic, ferulic
and salicylic acids and to the appearance of p-coumaric acid, benzoic acid, trans-resveratrol, catechin and naringenin. 相似文献