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1.
In this study in vitro shoot tips of a Sicilian genotype of Limonium serotinum were successfully cryopreserved using the droplet-vitrification technique. Growth recovery of cryopreserved shoot tips was possible only when samples were pretreated for 16 h in liquid medium with 0.3 M sucrose, then for 5 h in liquid medium with 0.7 M sucrose before performing the cryopreservation protocol. Optimal conditions included treatment for 20 min in a loading solution containing 1.9 M glycerol + 0.5 M sucrose, treatment with vitrification solution B5 (glycerol 40.0%, sucrose 40.0%, w/v) for 60 and 90 min or vitrification solution A9 (glycerol 30.0%, dimethylsulfoxide 20.0%, ethylene glycol 20.0%, sucrose 15.0%) for 20 min, rapid cooling in minute droplets of vitrification solution, rapid rewarming by immersion for 20 min in unloading solution containing 1.2 M sucrose. Under these conditions, 37% recovery of cryopreserved shoot tips was achieved. Regrowth of cryopreserved samples was slow but always direct, without callus formation.  相似文献   

2.
A protocol for plant regeneration by somatic embryogenesis was developed in guava cv. Banarasi local by using immature zygotic embryo explants. Best induction of somatic embryogenesis was achieved from 10-week-old zygotic embryos on MS medium supplemented with 2,4-d (4.52 μM) and 5% sucrose. Maximum number of somatic embryos was produced when zygotic embryo explants were transferred to growth regulator free full strength MS basal medium after 8 days treatment with 2,4-d. Full strength MS basal medium containing 5% sucrose was most favorable for maturation of somatic embryos. Highest frequency of conversion and normal plantlet production were recorded from elongated torpedo stages of somatic embryos on half strength MS medium containing 3% sucrose. Over 90% of rooted shoots survived acclimatization.  相似文献   

3.
Present study demonstrates the effect of sucrose and ABA on germination of encapsulated somatic embryos of guava (Psidium guajava L.). Sucrose and ABA at different concentrations were also evaluated for their effects on maturation and germination of somatic embryos. Mature somatic embryos developed on MS medium containing high concentration of sucrose (10%) or ABA (1.0 mg l−1) showed inhibition in germination if they continued to be in same medium for 4 weeks. With increasing concentrations of sucrose (3–9%) or ABA (0.01–1.0 mg l−1) in medium, percent germination of encapsulated somatic embryos decreased significantly. Encapsulated somatic embryos after storage on MS medium supplemented with 9% sucrose or 1 mg l−1 ABA for different duration (0–60 days) germinated when they were transferred to medium containing 3% sucrose. About 20.8% and 37.5% encapsulated somatic embryos germinated after storage on ABA (1 mg l−1) or sucrose (9%) for 60 days, respectively. Temporarily suppression in germination of encapsulated somatic embryos by high concentration of sucrose or ABA may be important for short-term conservation of elite genotype of guava.  相似文献   

4.
The objective of this study was to establish a cryopreservation protocol for hawthorn shoot apices (Crataegus pinnatifida Bge.). Cryopreservation was carried out via encapsulation–dehydration, vitrification, and encapsulation–vitrification on shoot apices excised from in vitro cultures. We began by showing that cold-acclimation enhanced the regrowth of cryopreserved apices from 10.0 to 65.5% in encapsulation–dehydration. We then decided that the encapsulation–dehydration method was an optimal cryopreservation method for hawthorn shoot apices in terms of its high recovery after cryopreservation as well as its ease of use compared with vitrification and encapsulation–vitrification. In encapsulation–dehydration, the protocol leading to optimal regrowth was as follows: after cold-acclimation at 5 °C in the dark for 2 weeks, excised shoot tips were pretreated for 24 h at 25 °C on hormone-free Murashige and Skoog [Murashige, T., Skoog, F., 1962. A revised medium for rapid growth and bioassays with tobacco tissue culture. Physiol. Plant. 15, 473–497] (MS) basal medium with 0.4 mol/L sucrose, then encapsulated and precultured in liquid MS medium with 0.8 mol/L sucrose for 16 h at 25 °C. Precultured beads were dehydrated for 6 h at 25 °C in the dessicator containing 50 g silica gel to a moisture content of 15.3% (fresh-weight basis) before cryostorage for 1 h. In addition, we examined the effect of adding glycerol to both the alginate beads and loading solution to enhance regrowth after cryopreservation in encapsulation–dehydration. In the present study, it was shown that adding 0.5 mol/L glycerol resulted in high regrowth percentages (82.5–90.0%) in four Crataegus species.  相似文献   

5.
Pineapple guava (Acca sellowiana) syn. Feijoa sellowiana, a Brazilian indigenous Myrtaceae is under domestication in South Brazil. Previous works showed that this species is responsive to somatic embryogenesis and recalcitrant to conventional methods of clonal propagation. In the present work it was evaluated the role of components of culture medium in the induction and development of somatic embryos. The technology of synthetic seeds was also evaluated. Zygotic embryos were inoculated in LPm medium supplemented with 8 mM glutamic acid and 8 mM l-glutamine, 2,4-dichlophenoxiacetic acid (20 μM) and myo-inositol. For conversion of somatic embryos and synthetic seeds it was tested the effect of 6-benzylaminopurine and gibberellic acid combined or not with activated charcoal. The highest values for embryogenetic induction (100%) and number of somatic embryos/explant (113) were observed in the LPm medium supplemented with Glu (8 mM), and 2,4-D. The culture medium supplemented with BA (0.5 μM) and GA3 (1 μM) and activated charcoal (1.5 g L−1) enhanced the conversion of somatic embryos to plantlets. Pre-germinated somatic embryos encapsulated in sodium alginate with BA (0.5 μM) and GA3 (1 μM) developed radicles. The use of synthetic seed was a requisite for the survival of plantlets.  相似文献   

6.
The culture of isolated microspores of kale (Brassica oleracea var. acephala) was studied including the importance of genotype to embryo regeneration, medium composition chiefly the sucrose concentration and the use of colchicine, simultaneously medium renovation. It was initiated using 29 different genotypes as donor plants. Embryos were induced from six of the kale genotypes and these corresponded to the more out-bred genotypes. Embryogenesis was achieved using four different combinations of culture media: (a) microspores initially cultured in NLN medium supplemented with 13% (w/v) sucrose (NLN-13) for 48 h, followed by transfer to fresh NLN-13 medium; (b) microspores cultured for 48 h in NLN-13 medium supplemented with colchicines (50 mg/L) followed by transfer to unsupplemented NLN-13 medium; (c) microspores cultured for 48 h in NLN-16 medium supplemented with colchicines (50 mg/L) followed by transfer to unsupplemented NLN-16 medium; (d) microspores cultured for 48 h in NLN-16 medium supplemented with colchicines (50 mg/L) followed by transfer to unsupplemented NLN-13 medium. The embryos obtained from four of the genotypes developed into plantlets and these regenerated plants have been successfully transplanted to soil.  相似文献   

7.
We present here a method for the regeneration of the prickly-pear (Opuntia ficus-indica (L.) Mill.) through somatic embryogenesis (SE). Direct SE was induced by cultivating shoot apices devoid of leaf primordia on semisolid Murashige and Skoog (MS) basal medium supplemented with 4-amino 3,5,6-trichloropicolinic acid (picloram) at 4 mg l−1. Somatic embryogenesis was influenced by the type, age, physiological and developmental stage of the explants, and also by light conditions, wounding, and the sucrose concentration in the induction medium. A histological analysis confirmed SE by revealing the presence of a closed vascular system in the developing embryos and the absence of a vascular connection between the somatic embryos and the explant.  相似文献   

8.
Complex organic additives are known to improve growth and differentiation of in vitro plant cultures. The present investigation was conducted to determine the effect of various concentrations of yeast extract (YE) and casein hydrolysate (CH) on callus growth and somatic embryogenesis in date palm cultivar Nabout Saif. Callus induced from shoot tip explants was grown on callus multiplication medium supplemented with either YE or CH at 0.0, 0.1, 0.25, 0.5, and 1 g l−1. To induce somatic embryogenesis, callus was transferred to a hormone-free medium containing the corresponding concentration of additives. The results have shown that callus weight and the number of somatic embryos were directly proportional to increases in the concentration of organic additives tested. Callus growth was best achieved when 1 g l−1 of either YE or CH was added to the culture medium. At this concentration of YE, callus growth was double that of the control medium. On CH-containing media growth was 2.3 times that of the control. This indicates that CH is more effective in enhancing callus growth. However, YE was more effective in enhancing somatic embryogenesis. The data show that the best somatic embryo formation was obtained on either 1 g l−1 YE or 0.5 g l−1 CH which produced 45 and 30 embryos per culture, respectively, as compared to 20 embryos produced in the control treatment. Resultant somatic embryos successfully rooted and regenerated plantlets which exhibited normal growth in the greenhouse. Enhanced plant regeneration, an essential criterion for commercial micropropagation, was achieved.  相似文献   

9.
枣幼胚愈伤组织诱导和胚状体发生   总被引:1,自引:0,他引:1  
张存智 《北方园艺》2011,(13):125-127
以陇东马牙枣盛花后50~60d的幼胚为试材,采用三步培养法诱导胚状体。结果表明:诱导愈伤组织适宜的培养基为Nitsch培养基上附加BA 1.0mg/L+2,4-D 1.5mg/L+蔗糖30g/L+琼脂4.0g/L。诱导胚状体培养基宜选用,MS+BA 1.0mg/L+IBA 0.2mg/L+LH0.5mg/L+VC 0.1mg/L+蔗糖30g/L+琼脂4.0g/L,并获得完整植株。  相似文献   

10.
This study describes a successful method of somatic embryogenesis and genetic transformation using immature cotyledons of Prunus mume. Immature cotyledons from four different developmental stages of eight different P. mume cultivars were used for the experiments to optimize somatic embryogenesis and genetic transformation protocols. Somatic embryogenesis was induced when the explants were cultured on somatic embryo inducing medium consisting of MS basic medium supplemented with 1 μM 2,4-dichlorophenoxyacetic acid (2,4-D) and 1 μM 6-benzyladenine (BA). They were cultured for 30 days and then transferred to somatic embryo propagation medium containing 0.1 μM α-naphthaleneacetic acid (NAA) and 5 μM BA. It appeared that the developmental stage of the immature cotyledons used as explants was the most important factor for somatic embryogenesis; higher frequencies of somatic embryogenesis were observed when the immature cotyledons were less than 5 mm in length regardless of cultivars. For genetic transformation, the immature cotyledons were inoculated with Agrobacterium tumefaciens EHA101 harbouring a binary plasmid vector with neomycin phosphotransferase II and an intron-interrupted β-glucuronidase gene under the control of cauliflower mosaic virus 35S promoter, and three transgenic plant lines were obtained from inoculated “Sirakaga” immature cotyledons. Transgenic somatic embryos and shoots were selected using 25 mg l−1 kanamycin. Integration of transgenes in the genome of GUS-positive putative transgenic shoots was confirmed by PCR and Southern blot analyses.  相似文献   

11.
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   

12.
The aim of this work was to study the effect of solid medium, developmental stage, embryonic age, cold treatment and additives to the medium on plant regeneration from microspore-derived embryos in four F1 hybrids of ornamental kale (Brassica oleracea L. var. acephala). The results showed that all of the cultivars responded best when the embryos were cultured in solidified B5 medium with 1% agar. Optimal regeneration was gained when cotyledonary embryos were cultured for 25 days. Cold treatment significantly improved plant regeneration with a frequency of up to 79.0% under 4 °C for 2 d or 5 d. The addition of 3.0 or 5.0 mg/L silver nitrate (AgNO3) increased the frequency of plant regeneration. In the Zhouyehongxin cultivar, the frequency of plantlet development reached 84.4%. The addition of activated charcoal reduced embryo hyperhydricity.  相似文献   

13.
以陇东马牙枣盛花后50~60d的幼胚为试材,采用L9(3)4正交设计,筛选适宜的幼胚萌发培养基。结果表明,基本培养基、激素配比、蔗糖的含量对幼胚萌发都有显著的影响;其中MS-H培养基的萌发率最高为47.62%;ZT最适宜含量为0.5mg/L,IAA最适宜含量为0.6mg/L;较高的蔗糖含量(50g/L)有利于胚的萌发。幼胚萌发的适宜培养基为MS-H+ZT0.5mg/L+IAA0.6mg/L+LH0.5g/L+蔗糖50g/L+琼脂4.0g/L,剥去种皮,幼胚萌发效果较好。当胚萌发后,将胚从胚乳中或愈伤组织中剥离继续诱导愈伤组织,再经诱导不定芽,生根获得正常植株。  相似文献   

14.
Shoot tips excised from in vitro cultured plants of Dianthus caryophyllus L. (cv. Pallas, cv. Pink Candy and cv. Wanessa) were successfully cryopreserved using an encapsulation-vitrification method. Shoot tips (2–3 mm in length) were encapsulated in sodium alginate, precultured on liquid Murashige and Skoog (1962) medium supplemented with various sucrose concentrations (0.25, 0.5, 0.75, 1.0 M) for 24 h or 48 h and dehydrated with the vitrification solution PVS2 (up to 4 h) at 24 °C or 0 °C prior to direct immersion in liquid nitrogen (−196 °C). A maximum of shoot regeneration from cryopreserved shoot tips was obtained with the following combinations: preculture in 0.5 M sucrose and 180 min dehydration treatment at 0 °C for cv. Pallas (60% shoot formation), or preculture in 0.75 M and 200 min dehydration at the same temperature for cv. Pink Candy (66.6% shoot formation) and cv. Wanessa (73% shoot formation).  相似文献   

15.
苹果离体叶片培养直接体细胞胚胎发生研究   总被引:17,自引:1,他引:16  
达克东  张松 《园艺学报》1996,23(3):241-245
在MS+BA10mg/L+NAA50mg/L+2,4_D0\^5mg/L+蔗糖20g/L的固体培养基上,苹果品种嗄拉试管苗叶片经7天暗培养产生胚性细胞。将具有胚性细胞的叶片转入MS+BA10mg/L+蔗糖20g/L的培养基上暗培养40天,65%的叶片直接发生体细胞胚,体细胞胚在同种培养基上萌发,长成小植株。  相似文献   

16.
以纵切的野生阿宽蕉60d龄未成熟种子为外植体,在MI1愈伤组织诱导培养基(MS大量和微量元素及铁盐+MorelandWetmore维生素+0.1mmol/LKH2PO4+87mmol/L蔗糖+4.5μmol/L2,4-D+1g/LGelrite)中培养60d后开始出现浅黄色松散的胚性愈伤组织,150d后愈伤组织诱导率为(15.11±1.95)%。该类愈伤组织被转移到含18μmol/L2,4-D的MI2培养基中继代60d后,可获得状态均一的理想的胚性愈伤组织。胚性愈伤组织悬浮培养后,通过2个月的筛选和继代培养,可得到均质的胚性细胞悬浮系。理想的胚性愈伤组织在体细胞胚诱导培养基中培养10d后可见到白色半透明体细胞胚的发生,体细胞胚诱导率为7.70×105个/gFW。成熟体细胞胚的萌发率为(33.33±3.37)%,植株再生率为(20.83±1.68)%。  相似文献   

17.
Production of a useful mutant by chronic irradiation in sweetpotato   总被引:1,自引:0,他引:1  
Sweetpotato cultivar Kokei No. 14 was planted in a 60Co gamma field. Shoot apices from the plants irradiated with different doses were cultured on MS medium supplemented with 2.0 mg/l 2,4-D for the induction of embryogenic calluses and the formation of somatic embryos. Embryogenic calluses with somatic embryos were transferred to MS medium supplemented with 1.0 mg/l ABA to induce the germination of somatic embryos. Plantlets from somatic embryos developed into whole plants on the basal MS medium. The regenerated plants were transplanted in a field and from them one mutant with alteration of root flesh color and yield was obtained. The root flesh color had changed from light-yellow in the wild-type plant into orange in the mutant. The yield of storage roots increased significantly from 218.8 ± 60 g (FW) in the original plant to 646.9 ± 150 g (FW) in the mutant per plant. Carotenoids content of the storage roots in the mutant had significant difference compared to the wild-type at the 1% level. Peroxidase isozymes and RAPD polymorphism were also analyzed between the mutant and the wild-type plants.  相似文献   

18.
Apical shoot tips excised from in vitro plantlets of blackberry (Rubus fruticosus L. ‘?a?anska Bestrna’) and cherry plum (Prunus cerasifera Ehrh.) were tested for recovery after cryopreservation using the droplet-vitrification technique. Following treatment for 30 min with a loading solution comprising 1.9 M glycerol and 0.5 M sucrose, explants were dehydrated with a highly concentrated cryoprotectant solution, so called vitrification solution. Shoot tips were dehydrated for 10, 20 and 30 min at room temperature with a solution derived from the original PVS2 solution (containing 37.5% (w/v) glycerol, 15% (w/v) dimethylsulfoxide, 15% (w/v) ethylene glycol and 22.5% (w/v) sucrose) and for 60, 90 and 120 min using the PVS3 solution (containing 50% (w/v) glycerol and 50% (w/v) sucrose). Explants were cooled by direct immersion in LN in 10 μl droplets of vitrification solution placed on aluminium foil strips. Rewarming was done by direct plunging of foil strips in a preheated (37 °C) unloading solution (0.8 M sucrose) for 30 s, after which an equal volume of unloading solution (at room temperature) was added for further incubation for 30 min. As for regrowth of blackberry, PVS3 proved more effective than the modified PVS2, but the difference was significant (P < 0.05) only for the shortest treatment duration. The duration of PVS3 treatment had no significant effect on regrowth of cryopreserved shoot tips (45.8–70%). By contrast, a 30-min treatment with modified PVS2 solution resulted in a significant increase in regeneration percentage (30%), as compared with a 10-min treatment with the same solution (5%). Cherry plum shoot tips were very sensitive to both vitrification solutions and growth recovery of cryopreserved samples was generally lower (5–20%) than that of blackberry explants. No significant influence of PVS treatment (both type of solution and treatment duration) on regrowth of cryopreserved shoot tips was observed with cherry plum shoot tips. Experiments performed in France and in Serbia produced similar results, thereby showing the robustness and reproducibility of the protocols developed.  相似文献   

19.
The aim of the present study was to evaluate the effect of phloroglucinol in the recovery and survival of cryopreserved Dendrobium nobile protocorms. The exposure of protocorms to 2 M glycerol osmoprotective solution for 20 min followed by 10 min in PVS2 vitrification solution with 1% phloroglucinol resulted in the highest protocorm recovery and survival (68%). A positive effect of phloroglucinol was observed when combined with glycerol and PVS2. Phloroglucinol added at 1% provided an increase of over 100% in protocorm recovery and survival as compared to the same treatment without phloroglucinol. However, when sucrose was added to treatments, a negative effect was observed with a reduction in survival by 90%. Protocorms that survived cryopreservation were successfully regenerated into plants and acclimatized with 100% survival in greenhouse. Survival of cryopreserved D. nobile protocorms was a determining factor for seedling survival and growth into normal and fully functional plants. This study demonstrated an efficient procedure for cryopreservation and subsequent recovery and survival of cryopreserved D. nobile protocorms using phloroglucinol as a cryoprotectant additive.  相似文献   

20.
The object of this study was to induce embryogenesis and establish plant regeneration system for anther culture in loquat (Eriobotrya japonica L.). Cold pretreatment was a key factor, and supplement of 2,4-D in the media was absolutely necessary for induction of calluses from cultured loquat anthers. The best response of anthers to in vitro culture was obtained when a 48-h cold pretreatment was employed to flower buds at 4 °C in darkness. Genotype was a decisive factor for embryo differentiation. When anther-derived calluses of three loquat cultivars, i.e., cv. ‘Longquan1’, ‘Dawuxing’ and ‘Zaozhong6’, were transferred to embryo differentiation medium, embryos were induced only for cv. ‘Dawuxing’ on MS medium containing 3% sucrose, 0.23 μM ZT in combination with 0.05 μM NAA + 0.05 μM IBA or 0.11 μM NAA + 0.10 μM IBA, and the differentiation rates were 3.33% and 10.00%, respectively. The results of histological studies showed that embryos developed through typical globular, heart, torpedo and cotyledon stages after 4 weeks of culture. The treatment designed to mature the embryos on medium containing 3% of sucrose at 4 °C under darkness for 4 weeks was effective for subsequent embryo germination and plant conversion, which gave rise to 72.5% plant recovery. Cytological studies showed that 26 plantlets were haploids (n = 17) and the remaining 4 plantlets were diploids for the 30 regenerants tested.  相似文献   

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