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1.
甜高粱再生体系的建立   总被引:2,自引:1,他引:1  
利用甜高粱成熟种子和成熟胚作为外植体,通过愈伤组织再生途径建立了植株再生体系。结果表明,成熟种子在添加1.38 g·L^-1脯氨酸、500 mg·L^-1水解酪蛋白和3.0 mg·L^-1 2,4-D的MS培养基上可以较快地诱导出生长状态良好的愈伤组织;成熟胚在添加1.38 g·L^-1脯氨酸、500mg·L^-1水解酪蛋白、2.5 mg·L^-1 2,4-D和0.1 mg·L^-1KT的MS培养基上也能诱导出生长良好的愈伤组织。将愈伤组织转移到MS+1 mg.L^-1 IAA+0.5 mg·L^-1 6-BA培养基上诱导芽,然后再转移到MS+3 mg·L^-1IBA培养基上生根后,可发育成为完整的植株。  相似文献   

2.
利用资源植物荻(Miscanthus sacchariflorus)的幼穗作为外植体,通过愈伤组织途径建立了植株再生体系.结果表明:在附加600 mg·L-1脯氨酸、500 mg·L-1水解酪蛋白、2.0mg ·L-12,4-D和0.1mg·L-16-BA的MS培养基上能高效诱导出生长良好的愈伤组织;将其转移到MS+1.5 mg·L-1 6-BA培养基上诱导产生芽,再转移到1/2 MS+0.25 mg·L-1 NAA+0.25 mg·L-1 IAA培养基上生根后,可发育为生长健壮的植株.  相似文献   

3.
苦荞胚性愈伤组织诱导与植株再生研究   总被引:1,自引:1,他引:0  
以苦荞子叶和下胚轴为外植体,进行了不同浓度激素组合的MS和SH固体培养基对胚性愈伤组织诱导及植株再生的研究。结果发现,MS培养基比SH培养基更有利于胚性愈伤组织诱导;2,4-D是诱导愈伤组织的有效激素,KT能有效促进胚状体的形成;下胚轴和子叶都能有效诱导出胚性愈伤组织和再生植株。下胚轴在MS 1.5mg·L-12,4-D 1.5mg·L-1BA培养基,子叶在MS 2mg·L-12,4-D 0.5~1.5mg·L-1BA上能高效诱导出愈伤组织;愈伤组织在MS 2mg·L-12,4-D 0.1mg·L-1KT培养基中继代,能有效诱导胚性愈伤组织;来自下胚轴的胚性愈伤组织在1/2MS 2.0mg·L-1BA 0.5mg·L-1KT 0.1mg·L-1NAA培养基上能够高频再生出芽,来自子叶的胚性愈伤组织在1/2MS 1.0mg·L-1BA 0.1mg·L-1KT 0.1mg·L-1NAA培养基上芽诱导率较高;MS 1mg·L-1NAA是适宜的再生苗生根培养基。  相似文献   

4.
野牛草成熟胚离体培养及植株再生   总被引:3,自引:0,他引:3  
1植物名称野牛草[Buchloe dactyloides(Nutt.)texoka]. 2材料类别成熟胚. 3培养条件(1)愈伤组织诱导培养基:MS 2,4-D1.5~6.0 mg·L-1(单位下同) 6-BA 0.1 脯氨酸1 000 水解酪蛋白(CH)500 谷氨酰胺500 α-酮戊二酸100 硫代硫酸银(STS)5;(2)愈伤组织继代培养基:MS 3/2MS(有机) 2,4-D 2.5 6-BA 0.1 CH1 000 聚乙烯吡咯烷酮(PVP)200或维生素C(vC)200;(3)再生培养基:不附加任何植物生长调节物质的MS基本培养基(MS0).所有培养基中均添加3%蔗糖、0.56%琼脂,pH 5.8.愈伤组织诱导及继代培养为暗培养,不定芽分化及植株再生过程中光照12 h·d-1,光照度为1 500lx,培养温度为(25±1)℃.  相似文献   

5.
本试验就各种因素对糜子胚性和非胚性愈伤组织诱导的影响及其植株再生进行了较为详细的研究。结果表明,2,4-D是诱导胚性愈伤组织所必须的;蒸糖浓度、酵母浸出汁和水解乳蛋白的含量、基本培养基组成、外植体来源和黑暗培养等因素也都有不同程度的影响;而且各种因素对胚性愈伤组织的影响比非胚性愈伤组织更大。诱导胚性愈伤组织最适宜的培养基组成是MS+2,4-D(2mg/l)+BA(0.5mg/l)+蔗糖(3%)+YE(0.3%)+LH(1600mg/l)+盐酸硫胺素(0.4mg/l)。两种愈伤组织转移到无或含少量2,4-D的MS培养基上,只能从胚性愈伤组织再生植株。再生植株经移栽生长成熟并结了种子。  相似文献   

6.
剪股颖愈伤组织诱导与植株再生   总被引:2,自引:0,他引:2  
以匍匐剪股颖的成熟种子为外植体,对其愈伤组织诱导及再生体系进行了研究。结果表明:愈伤组织诱导合适的培养基为MS 6mg.L-1 2,4-D 0.2mg.L-1 TDZ 500mg.L-1 CH,诱导率达到68.1%;MS 5mg.L-1 2,4-D 0.1 mg.L-1TDZ 500mg.L-1 CH为愈伤组织继代较合适的培养基;愈伤组织分化的合适培养基为MS 0.3mg.L-1 TDZ 0.5mg.L-1 6-BA,分化率达到52.7%。随着愈伤组织继代次数的增加,胚性愈伤组织的分化能力没有明显的降低,这可为后续的遗传转化长期提供受体材料。  相似文献   

7.
贾莉芳    王晓军  赵民安 《植物学报》2008,25(1):85-88
通过体细胞胚胎发生途径实现了新疆雪莲(Saussurea involucrata Kar.et Ki r.)的植株再生。选用新疆雪莲子叶为外植体, 接种于MS+0.5 mg.L-1 2,4-D+0.05-1 mg.L-1 BA的固体培养基上, 进行愈伤组织的诱导。从第1次继代培养的愈伤组织中挑选出黄绿色、颗粒状、质地致密的胚性愈伤组织, 转移到含0.05-0.1 mg.L-1 2,4-D 的MS液体培养基中进行悬浮培养,20天后可分化产生大量球形胚。继代过程中相继加入PEG和GA3 , 可以促进体细胞胚的分化和生长。体细胞胚在含有5 mg.L-1 GA3 的MS固体培养基上, 可发育成完整的植株。  相似文献   

8.
玉米芽尖培养中的高频率体细胞胚胎发生与植株再生(简报)   总被引:14,自引:0,他引:14  
通过诱导玉米芽尖产生胚性愈伤组织,建立起高频率植株再生的玉米芽尖培养实验体系。在MS+1.0mg·L-16-BA+0.2mg·L-12,4-D+500mg·L-1CH的培养基上诱导愈伤组织并继代培养1次后,将愈伤组织转移到Ms+0.5mg·L-16-BA+0.4mg·L-1IBA+500mg·L-1CH的分化培养基上,可形成大量的体细胞胚胎。组织学观察表明,体细胞胚胎主要发生在胚性愈伤组织表面与表层下部。不同基因型的芽尖形成愈伤组织和再生植株的能力不同。  相似文献   

9.
以杂交狼尾草初级愈伤为材料,运用方差分析的方法研究不同因素对杂交狼尾草胚性愈伤诱导率与植株再生率的影响。结果发现,2,4-D和TDZ对杂交狼尾草胚性愈伤诱导影响显著,最佳的胚性愈伤诱导培养基为MS+3.0 mg·L-12,4-D+0.4 mg·L-16-BA+0.2 mg·L-1 TDZ,诱导率为54%;愈伤分化培养基以附加0.1 mg·L-1 TDZ+0.2 mg·L-16-BA+3.2 mg·L-1 CuSO4的 MS培养基为最佳,再生率为68.33%,褐化率为8.33%;分化培养基中添加0.8~3.2mg·L-1的CuSO4均能促进杂交狼尾草愈伤组织分化,而添加AgNO3对杂交狼尾草愈伤分化无显著影响。该技术为离体诱变获得杂交狼尾草低温种质材料奠定了基础。  相似文献   

10.
胡桃楸胚性愈伤组织诱导与体细胞胚胎发生   总被引:5,自引:0,他引:5  
胡桃楸是东北东部山地阔叶红松林的重要组成树种。因其被大量采伐,资源日趋枯竭。体细胞胚胎发生是快速繁殖和人工种子研制的基础,对遗传改良有重要意义。为探讨不同外植体、植物生长调节物质种类及配比对胡桃楸培养物的影响,建立了胡桃楸体胚发生及再生植株体系。结果表明:合子胚为外植体时最易形成胚性愈伤组织,外植体最佳取材时期为5~6月。胡桃楸胚性愈伤组织最适诱导为MS+1.0mg·mL-12,4-D+0.5mg·mL-16-BA;体细胞胚的诱导、发育和分化的适宜的培养基为附加蔗糖60g.L-1、水解酪蛋白700mg·mL-1时不添加任何生长调节物质的MS培养基。  相似文献   

11.
Summary A yellowish, nodular callus was induced from mature embryos of Elymus giganteus Vahl on MS medium containing 2.0 mg/l 2,4-dichlorophenoxyacetic acid (2,4-D) and 0.5 mg/l kinetin, from which a cell suspension culture was initiated in liquid MS medium supplemented with 0.5 mg/l 2,4-D, 1.0 mg/l kinetin and 0.2 mg/1 naphthaleneacetic acid (NAA). By filtering through a series of sieves with decreasing mesh sizes and collecting the resultant filtrate, a suspension culture composed mainly of single embryogenic cells was established. In a medium containing 0.3 mg/l 2,4-D, 1.0 mg/l 6-benzylaminopurine (6-BAP) and 500 mg/l casein hydrolysate (CH), the single cells underwent direct somatic embryogenesis resulting in the formation of proembryos. These proembryos developed into mature embryos when placed in a double-layer liquid overlay culture. Intact plants were developed from somatic embryos when they were transferred onto solidified MS medium without added growth regulators.  相似文献   

12.
The ability of immature, mature and endosperm-supported mature embryos of diploid and tetraploid winter ryes (Secale cereale L) was tested to compare the callus induction and plant regeneration. Immature embryos were obtained from field grown rye. Immature embryos were aseptically excised and placed, with the scutellum upwards, on the callus culture medium consisted of Murashige and Skoog (MS) mineral salts supplemented with 2 mg l?1 2,4-dichlorophenoxyacetic acid (2,4-D). Mature embryos were aseptically excised the imbibed seeds and placed, scutellum up, on MS medium supplement with 2 mg l?1 2,4-D. Endosperm-supported mature embryos were moved slightly (not set free) in the imbibed mature seeds. The seeds with moved embryos were placed furrow downwards in dishes containing 8 mg l?1 2,4-D for callus induction. The developed calli and regenerated plant were maintained on hormone free MS medium. Comparison of the responses of the three explants used indicated that endosperm-supported mature embryo was the most useful explant for plant regeneration in both diploid and tetraplold ryes. This is the first report of winter ryes plants having been regenerated from endosperm-supported mature embryos.  相似文献   

13.
扁蓿豆体细胞胚的诱导和植株再生   总被引:2,自引:0,他引:2  
扁蓿豆实生苗的根、下胚轴、子叶、叶片和叶柄外植体,在含2,4—D2—0.25mgL-1与KT0.25-2mgL-1及2,4—D0.5mgL-1与ZT0.5mgL-1或BAP0.5mgL-1与NAA0.05mgL-1的MS琼脂培养基上均可产生愈伤组织.愈伤组织在含2,4—D0.5—0.1mgL-1与KT0.5—0.1mgL-1或BAP0.25+NAA0.05mgL-1的MS培养基上可诱导分化出体细胞胚.体细胞胚在无激素的培养基上发育成完整植株.用海藻酸钠包襄体细胞胚制成人工种子,其发芽率和植株转换率分别为95%和53%.  相似文献   

14.
Immature, mature and endosperm-supported mature embryos of six triticale cultivars (BDMT-98-8S, Melez-2001, Mikham-2002, Presto, Tacettin Bey and Tatlicak-97) were cultured in vitro to compare the levels of callus induction and plant regeneration. Immature embryos, 15-18 days after anthesis, were aseptically excised and placed with the scutellum upwards on a callus culture medium consisting of Murashige and Skoog (MS) mineral salts supplemented with 2 mg l(-1) 2,4-dichlorophenoxyacetic acid (2,4-D). Mature embryos were aseptically excised from the imbibed seeds and placed scutellum up on MS medium supplement with 2 mg l(-1) 2,4-D. Endosperm-supported mature embryos were moved slightly in the imbibed mature seeds. The seeds with moved embryos were placed furrow downwards in dishes containing 8 mg l(-1) 2,4-D for callus induction. The developed calli and regenerated plants were maintained on hormone-free MS medium. Variability among the genotypes was observed for all the types of embryo culture. Immature embryos from "Presto" and endosperm-supported mature embryos from "Mikham 2002" had excellent regeneration capacities (92.0% and 97.3%, respectively) and the highest number of plants regenerated growing in soil (9 and 13, respectively). A comparison of the responses of the three explants used indicated that the endosperm-supported mature embryo was the most useful explant for plant regeneration in triticale.  相似文献   

15.
Somatic embryogenesis in the wild rice species (Oryza perennis) was induced from cultured mature seeds and young inflorescences. Murashige and Skoog's (MS) medium supplemented with 2 mg/l 2,4-D and 0.2 mg/l BAP was used for induction of a compact, white nodular callus and somatic embryos. Plant regeneration occurred with the tranfer of the nodular callus to MS basal medium containing 0.5 mg/l IAA, 0.5 mg/l NAA, 4 mg/l BAP and 500 mg/l casein hydrolysate. The embryogenic nature of the callus from both explants was maintained over 10 subcultures for about 12 months. Plant regeneration with respect to the number of calli plated from the 6th to 10th passage varied from 80% to 60% for young inflorescence derived callus and from 75% to 69.8% for seed-derived callus.Abbreviations MS Murashige and Skoog medium - BAP 6-benzylaminopurine - 2,4-D 2,4-dichlorophenoxyacetic acid - IAA indole-3-acetic acid - NAA naphthalene acetic acid - CH casein hydrolysate  相似文献   

16.
Summary Tissue culture methods were developed for reproducible induction and maintenance of embryogenic (E) callus established from developmentally mature embryo explants of bread wheat (Triticum aestivum) and grain sorghum (Sorghum bicolor). Embryogenic callus was obtained by culturing seeds and mature embryos of wheat on Linsmaier and Skoog’s (LS) medium containing 5 or 2 mg/liter 2,4-dichlorophenoxyacetic acid (2,4-D), respectively, and for sorghum mature embryos on LS medium containing 2 mg/1 2,4-D plus 0.5 mg/liter kinetin. Plant regeneration from E callus was achieved for several months and quantified on a fresh-weight basis of E callus. Phenotypically normal plants were regenerated from E callus cultured on LS medium supplemented with 0.1 mg/liter IAA plus 0.5 mg/liter benzyladenine (BA) for wheat and 1.0 mg/liter IAA plus 0.5 mg/1BA for sorghum. Wheat research was funded by the United States Agency for International Development, Washington, DC, cooperative agreement DNA-4137-A-00-4-53-00. Sorghum research was supported by the Gas Research Institute, Chicago, IL, contract 5084-260-0973. Expert technical asistance was provided by Nitschka S. ter Kuile, Barbara J. Ashton, Laurie Osborne, Erin Scott, and Kathleen M. Petersen.  相似文献   

17.
Immature and mature embryos of 12 common winter wheat (Triticum aestivum) genotypes were cultured in vitro to develop an efficient method of callus formation and plant regeneration from mature embryo culture, and to compare the responses of both embryo cultures. Fifteen days after anthesis, immature embryos were aseptically dissected from seeds and placed with the scutellum upwards on a solid agar medium containing the inorganic components of Murashige and Skoog (MS) and 2 mg/l 2,4-dichlorophenoxyacetic acid (2,4-D). Mature embryos were moved slightly in the imbibed seeds. The seeds with moved embryos were placed furrow downwards in dishes containing 8 mg/l 2,4-D for callus induction. The developed calli and regenerated plants were maintained on 2,4-D-free MS medium. Plants regenerated from both embryo cultures were vernalized and grown to maturity in soil. Regenerated plantlets all maintained the hexaploid chromosome number. A strong genotypic effect on the culture responses was found for both explant cultures. Callus induction rate, regeneration capacity of callus and number of plants regenerated were independent of each other. Mature embryos had a high frequency of callus induction and regeneration capacity, and therefore, being available throughout the year, can be used as an effective explant source in wheat tissue culture. Received: 4 February 1997 / Revision received: 1 April 1997 / Accepted: 5 May 1997  相似文献   

18.
In Vitro Regeneration of Onion through Repetitive Somatic Embryogenesis   总被引:1,自引:0,他引:1  
A reliable protocol for the regeneration of onion through repetitive somatic embryogenesis was established. Embryogenic callus was derived from mature seeds on Murashige and Skoog (MS) medium supplemented with 2 mg dm-3 2,4-dichlorophenoxyacetic acid (2,4-D). Somatic embryos aroused on the surface of calli cultures and formed plantlets after the removal of 2,4-D or its substitution with 1 mg dm-3 kinetin (Kin). Reculturing the somatic embryos on 2,4-D containing medium led to secondary embryos formation. The embryogenic cultures which were preserved for five months on maintenance medium containing 2 mg dm-3 2,4-D + 0.5 mg dm-3 Kin have retained their ability for regeneration, while those kept on 2,4-D only, failed to form plantlets. Electrophoretic analysis of total soluble proteins revealed that the competence for successful conversion of somatic embryos into plantlets is associated with the expression of new set of proteins (112, 58 and 30 kD). The regenerated plants were successfully transferred to the soil.  相似文献   

19.
以细裂银叶菊叶片为材料,进行愈伤组织的诱导、分化培养及生根诱导培养。结果表明:叶片愈伤组织的诱导以MS 2,4-D2mgL^-1 BA1mgL^-1 NAA0.1mgL^-1。培养基较好:分化培养以MStBA0.5mgL^-1 NAA0.1mgL^-1为好:生根诱导以1/2MS NAA0.01mgL^-4效果最好。  相似文献   

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