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1.
大蕉未成熟雄花接种到胚性愈伤组织诱导培养基中,4~5个月后可诱导出胚性愈伤组织,并可在继代培养基上增殖.胚性愈伤组织转移到体细胞胚诱导培养基中可诱导出体细胞胚.体细胞胚在成熟培养基上培养2个月后转移到含有0.2mg·L-1 6-BA的分化培养基上可以萌发,进而形成再生植株.组织学切片证明所诱导的愈伤组织是胚性组织,其所产生的体胚具有典型的单子叶植物体细胞胚的组织结构.  相似文献   

2.
向日葵的幼胚培养   总被引:3,自引:0,他引:3  
实验所用的基本培基中以B_5培养基对向日葵幼胚培养为最适。激素萘乙酸主要促进幼胚的胚性生长。吲哚乙酸(IAA)与激动素(KT)的配合使用,对幼胚的分化起明显的调节作用。天然提取物则明显地促进幼胚生长、其中荸荠汁的培养基可使向日葵球形胚进行正常发育。 用两种改良的B_5培养基做胚胎培养系统,使向日葵种间杂交胚生长发育。先将杂交后的心形胚培养在胚胎生长培养基上,进行充分的胚性生长。然后把胚转移到萌发培养基,使其萌发形成幼苗,最后移入土壤直至开花。  相似文献   

3.
云南红豆杉离体胚的培养   总被引:7,自引:0,他引:7  
在MS培养基上生长的云南红豆杉离体胚的萌发率较高,达80%;成熟种子胚的萌发率高于未成熟胚;胚的萌发率随着种子贮存时间的延长而下降;胚乳有助于胚的萌发。胚培养1个月左右可获得正常的红豆杉幼苗,成苗率15%~20%。幼苗中的紫杉醇含量为0.004%,远远低于成年树皮中紫杉醇的含量(0.02%)。  相似文献   

4.
花生成熟胚胚叶在佃附加20mg/L 2,4-D的培养基上诱导20d后,转移至无激素培养基MS0继续培养,可获高频体细胞胚发生。组织学观察表明,体细胞胚起源于胚叶上表皮及表皮下数层细胞,这些细胞脱分化形成细胞质浓厚、细胞核大的胚性细胞团,胚性细胞团继续分裂形成体细胞胚。体细胞胚的发育过程经历球形胚、心形胚、鱼雷胚、子叶胚四个时期。  相似文献   

5.
2,4-D诱导的花生体细胞胚发生的组织学研究   总被引:14,自引:0,他引:14  
花生成熟胚胚叶在MS附加 2 0mg/L 2 ,4_D的培养基上诱导 2 0d后 ,转移至无激素培养基MS0 继续培养 ,可获高频体细胞胚发生。组织学观察表明 ,体细胞胚起源于胚叶上表皮及表皮下数层细胞 ,这些细胞脱分化形成细胞质浓厚、细胞核大的胚性细胞团 ,胚性细胞团继续分裂形成体细胞胚。体细胞胚的发育过程经历球形胚、心形胚、鱼雷胚、子叶胚四个时期  相似文献   

6.
无核白葡萄胚挽救育种技术研究   总被引:19,自引:3,他引:16  
无核白葡萄在授粉后20-50d,将胚珠接种在含不同激素的Nitsch培养基上,培养80-90d后转入胚荫发培养基中,待胚萌发20d左右,再转入成苗培养基中使其发育成正常幼苗。结果表明,胚萌发适宜的培养基是附加0.5mg/L IAA,1.5mg/L BA和0.5mg/LGA3的Nitsh培养基,在所试10个接种时期中,无授粉后39d胚的发育率最高。  相似文献   

7.
从香蕉胚性细胞悬浮系获得再生植株   总被引:5,自引:0,他引:5  
2个主栽香蕉品种的未成熟雄花诱导产生的胚性愈伤组织接种至液体培养基中,经3~4个月的继代培养后长成质地均匀的胚性细胞悬浮系(ECS),悬浮系中60%~80%是胚性细胞团.ECS接种至体胚再生培养基上约4~5周后开始出现再生体胚,萌发的体胚以MS培养基培养后可获得再生植株.  相似文献   

8.
马尾松幼胚体细胞胚胎发生研究   总被引:2,自引:0,他引:2  
本论文首次报道了马尾松(Pinus massoniana Lamb.)幼胚体细胞胚胎发生的完整发育过程,并对影响马尾松胚性愈伤组织诱导的因素如球果采种期、球果冷藏处理时间、外植体处理方式等进行了探讨,统计胚性愈伤组织诱导率,进行增殖评价,探讨ABA浓度梯度对马尾松体细胞胚分化成熟的影响,试验数据用SPSS16统计分析软件进行方差分析、差异显著性检验。结果表明:1)2008~2009连续2年内15个采种期得到的幼胚,胚性愈伤组织诱导和增殖有显著性差异,最适宜的马尾松球果采种期是6月下旬至7月下旬,诱导率在9.66%~22.59%之间;2)球果冷藏处理时间,对胚性愈伤组织诱导有显著性差异,其中4℃冷藏球果15d有利于幼胚胚性愈伤组织诱导;3)雌配子体包含幼胚的接种处理方式是可取的;4)胚性愈伤组织经稳定增殖培养后,转入分化成熟培养基,得到体细胞胚状体"爆发式"分化成熟,数量多,质量好。适宜体胚成熟转化的培养基为:成熟LP培养基添加ABA5.0mg·L-1+60.0g·L-1蔗糖,并附加L-谷氨酰胺和水解酪蛋白;5)成熟体细胞胚在无激素萌发型LP培养基上正常萌发,并转化为结构完整的小植株。本研究首次建立了马尾松幼胚体细胞胚胎发生技术平台,为马尾松遗传改良种质创新、缩短育种周期奠定了研究基础。  相似文献   

9.
花生体细胞胚的诱导及其植株再生   总被引:8,自引:0,他引:8  
采用不同成熟度的花生胚轴为外植体进行体细胞胚诱导及植株再生研究,结果表明,成熟胚轴在高浓度2,4-D的MS培养基中,经过30d左右的培养,可直接诱导产生出大量的体细胞胚,含40mgL~-12,4-D的培养基中体细胞胚的诱导率达100%,平均每个外植体产生11.58个体细胞胚.体细胞胚的继代培养需降低2,4-D的浓度(1-20mgL~-1).未成熟胚轴的体细胞胚诱导及继代培养的2,4-D浓度宜为10mgL~-1.将诱导的体细胞胚转接到合5-10mgL~-1BA的MS培养基中,体细胞胚能够萌发再生成无根小植株,将其转接到生根培养基中可获得完整小植株.  相似文献   

10.
发育中的花生胚在无激素固体培养基上高体培养时提前萌发,其发芽力随胚的成熟增加而提高。果针入土后40d胚的发芽率达100%。禹体培养过程中,外源ABA能够阻止花生胚提前萌发和促进胚的发育。胚成熟前期,较低浓度的ABA(10~(-5)mol/L)便抑制胚的萌发;而在成熟中期以后,则要求较高浓度的ABA(10~(-4)mol/L)才能抑制胚的萌发。ABA对成熟前期胚的贮藏蛋白质合成无影响,而对成熟中期至后期胚的贮藏蛋白质合成起促进作用。ABA维持花生胚贮藏蛋白质合成和积累的作用表现在转录水平上。  相似文献   

11.
刘勇刚  徐子勤等 《西北植物学报》2001,21(3):425-431,T001
对小麦未成熟胚盾片组织离体再生途径中,未成熟胚发育时期以及不同小麦品种的体细胞胚发生能力和体细胞胚的分化能力进行了研究,在所 试的14个小麦品种中,筛选出具有很强的体细胞胚发生能力和体细胞胚分化能力的4个品种,西农1376、盐2号、85+1-3和宝丰7228。为进一步给小麦离体遗传操作打下基础,研究还对温度的影响进行了分析。通过低温手段解决了胚性愈伤组织随继代天数的延长体细胞胚分化能力快速降低的问题,同时研究还首次分析了干燥处理对小麦体细胞胚转换能力的影响,建立起一套高效的小麦离体培养再生体系,而且该体系从接种未成熟胚到再生植株移至土壤只需10-12周时间,避免了长期培养过程中存在的体细胞变异问题。  相似文献   

12.
以冬性四倍体硬粒小麦(Triticum durum,2n=28,AABB)为母本与粗山羊草(Aegilops tauschii,2n=14,DD)杂交,得到的单倍体幼胚(n=21,ABD)经组织培养拯救,获得的幼苗经染色体加倍而成为合成小麦(AABBDD)。从中鉴定、筛选出冬性的合成小麦。幼胚仅在1/2 MS培养基上培养,成苗率为75.81%;根据幼胚的发育状态,将发育较完善的幼胚直接接种在1/2 MS培养基上,将发育不良的幼胚先接种于1/2 MS+2 mg/L 2,4-D培养基上进一步养育幼胚,之后视幼胚发育状况再将其转入1/2 MS培养基中培养成苗,此方法的成苗率为92.44%,较前者的成苗率提高了16.63%。染色体加倍在冬季塑膜拱棚内用0.05%秋水仙素进行半根法处理,较容易获得健壮苗,并且分蘖多。  相似文献   

13.
玉米幼胚高效再生系统的建立   总被引:1,自引:0,他引:1  
建立了玉米幼胚高效再生系统.经研究发现,苏玉1号、农大3138、农大108的幼胚培养在含有2,4-D(2 5 mg/L)的IM培养基上后,大多数幼胚能愈伤化并增大,形成基部相连、上部分开的微芽结构;微芽结构在转移到BM培养基上后,形成小植株;进一步转移到RM培养基上,它们长根并形成完整植株.玉米幼胚高效再生植株与下列因素有关玉米基因型、幼胚大小、幼胚长芽至分化时间、6-BA、IBA、Gelrite.不同品种玉米再生能力有显著差异,幼胚大小在1~2mm之间再生能力强,幼胚长芽至分化时间4~6 d最好.激素6-BA浓度在0.5~0.6 mg/L之间有利于微芽形成小植株,IBA浓度在0.6~1 0 mg/L促进生根.Gelrite可代替琼脂粉用于玉米生根.  相似文献   

14.
Haploid suspension callus cultures from embryos of durum wheat (Triticum durum Desf. ) × maize (Zea mays L. ) crosses were used for protoplast isolation. Experimental results from enzyme digestion showed large numbers of viable protoplasts released from both suspension culture and solid culture of callus cut into small pieces of 1 mm in size prior to incubation in an enzyme solution containing 2.0% cellulase RS and 0.5 % pectolyase Y-23. Division frequency of protoplasts isolated from suspension cultured callus was quite different from that of solid cultured callus, however, the former being 5.20%, and the latter less than 1.0% when cultured on KM8p medium containing 1.0 mg/L 2, 4-D using LMP (low melting point) agarose embedding method. Embryogenic ealli could be selected out from protoplast-derived microcalli after 2 to 3 subcultures. Plants could be regenerated from protoplast-derived embryogenic calli after 20 days of culture on differentiation medium I (MS basal medium supplemented with 0.2 mg/L 2, 4-D, 1.0 mg/L BAP, 0. I mg/L NAA, 3 %/4 su- crose, 200 mg/L casein hydrolysate, 146 mg/L glutamine, 300 mg/L aspartic acid) and (components were the same as I without 2, 4-D) respectively. The plant regeneration frequency was about 20%. Chromosome count of root tip cells of 4 plants of the 22 protoplast- derived plants sampled at random revealed haploid in nature (2n= 2x= 14).  相似文献   

15.
D Bai  D R Knott 《Génome》1993,36(1):166-172
Thinopyrum ponticum (Podp.) Barkworth &D. R. Dewey (2n = 10x = 70) has excellent resistance for both leaf and stem rusts. Long-term callus cultures were established from the immature embryos of a hybrid between Triticum aestivum L. (2n = 6x = 42) x Th. ponticum. They were maintained in culture for over 2 years and continued to grow and have organogenetic capacity. With increasing time on a maintenance medium, the plant regeneration rates of the hybrid calli decreased when transferred to regeneration media containing 0.1, 0.2, or 0.5 mg/L 2,4-D, but the rate of decrease was much higher at 0.5 mg/L than at either 0.1 or 0.2 mg/L 2,4-D. After 3 months of subculture, the highest plant regeneration rate was obtained on the medium containing 0.5 mg/L 2,4-D (1.11 plantlets/callus), while on the 24th month of subculture the highest plant regeneration rate was obtained on the medium containing 0.1 mg/L 2,4-D (0.20 plantlets/callus). Thus, it was shown that as the calli aged it was important to reduce the level of 2,4-D in the regeneration medium. Over 2 years, a total of 667 regenerants were successfully transferred and grown to maturity. Chromosome numbers in root-tip cells were determined for 539 regenerants and ranged from 36 to 70. Telocentric chromosomes were frequent. A fertile plant was found among the regenerants after 15 months of subculture. It had 56 chromosomes with 2.15 (1-6) univalents, 22.76 (17-26) closed bivalents, 3.55 (1-9) open bivalents, and 0.41 (0-3) trivalents and was highly resistant to stem rust race 15B-1. Callus culture of wide hybrids can be used to introgress characters from alien species into wheat.  相似文献   

16.
Repetitive somatic embryogenesis from peanut cultures in liquid medium   总被引:3,自引:0,他引:3  
Summary A regeneration system based on repetitive somatic embryogenesis was developed for peanut (Arachis hypogaea L.). Embryogenic suspension cultures were initiated using individual somatic embryos induced from immature cotyledons cultured on a modified Murashige and Skoog medium containing 40 mg/l 2,4-D for 30 days. After transfer to a modified MS liquid medium, the somatic embryos produced masses of secondary and tertiary embryos which continued to proliferate following manual separation and subculture of the embryogenic clumps. The cultures exhibited exponential growth, and have been maintained for over one year without apparent loss of embryogenic potential. Further embryo development, germination, and conversion were achieved by placing embryo clumps onto hormone-free, solid medium. The inclusion of a desiccation period during embryo development enhanced conversion four-fold. Plants have been established in soil and appear to be phenotypically normal.Abbreviations 2,4-D 2,4-dichlorophenoxyacetic acid - NAA 1-naphthaleneacetic acid - BA 6-benzylaminopurine - MSO Modified Murashige and Skoog basal medium - EM embryogenic masses  相似文献   

17.
对12个品种的二棱大麦(Hordeumdistichum2n=24)幼穗和6个品种的幼胚在附加500mg/L酪蛋白,150mg/L天门冬素和2mg/L2,4-D的MS培养基(M_(320))中进行了离体培养,并诱导产生出了愈伤组织。把由D_1幼胚所获得的愈伤组织转移到含2,4-D0.5mg/L(M_(305))培养基中后诱导产生出了体细胞胚性愈伤组织,幼苗和根。筛选出了体细胞胚性无性系。在长达二年的继代培养中,该细胞系仍保持旺盛的再生和分化成苗能力。  相似文献   

18.
Summary Tissue cultures ofTriticum aestivum L. (wheat) initiated from young inflorescences and immature embryos possessed the potential for regeneration of whole plants. Both a friable and a compact type of callus were produced on Murashige and Skoog's medium with 2 mg/l 2,4-dichlorophenoxyacetic acid. The friable callus contained meristematic centers in which the peripheral cells ceased dividing, elongated, and could be easily separated. Roots were frequently formed in this type of callus. The compact, yellowish, and nodular callus arose from the epithelial and sub-epithelial cells of the embryo scutellum, and the rachis and glumes of the young inflorescence. Such callus had a smooth surface and characteristic chlorophyllous areas. Plants were regenerated only from the compact callus. The first sign of differentiation in the compact callus was the formation of a cleft or notch on the smooth surface, followed by the appearance of trichomes and the direct development of leafy structures which were not associated initially with any shoot meristems. Multiple shoots subsequently arose at the bases of the leafy structures, which are considered modifications of the scutellum, a definitive part of the cereal embryo. Accordingly, we suggest that while typical bipolar embryos are generally not formed, plant regeneration nevertheless takes place through embryogenesis and the precocious germination of the embryoids. Plants regenerated from immature embryo and inflorescence cultures were grown to maturity in soil, and were shown to have the normal chromosome number of 2n=6x=42.  相似文献   

19.
提高小麦基因枪法转化频率的研究   总被引:13,自引:0,他引:13  
梁辉  唐顺学 《遗传学报》1999,26(6):643-648
用基因枪法将带Bar-GUS双标记基因的质粒较入普通春小麦品种中-60634的幼胚盾片,并获基因植株。在轰击的经预培养3-4天的342块幼胚片再经筛选再生的植株中,经PCR和Southern分析表明,  相似文献   

20.
Summary Embryogenic masses were obtained from immature leaves of peanut (Arachis hypogaea L.) cultured on a medium containing 20 mg/l 2,4-D. Somatic embryos developed from these masses following transfer to a medium containing 3 mg/l 2,4-D. The embryo morphology was quite variable. Following transfer to hormone-free medium, these embryos germinated. Shoot elongation was obtained in 25% of the embryos following transfer to a medium supplemented with 0.5 mg/l each of BAP and Kn. The plants grown in vitro by this method survived in sand:soil mixture and were grown to maturity.Abbreviations ABA abscisic acid - BAP 6-benzyl amino purine - 2,4-D 2,4 dichlorophenoxyacetic acid - GA3 gibberellic acid - Kn kinetin - NAA 1-naphthaleneacetic acid - 2,4,5-T 2,4,5-trichlorophenoxyacetic acid - Z zeatin  相似文献   

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