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1.
花榈木组培苗茎段低温胁迫培养及耐冷性诱导   总被引:2,自引:0,他引:2  
以花榈木组培苗茎段为试材,在低温胁迫条件下进行耐冷性愈伤组织诱导培养。结果表明,5℃是花榈木茎段低温胁迫培养及耐冷性诱导的最适温度。经过5℃低温胁迫培养获得的耐冷性愈伤组织在分化培养基MS+6-BA 2.0 mg/L+NAA 0.25 mg/L上的分化率达70.0%,且再生植株的低温伤害率明显低于对照。  相似文献   

2.
利用茎用芥菜细胞质雄性不育系原生质体培养获得了再生植株,并研究了影响原生质体培养的因素.结果表明,子叶是茎用芥菜原生质体培养最佳的外植体,10 d苗龄的子叶原生质体在改良MS培养基上培养3 d后发生第1次细胞分裂,6 d后发生第2次分裂,3周后形成细胞团,5周后形成肉眼可见的小愈伤.培养基中缺少NAA或2,4-D都会降低愈伤组织的再生能力.在含一定浓度的NAA(0.25 mg/L)和2,4-D(0.25 mg/L)培养基上诱导的愈伤组织质地致密且有光泽,芽的分化能力高;在MS+BA l mg/L+NAA 0.2 mg/L的培养基上芽的分化频率高达近29%,再生芽在1/2MS+NAA0.1 mg/L培养基上生根,形成完整植株.  相似文献   

3.
伪狂犬病毒gD基因转化马铃薯的初步研究   总被引:1,自引:1,他引:0  
以可直接饲用的马铃薯作为伪狂犬病病毒糖蛋白基因gD的表达植物,探索用马铃薯茎段作为外植体的再生体系和遗传转化体系.结果表明:添加2 mg/L ZT和0.1 mg/L NAA的MS培养基,可使马铃薯茎段愈伤组织诱导率达70%,出芽率达38%;添加0.5 mg/L的硝酸银可明显减少愈伤组织在继代过程中的褐化程度,并且促进其分化.在农杆菌的菌液OD_(600)值为0.1~0.2,侵染茎段1 h,共培养3 d的条件下转化效果最好,抗性愈伤率达到52.3%.实验共获得21株转化植株,挑选7株进行RT-PCR检测,结果证明gD基因已被整合到马铃薯基因组中.  相似文献   

4.
利用茎用芥菜细胞质雄性不育系原生质体培养获得了再生植株,并研究了影响原生质体培养的因素.结果表明,子叶是茎用芥菜原生质体培养最佳的外植体,10 d苗龄的子叶原生质体在改良MS培养基上培养3 d后发生第1次细胞分裂,6 d后发生第2次分裂,3周后形成细胞团,5周后形成肉眼可见的小愈伤.培养基中缺少NAA或2,4-D都会降低愈伤组织的再生能力.在含一定浓度的NAA(0.25 mg/L)和2,4-D(0.25 mg/L)培养基上诱导的愈伤组织质地致密且有光泽,芽的分化能力高;在MS+BA l mg/L+NAA 0.2 mg/L的培养基上芽的分化频率高达近29%,再生芽在1/2MS+NAA0.1 mg/L培养基上生根,形成完整植株.  相似文献   

5.
珍稀濒危植物蒙古扁桃的组织培养及植株再生   总被引:14,自引:2,他引:12  
对珍稀濒危植物蒙古扁桃进行组织培养获得再生植株。实验结果表明,在MS培养基上蒙古扁桃幼苗茎尖,茎切段和叶片等外植体均可以脱分化形成愈伤组织,并进一步分化形成再生植株。器官的脱分化与再分化决定于培养基中的激素种类及其浓度。诱导愈伤组织形成的最适培养基为MS+6-BA0.8mg/L NAA0.1mg/L,芽分化诱导最适培养基为MS+6-BA0.8mg/L,诱导生根的最适培养基是MS+IBA0.5mg/L。  相似文献   

6.
冬凌草离体培养体系的建立及主要次生代谢产物的测定   总被引:2,自引:0,他引:2  
以冬凌草叶片为外植体,研究不同浓度激素组合对冬凌草愈伤组织诱导及植株再生的影响,并对不同外植体(茎、叶)诱导愈伤、芽的分化能力及再生植株内主要次生代谢产物的含量进行了比较研究。结果表明:在MS 2.0 mg/L 6-BA 1.0 mg/L NAA培养基上诱导愈伤组织效果较好;在MS 2.0 mg/L 6-BA的培养基上诱导芽的效果较好;叶片和茎段在愈伤诱导培养基上均能产生大量的愈伤组织,但其再分化能力以茎段最好;再生苗生根培养基以0.3 mg/L IBA最好;以叶为外植体诱导的再生植株中冬凌草甲素、迷迭香酸的含量均高于以茎为外植体诱导的再生植株。  相似文献   

7.
以‘光叶蔷薇’(Rosa wichuriana‘Basye's thornless’)无菌苗的顶生幼嫩小叶为外植体,探讨了其愈伤组织诱导及植株再生的方法。结果表明,高浓度的生长素NAA能诱导外植体产生愈伤组织;由NAA诱导的愈伤组织在附加TDZ的MS培养基上,先暗培养再进行光照培养可直接分化出不定芽。诱导愈伤组织的最佳NAA浓度是7.0 mg/L、暗培养时间为10 d,而最佳分化培养基是MS+5.0 mg/L TDZ+30 g/L葡萄糖+2.5 g/L GEL,分化率达18.34%。以诱导产生的愈伤组织为侵染受体,初步建立了‘光叶蔷薇’GUS基因转化体系。农杆菌菌液浓度OD600值为0.5、侵染30 min、共培养2 d、乙酰丁香酮的浓度为50μmol/L是‘光叶蔷薇’愈伤组织转基因的最优条件。  相似文献   

8.
皂质芦荟的组织培养   总被引:1,自引:0,他引:1  
将皂质芦荟的茎段及幼苗作为外植体进行组织培养,试验结果表明:皂质芦荟的茎段经40d左右可诱导形成愈伤组织,再经20d萌生再生芽:幼苗培养需要30d左右基部直接分化再生芽。同时经试验筛选出愈伤组织形成、再生芽分化和生根的最适培养基为:MS+6-BA 2.0mg/L NAA 0.1mg/L、MS 6-BA 3.0mg/L NAA 0.1mg/L和MS NAA 0.3mg/L。  相似文献   

9.
以红叶石楠带芽茎段及叶片为外植体,分析激素和培养条件等因子对愈伤组织诱导及植株再生的影响。结果表明,MS+0.10mg/L 2,4-D+0.50mg/L NAA+0.50mg/L 6-BA+0.50mg/L KT为最佳愈伤组织诱导培养基,暗培养的愈伤组织诱导率高于光培养,其愈伤组织诱导率可达100%(带芽茎段)和98%(叶片)。MS+0.50mg/L IBA+2.00mg/L 6-BA+2.00mg/L KT为最佳分化增殖培养基,分化率91%以上,增殖倍数6.8以上,均达到最高。1/2MS+0.50mg/L IBA+0.01mg/L NAA为最佳生根培养基,生根率92%,生根量4.4根/株,均达到最高。  相似文献   

10.
玉竹的组织培养与快速繁殖   总被引:1,自引:0,他引:1  
以玉竹[Polygonatum odoratum (Mill.) Druce]根状茎、叶片和茎段为外植体,于附加不同激素配比的MS培养基中诱导愈伤组织、不定芽和不定根,探讨增殖培养和植株再生的条件.结果表明,叶片和茎段外植体诱导愈伤组织和芽的分化率很低;而根状茎外植体易于培养,有较高的诱导率和增殖倍数,其愈伤组织、不定芽和不定根的诱导率分别可达87%、90%和99%以上.适宜根状茎外植体愈伤组织诱导的培养基为MS+1.0 mg/L 6-BA+0.5 mg/L NAA,有利于增殖和丛生芽分化的培养基为MS+2.0 mg/L 6-BA+0.5 mg/L IBA和MS+3.0 mg/L 6-BA+0.1 mg/L NAA,而1/2MS+3.0~5.0 mg/L NAA适宜诱导试管苗生根培养.试管苗的移栽成活率可达85%以上.  相似文献   

11.
Using 10 kD sulfur-rich prolamin gene of rice (PLG) as target gene, the authers constructed the expression vectors pBinLG and pBinLGP, which contained CaMV 35S promoter/PLG/NOS terminator, and Patafin Class Ⅰ promoter/PLG/NOS terminator respectively. They were transformed into Agrobacterium tumefaciens strain LBA4404 (pAL4404) by direct transformation method with incubating the leaf and tuber explants of potato (Solanum tuberosum L. ) with LBA4404 (pAL4404) and selecting in the medium containing 100 mg/L kanamycin, regenerated resistant plants were obtained. The NPT Ⅱ enzyme activity analysis, polymerase chain reaction (PCR), Southern blotting, Northern dot blotting and Western blotting demonstrated that the target gene was integrated into the genome of potato ceils and well expressed in the plant.  相似文献   

12.
Super-growing roots (superroots; SR), which have been established in the legume species Lotus corniculatus, are a fast-growing root culture that allows continuous root cloning, direct somatic embryogenesis and mass regeneration of plants under entirely growth regulator-free culture conditions. These features are unique for non-hairy root cultures, and they are now stably expressed since the culture was isolated more than 10 years ago (1997). Attempts to achieve direct and stable transformation of SR turned out to be unsuccessful. Making use of the supple regeneration plasticity of SR, we are reporting here an indirect transformation protocol. Leaf explants, derived from plants regenerated from SR, were inoculated with Agrobacterium tumefaciens strain LBA4404 harboring the binary vector pBI121, which contains the neomycin phosphotransferase II (NPTII) and beta-glucuronidase (GUS) genes as selectable and visual markers, respectively. After co-cultivation, the explants were selected on solidified MS medium with 0.5mg/L benzylamino purine (BAP), 100mg/L kanamycin and 250mg/L cefotaxime. Kanamycin-resistant calli were transferred to liquid rooting medium. The newly regenerated, kanamycin-resistant roots were harvested and SR cultures re-established, which exhibited all the characteristics of the original SR. Furthermore, kanamycin-resistant roots cultured onto solidified MS medium supplemented with 0.5mg/L BAP produced plants at the same rate as control SR. Six months after gene transfer, PCR analysis and histochemical locating indicated that the NPTII gene was integrated into the genome and that the GUS gene was regularly expressed in leaves, roots and nodules, respectively. The protocol makes it now possible to produce transformed SR and nodules as well as transgenic plants from transformed SR.  相似文献   

13.
高效烟草遗传转化体系的建立及甜蛋白基因的导入   总被引:12,自引:0,他引:12  
以烟草无菌茁叶片为外植体,通过根癌农杆菌LBA4404介导法,将Thamnatin基因导人烟草中,经梯度卡那霉素(Kana-mycin,Km)筛选,获得可在含75mg/L、100mg/L Km选择生根培养基上再生的抗性植株,其中部分Km抗性植株经PCR检测为阳性,转化率为31.3%,初步鉴定已成功地建立了烟草遗传转化系统,为进一步探讨甜蛋白在植物中的转化和表达情况奠定基础。  相似文献   

14.
The effect of growth regulators and culture conditions on the morphogenetic response of cotyledonary leaf discs was studied in popular cucumber variety (Cucumis sativus cv. Sheetal). Organogenesis was induced directly without any intervening callus phase on Murashige and Skoog medium supplemented with different concentrations of benzyladenine and indole propionic acid. Best results (93%) were obtained in the presence of the 4 mg/L benzyladenine and 1 mg/L IPA. The elongated shoots were rooted in basal medium with 1 mg/L indole butyric acid, hardened and transferred to the field conditions. Genetic transformation system has been established for Cucumis sativus cv. Sheetal, plants by infecting cotyledonary explants with Agrobacterium tumefaciens strain LBA4404 carrying binary plasmid pBI121, which contains scorable marker, beta-glucuronidase and selectable marker nptII under the CaMV 35S promoter. Infection was most effective when explants were infected with Agrobacterium for 15 min and co-cultivated for 2 days in the co-cultivation medium. Shoots were regenerated directly from cotyledonary leaf explants in the presence of kanamycin (50 microg/ml) and analysed. Southern blot analysis confirmed that transformation had occurred. This method will allow genetic improvement of this crop by the introduction of agronomically important genes.  相似文献   

15.
16.
Transgenic groundnut (Arachis hypogaea L.) plants were produced efficiently by inoculating different explants withAgrobacterium tumefaciens strain LBA4404 harbouring a binary vector pBM21 containinguidA (GUS) andnptll (neomycin phosphotransferase) genes. Genetic transformation frequency was found to be high with cotyledonary node explants followed by 4 d cocultivation. This method required 3 days of precultivation period before cocultivation withAgrobacterium. A concentration of 75 mg/l kanamycin sulfate was added to regeneration medium in order to select transformed shoots. Shoot regeneration occurred within 4 weeks; excised shoots were rooted on MS medium containing 50 mg/I kanamycin sulfate before transferring to soil. The expression of GUS gene (uidA gene) in the regenerated plants was verified by histochemical and fluorimetric assays. The presence ofuidA andnptll genes in the putative transgenic lines was confirmed by PCR analysis. Insertion of thenptll gene in the nuclear genome of transgenic plants was verified by genomic Southern hybridization analysis. Factors affecting transformation efficiency are discussed.  相似文献   

17.
The hypocotyls and cotyledons of the asepetic seedling of Brassica campestris ssp. chinensis L cv. Pudongaijiecai) were used as explants for tissue culture. Adventitious buds were differentiated on modified MS medium supplemented with TDZ 1-2 mg/L, NAA 0.2-1 mg/L and AgNO3 7.5 mg/L. The percentage of explants which formed buds of cotyledons was about 56%, and that of hypocotyls was about 37%. When the regenerated explants were transferred onto MS medium with 2 i.p. 5 mg/L and NAA 0.1 mg/L for two weeks, whole plantlets were obtained by culturing the regenerated shoots on 1/2 MS medium with NAA 0.1 mg/L. Agrobacterium tumefaciens strain (LBA 4404/PBI 121) carrying the GUS gene and Npt II gene was used for transformation. After 2 days of coculture, the hypocotyls and cotyledons were transferred onto regenerated medium containing CP 300 mg/L for bud formation. After 4-5 weeks, the differentiated buds were transferred onto selection medium with CP 200 mg/L and Km 10 mg/L for 1 month, then the green shoots were transferred onto the rooting medium containing Cef 100 mg/L and Km 20 mg/L. 4-5 weeks later, plantlets with Km resistance were obtained and some of them showed higher enzymatic activities of beta-glucuronidase than control ones.  相似文献   

18.
19.
利用冻融法将质粒pCAMBIA-hBMP-3m直接转入根癌农杆菌LBA4404,以烟草无菌苗叶盘为外植体,通过农杆菌介导法进行遗传转化,获得了在含25mg/L潮霉素(Hy-gromycin,Hyg)的筛选培养基上再生的抗性植株,经PCR检测呈阳性,初步鉴定并筛选整合了人骨形成蛋白-3成熟肽基因的转基因植株。  相似文献   

20.
ACC合成酶基因及其反义基因对西瓜的遗传转化   总被引:21,自引:0,他引:21  
以2日龄西瓜(Citrullus lanatus(Thunb.)Mansfeld)无菌苗子叶为外植体,通过与根癌农杆菌(Agrobacterium tumefaciens)进行叶盘共培养建立了西瓜的遗传转化系统。所用根癌农杆菌中含有改建后分别携带嵌合NPTⅡ基因和番茄的ACC合成酶基因及其反义基因的质粒。外植体在MSA培养基(MS盐类、B_5维生素、1.0mg/L BA、0.2mg/L IAA)上预培养3~4d后,与根癌农杆菌共培养4d,随后转移外植体至附加100mg/L卡那霉素、300mg/L头孢菌素的MSA培养基上筛选转化芽。将带芽外植体移入含有100mg/L卡那霉素、300mg/L头孢菌素的伸长培养基(MS 0.2mg/L KT)上进行芽伸长,切取2~3cm高的伸长芽移入生根培养基(1/2MS 0.1mg/L NAA)生根。Southern blot结果证明获得转基因植株,乙烯释放指标表明转入的正义和反义ACC合成酶基因得到不同程度的表达。  相似文献   

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