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1.
农杆菌介导转化小麦幼胚获得抗除草剂再生植株   总被引:9,自引:0,他引:9  
采用农杆菌介导法转化小麦品种G54授粉10 d后的幼胚,经5‰和2‰ PPT筛选获得83株正常再生植株.PCR及Southern杂交检测证明其中8株再生苗为转bar基因植株,这些植株对除草剂Basta的抗性明显提高.实验结果还证明,高糖浓度的培养基对愈伤组织诱导、植株再生及生根都有显著的促进作用;在感染液和共培养基中添加乙酰丁香酮有利于转化株的筛选.  相似文献   

2.
用天花粉蛋白基因转化小麦获得转基因植株   总被引:11,自引:0,他引:11  
取普通小麦品种京411未成熟胚诱导愈伤组织,10天左右,对820个胚性愈伤组织用含有35S启动子的天花粉蛋白(trichosanthin,TCS)基因轰击。2周后,将这些被轰击的愈伤组织转到含潮霉素50mg/L的筛选培养基上,经分化和生根,获得了33棵再生植株,经接饲毒蚜虫抗病性鉴定和PCR,Southern杂交分析,从中筛选出4株含有编码TCS的转基因小麦植株,转化频率为0.49%。  相似文献   

3.
小麦抗白粉病相关基因的转化   总被引:7,自引:0,他引:7  
王华忠  邢丽萍  陈佩度 《遗传》2007,29(2):243-249
利用玉米花青素苷合成调节基因C1-Lc作为报告基因, 通过瞬间表达后愈伤组织表面红色斑点的统计分析, 优化了小麦幼胚愈伤组织的基因枪转化参数。小麦Beclin1类似基因TaTBL和硫代硫酸硫转移酶基因TaTST是2个在白粉菌诱导条件下具有增强表达特性的抗病相关基因。本实验进一步利用基因枪将ubi强启动子控制下的2个基因导入到小麦品种扬麦158的幼胚愈伤组织细胞中, 使用除草剂经两轮选择培养基上的筛选和再生获得抗性植株, 进一步通过抗性植株的PCR分析获得转TaTBL基因植株5株, 转TaTST基因植株6株。转基因植株离体叶片的人工接种实验表明, 外源基因的导入不同程度上增强了植株的白粉病抗性, 表现为延缓了白粉菌的发育。利用玉米花青素苷合成调节基因C1-Lc作为报告基因,通过瞬间表达后愈伤组织表面红色斑点的统计分析,优化了小麦幼胚愈伤组织的基因枪转化参数。小麦Beclin1类似基因TaTBL和硫代硫酸硫转移酶基因TaTST是两个在白粉菌诱导条件下具有增强表达特性的抗病相关基因。本实验进一步利用基因枪将ubi强启动子控制下的两个基因导入到小麦品种扬麦158的幼胚愈伤组织细胞中,使用除草剂经两轮选择培养基上的筛选和再生获得抗性植株,进一步通过抗性植株的PCR分析获得转TaTBL基因植株5株,转TaTST基因植株6株。转基因植株离体叶片的人工接种实验表明,外源基因的导入不同程度上增强了植株的白粉病抗性,表现为延缓了白粉菌的发育。  相似文献   

4.
以成熟胚诱导的愈伤组织作为农杆菌转化的受体材料,将诱导型启动子rd29A驱动的拟南芥DREB1A基因导入粳型光温敏核不育系水稻4008S,共获得67株再生苗.再生苗经0.75 mg/L除草剂草铵膦涂布筛选,有62株再生苗表现出对草铵膦抗性.PCR检测抗性苗中DREB1A基因,结果全为阳性.挑选部分进行Southem检测.结果表明目的基因已经整合到水稻基因组中.在干旱胁迫下,转基因水稻当代(T1代)植株的电导率显著低于非转基因对照植株(P<0.05),脯氨酸含量显著高于对照植株(P<0.05),证明DREBIA基因能提高水稻对干旱胁迫的耐受性.  相似文献   

5.
小麦(Triticum aestivum)幼胚愈伤组织的诱导和分化再生有高度依赖基因型特征。为了建立和优化Alondra’s的高效再生及遗传转化体系,为小麦遗传转化提供更多的受体基因型,以Alondra’s的幼胚为外植体,研究了培养基种类、不同激素配比等对其幼胚愈伤组织诱导及再生的影响。结果表明,在使用N6培养基时,添加3mg·L^-1的2,4-D并附加1000mg·L^-1的CH对愈伤组织的诱导效果较好;添加4mg·L^-1的ZT、不附加IAA对愈伤组织的分化效果最好。通过构建植物表达载体pCAMBIA1301-220.6,利用基因枪法将HYG基因导入Alondra’s幼胚愈伤组织中,以建立Alondra’s的高效遗传转化体系。结果在含100mg·L^-1潮霉素的选择培养基上进行筛选、分化,获得了30棵抗性植株。经PCR检测,其中5株为阳性转基因植株,转化率为0.5%。Alondra's遗传转化体系的建立丰富了小麦遗传转化的基因型,为小麦品种的转基因改良和在不同背景下研究基因的功能奠定了良好的基础。  相似文献   

6.
小麦(Triticum aestivum)幼胚愈伤组织的诱导和分化再生有高度依赖基因型特征。为了建立和优化Alondra’s的高效再生及遗传转化体系,为小麦遗传转化提供更多的受体基因型,以Alondra’s的幼胚为外植体,研究了培养基种类、不同激素配比等对其幼胚愈伤组织诱导及再生的影响。结果表明,在使用N6培养基时,添加3mg·L-1的2,4-D并附加1000mg·L-1的CH对愈伤组织的诱导效果较好;添加4mg·L-1的ZT、不附加IAA对愈伤组织的分化效果最好。通过构建植物表达载体pCAMBIA1301-220.6,利用基因枪法将HYG基因导入Alondra’s幼胚愈伤组织中,以建立Alondra’s的高效遗传转化体系。结果在含100mg·L-1潮霉素的选择培养基上进行筛选、分化,获得了30棵抗性植株。经PCR检测,其中5株为阳性转基因植株,转化率为0.5%。Alondra's遗传转化体系的建立丰富了小麦遗传转化的基因型,为小麦品种的转基因改良和在不同背景下研究基因的功能奠定了良好的基础。  相似文献   

7.
抗逆调节转录因子DREB1B基因转化多年生黑麦草的研究   总被引:10,自引:0,他引:10  
以逆境诱导型启动子rd29B为驱动,分别构建了含有抗逆调节转录因子DREB1B基因的表达载体pBAC123、pBAC128,选择标记为bar基因.用高压氦气基因枪PDS1000/He分别将表达载体和p35SIH3导入多年生黑麦草(Lolium perenne)品种Topgun成熟胚的愈伤组织.经除草剂Bialaphos抗性筛选和植株再生,获得了62株转基因植株.经PCR、Dot-blotting分子检测,DREB1B基因已整合到多年生黑麦草部分转基因株系的基因组中.用5种不同浓度的除草剂涂抹黑麦草叶片,非转基因植株表现为不抗,而转基因植株最高可以抗135~200 mg/L.脯氨酸含量测定表明,使用15%PEG8000处理后,转基因植株的叶片脯氨酸含量比非转基因植株提高1倍左右.经25 d人工温室干旱处理,有5棵转基因植株存活;复水后,有3棵植株恢复正常生长.结果表明,利用逆境诱导型启动子(rd29B)来增强外源DREB1B基因的表达,能显著改良黑麦草的抗旱能力.  相似文献   

8.
多年生黑麦草成熟胚再生体系的建立及基因枪转化   总被引:4,自引:0,他引:4  
目的:建立以多年生黑麦草成熟胚为起始材料的再生体系,用于基因枪转化。方法:多年生黑麦草成熟种子在附加 5mg L 2,4 D的MS培养基上诱导愈伤组织,转至新继代培养基上产生胚性愈伤组织。分化培养基为无激素MS培养基。再生植株在培养基成分减半的无激素MS培养基生根,之后移栽至土壤。基于这一再生体系,用含有水稻几丁质酶基因RC2 4的质粒pARN6和含有草丁膦乙酰转移酶基因Bar的质粒pDB1,通过基因枪轰击胚性愈伤组织。用附加PPT的继代培养基进行转化植株的抗性筛选。结果:共获得 2 4 3株再生植株。通过PCR进行检测,获得1 8株整合有RC2 4基因的植株,1 5株整合有Bar基因的植株,同时转入 2个基因的植株 2株。  相似文献   

9.
将与植物抗旱耐盐有关的BADH-CMO双基因、CMO单基因、DREB1A单基因三种外源基因通过基因枪法分别轰击草地早熟禾的胚性愈伤组织,经过一系列筛选与再生培养,得到了抗性植株。经过PCR、Southern杂交分析检测,证明BADH-CMO双基因、CMO基因、DREB1A基因已经成功整合到草地早熟禾的植物基因组中。  相似文献   

10.
转bar基因小麦和非转基因小麦抗除草剂鉴定方法比较   总被引:1,自引:0,他引:1  
方便、快捷、准确地对转基因小麦中的bar基因进行检测,对于筛选纯合稳定转基因植株、获得无筛选标记转基因植株、鉴定常规小麦品种和商品小麦中的bar基因成分等具有一定价值。本试验对叶片涂抹、植株喷洒、培养基添加除草剂3种方法鉴定转bar基因小麦植株的效果进行了比较,表明3种方法都能很好鉴定转基因小麦中的bar基因,叶片涂抹200mg/LLiberty鉴别的准确性高于PCR检测,植株喷洒Basta的适宜浓度为100mg/L,喷洒Liberty的适宜浓度为150mg/L,培养基添加Bialaphos的适宜浓度为5~8mg/L。叶片涂抹和植株喷洒除草剂方法受环境条件影响较大,区别转基因植株和非转基因植株的标准不够明确。相比之下,成熟胚离体培养除草剂筛选不受外界环境条件的影响,具有鉴定效果直观明了、操作简单、试验周期短等优点,在检测小麦转入或飘入的bar基因方面具有潜在应用前景。  相似文献   

11.
用基因枪法将人工雄性不育基因导入小麦的研究初报   总被引:52,自引:1,他引:51  
傅荣昭  陈占宽 《遗传学报》1997,24(4):358-361
利用PDS1000/氦气基因枪将人工构建的雄性不育基因(TA29-Barnase基因)导入小麦栽培品种豫责18号的幼胚细胞。然后在含有10~20mg/L除草剂Basta的培养基础上筛选与分化。从170个幼胚中获得6株绿苗,对照的70个幼胚中未得到绿苗。对其中3株已生根且长势好的绿苗进行Southem杂交分析,结果表明,这3株绿苗皆为转基因植株,转化效率达1.8%。  相似文献   

12.
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   

13.
Shu QY  Liu GS  Xu SX  Li XF  Li HJ 《Plant cell reports》2005,24(1):36-44
Chinese leymus [Leymus chinensis (Trin.) Tzvel.] is a perennial grass (tribe Gramineae) that is widely distributed throughout northern China and Mongolia where it is produced as a forage product. Severe production losses due to weed growth have serious economic consequences, and as non-selective herbicides not only kill the weeds but are also harmful to this forage grass, the introduction of a foreign gene for resistance to the herbicide Basta is necessary since this species lacks herbicide resistance. We have investigated the transformation of a gene for phosphinothricin acetyltransferase (PAT) through microprojectile bombardment in Chinese leymus. Calli from immature inflorescences cultured on N6 medium supplemented with 2.0 mg/l 2,4-dichlorophenoxyacetic acid (2,4-D) and 5.0 mg/l of glutamine were bombarded. The bombarded calli survived on selection medium with 1.0 mg/l of phosphinothricin (PPT). Twenty-three plantlets regenerated from resistant calli on differentiation medium supplemented with 1.0 mg/l 6-benzylaminopurine, 1.0 mg/l kinetin, and 1.0 mg/l PPT, and five of these regenerated plantlets survived on rooting medium with 1.0 mg/l of PPT. PCR and Southern blotting analyses indicated that the PAT gene had been integrated into the genomes of two Chinese leymus plantlets and that the gene was stably transferred to its clonal offsprings. There were no other phenotypic effects associated with transgene expression during vegetative growth except tolerance to the herbicide Basta.The Biotechnology of Pasture Plant Program is funded by the Key Project of the Chinese Academy of Sciences (KSCX1-08)  相似文献   

14.
We have produced transgenic plants of the tropical forage crop Brachiaria ruziziensis (ruzigrass) by particle bombardment-mediated transformation of multiple-shoot clumps and embryogenic calli. Cultures of multiple-shoot clumps and embryogenic calli were induced on solidified MS medium supplemented with 0.5mg/L 2,4-dichlorophenoxyacetic acid (2,4-D) and 2mg/L 6-benzylaminopurine (BAP) or 4mg/L 2,4-D and 0.2mg/L BAP, respectively. Both cultures were bombarded with a vector containing an herbicide resistance gene (bar) as a selectable marker and the β-glucuronidase (GUS) reporter gene. Sixteen hours after bombardment, embryogenic calli showed a significantly higher number of transient GUS expression spots per plate and callus than multiple-shoot clumps, suggesting that embryogenic callus is the more suitable target tissue. Following bombardment and selection with 10mg/L bialaphos, herbicide-resistant embryogenic calli regenerated shoots and roots in vitro, and mature transgenic plants have been raised in the greenhouse. Polymerase chain reaction (PCR) and DNA gel blot analysis verified that the GUS gene was integrated into the genome of the two regenerated lines. In SacI digests, the two transgenic lines showed two or five copies of GUS gene fragments, respectively, and integration at different sites. Histochemical analysis revealed stable expression in roots, shoots and inflorescences. Transgenic plants derived from diploid target callus turned out to be sterile, while transgenics from colchicine-tetraploidized callus were fertile.  相似文献   

15.
玉米愈伤组织对草丁膦的抗性及氨基酸对这种抗性的影响   总被引:4,自引:0,他引:4  
将玉米(ZeamaysL.)(P910×Z31)愈伤组织接种于含不同浓度草丁膦及不同氨基酸的N6培养基上,测定愈伤组织重量增长及NH+4积累水平。统计结果表明,当培养基中草丁膦浓度为4mg/L时,愈伤组织重量增长最低;浓度为8mg/L时,NH+4积累水平达最高。综合考虑这两种因素,在培养基上选择转化体的草丁膦浓度以6mg/L为宜。在含有草丁膦的选择培养基上,L精氨酸和L谷氨酸能通过代谢调节显著降低玉米愈伤组织中的NH+4浓度;而L脯氨酸虽明显促进玉米愈伤组织在选择培养基上的重量增长,但并不降低玉米愈伤组织中的NH+4浓度  相似文献   

16.
甜菜碱醛脱氢酶(BADH)基因转化小麦及其表达   总被引:16,自引:1,他引:15  
采用基因枪法将山菠菜甜菜碱醛脱氢酶 (BADH)基因导入小麦 (TriticumaestivumL .)品种 ,并且得以表达。该基因由玉米Ubi1启动子控制。在盐胁迫条件下 ,多数转基因植株叶片的BADH活性比受体亲本提高 1~ 3倍 ,部分植株相对电导率比亲本明显低 ,表明转基因植株的细胞膜在胁迫时有受损较轻倾向。PCR和Southern杂交分析证实外源BADH基因已插入小麦基因组 ,平均转化频率为 4.1%。  相似文献   

17.
Type-II embryonic calli were induced from immature embryos of maize (Zea mays L.) genotype YD and bombarded with beta-glucuronidase gene. Bombarded calli were proliferated on normal N6 medium for 2 weeks at 26°C in the dark and selected on N6 medium containing 1 mg/l 2,4-dichlorophenoxyacetic acid (2,4-D) and 5 mg/l phosphinothricin (PPT) but without casamino acids and proline under the same conditions for 14 days. Regeneration was carried out on hormone-free MS medium containing 5 mg/l phosphinothricin at 26°C under 3000 lux illumination. Plants over 8 cm were transplanted into soil and sprayed with 250 mg/l phosphinothricin when two new leaves appeared. Except normal transgenic plants, chimaeric transgenics also were regenerated in the present work. The expression pattern of beta-glucuronidase gene in leaves of chimaeric transgenic plant revealed that more than one cell formed leaf primordium at the initial stage, and filial cells stemed from each cell in leaf primordium arranged in a row longitudinally from leaf base to leaf apex. There was a clear boundary as a straight line between the area formed by transformed cells and the area formed by normal cells. A hypothesis was put forward that the primitive cells in leaf primordium divided in a longitudinal style, resulted in leaf elongation, then the filial cells divided transversally and synchronously toward the outside to broaden the leaf.  相似文献   

18.
Fertile plants of wheat have been regenerated from protoplasts in several laboratories. The objective of this study was to develop a transformation system using protoplasts as target cells. Protoplasts were isolated from cell suspensions initiated from an anther-derived callus. The protoplasts were transformed by electroporation using pBARGUS or pBAS, both carrying the Basta resistance (BAR) gene. A total of 2,761 calli were produced from electroporation transformed protoplasts in 3 independent experiments. Six calli survived selective culture on 10 mg/l phosphinothricin (PPT), a concentration that completely inhibited the growth of non-transformed wheat callus. Five PPT resistant calli showed phosphinothricin acetyltransferase (PAT) activity, whereas the sixth probably was a mutant. The transformed wheat calli could tolerate PPT concentrations up to 2,560 mg/l. Southern blot analyses confirmed the integration of the BAR gene in wheat genomes. The integrated DNA sequence may have partially methylated and tandemly repeated at least once. These results demonstrate the production of stably transformed wheat calli by electroporation-mediated direct gene transfer into protoplasts.  相似文献   

19.
Fertile transgenic wheat from microprojectile bombardment of scutellar tissue   总被引:26,自引:0,他引:26  
A reproducible transformation system for hexaploid wheat was developed based on particle bombardment of scutellar tissue of immature embryos. Particle bombardment was carried out using a PDS 1000/He gun. Plant material was bombarded with the plasmid pDB1 containing the β-glucuronidase gene ( uidA ) under the control of the actin-1 promoter of rice, and the selectable marker gene bar (phosphinothricin acetyltransferase) under the control of the CaMV 35S promoter. Selection was carried out using the herbicide Basta (Glufosinate-ammonium). From a total number of 1050 bombarded immature embryos, in seven independent transformation experiments, 59 plants could be regenerated. Putative transformants were screened for enzyme activity by the histochemical GUS assay using cut leaf material and by spraying the whole plants with an aqueous solution of the herbicide Basta. Twelve regenerants survived Basta spraying and showed GUS-activity. Southern-blot analysis indicated the presence of introduced foreign genes in the genomic DNA of the transformants and both marker genes were present in all plants analysed.
To date, four plants have been grown to maturity and set seed. Histochemically stained pollen grains showed a 1:1 segregation of the uidA gene in all plants tested. A 3:1 segregation of the introduced genes was demonstrated by enzyme activity tests and Southern blot analysis of R1 plants.  相似文献   

20.
The lack of alternative selectable markers in crop transformation has been a substantial barrier for commercial application of agricultural biotechnology. We have developed an efficient selection system for wheat transformation using glyphosate-tolerant CP4 and GOX genes as a selectable marker. Immature embryos of the wheat cultivar Bobwhite were bombarded with two separate plasmids harboring the CP4/GOX and GUS genes. After a 1 week delay, the bombarded embryos were transferred to a selection medium containing 2 mM glyphosate. Embryo-derived calli were subcultured onto the same selection medium every 3 weeks consecutively for 9–12 weeks, and were then regenerated and rooted on selection media with lower glyphosate concentrations. Transgenic plants tolerant to glyphosate were recovered. ELISA assay confirmed expression of the CP4 and GOX genes in R0 plants. Southern blot analysis demonstrated that the transgenes were integrated into the wheat genomes and transmitted to the following generation. The use of CP4 and GOX genes as a selectable marker provides an efficient, effective, and alternative transformation selection system for wheat.  相似文献   

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