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1.
农杆菌介导的玉米遗传转化研究进展   总被引:5,自引:0,他引:5  
本文就农杆菌介导的玉米遗传转化的技术要点及原理等进行了综述,并对各种影响农杆菌率玉米效率的关键因子包括农杆菌的菌株与载体、标记基因、受体材料的基因型、来源和发育状态以及组织培养的条件等进行了讨论。  相似文献   

2.
农杆菌介导籼稻优良恢复系bar基因的遗传转化研究   总被引:2,自引:0,他引:2  
应用农杆菌介导转化体系,成功地将含有CaMv35s启动子启动的bar基因导入籼稻幼胚来源的愈伤组织,获得籼稻优良恢复系T461、R402和752三个品种(系)共47个抗除草剂Basta的转基因株系,Southem分析结果表明,转基因植株基因组中检测到bar基因的整合,转基因植株自交后代Basta除草剂抗性鉴定表现出分离,且大多数为1-2个整合位点的孟德尔方式遗传。结果表明,根癌农杆菌介导法可以有效且可靠地转化籼稻。  相似文献   

3.
农杆菌介导的天绿香遗传转化影响因素的研究   总被引:2,自引:0,他引:2  
通过农杆菌介导的方法将新疆准噶尔小胸鳖甲抗冻蛋白基因Mpafp149导入天绿香中,对影响农杆菌转化频率的各种因素进行了研究。结果表明农杆菌介导天绿香遗传转化的潮霉素最佳筛选浓度为8 mg·L-1,预培养时间2 d,共培养时间2 d,菌液浓度OD600为0.2~0.25,浸染时间为8 min时适宜天绿香不定芽的诱导,有利于天绿香转基因植株的获得。通过PCR检测,初步证明外源基因Mpafp149已整合到天绿香基因组中。  相似文献   

4.
根癌农杆菌介导AtNHX1基因转化番茄的研究   总被引:1,自引:0,他引:1  
构建AtNHX1基因植物表达载体,通过农杆菌介导法将其转入番茄。探讨了外植体类型、农杆菌菌株和不同筛选标记对芽诱导分化的影响。对抗性植株进行PCR检测,获得15株转基因植株。对转基因番茄T1代进行80mmol/LNaHCO胁迫处理,转基因植株的相对生长量高于对照植株,显示AtNHX1基因的导入提高了番茄对碱性盐的耐受性。  相似文献   

5.
番茄(Lycopersicon esculentum)传转化体系对其功能基因的研究和基因工程育种有重要影响,对农杆菌(Agrobacterium tumefaciens)介导的番茄遗传转化的研究进展进行了综述,主要包括影响番茄遗传转化效率的几个因素,如番茄的基因型、外植体状态、预培养和侵染过程、分化培养基中的激素和抗生...  相似文献   

6.
农杆菌介导的植物遗传转化进展   总被引:23,自引:0,他引:23  
  相似文献   

7.
影响农杆菌介导植物基因转化的因素问题   总被引:33,自引:0,他引:33  
简要综述了农杆菌介导的植物基因转化的机理及其特点,着重分析了影响农杆菌介导植物基因转化的各种因素。  相似文献   

8.
构建了含有目的基因(LeIRT2)的双元载体pYF840,并成功地将植物性内含子构建到筛选标记基因新霉素磷酸转移酶基因(nptⅡ)和gus报告基因中。利用农杆菌介导法,将铁载体蛋白(LeIRT2)基因导入革新一号烟草,PCR、PCR-Southern blotting及Southern blottlng检测结果显示,有3个烟草株系的基因组中整合了完整的铁载体基因(LeIRT2)。水培试验结果显示转基因株系1、3不但提高了植株的铁吸收能力,而且还促进了植株的生长,但转基因株系2却与对照无明显区别。  相似文献   

9.
根癌农杆菌介导转化番茄的影响因素   总被引:2,自引:0,他引:2  
综述影响根癌农杆菌介导番茄转化效率的因素,包括根癌农杆菌菌株类型、Vir基因的活化、选择标记基因、植物基因型、外植体类型、培养基中是否附加植物激素和抑菌抗生素、菌液浓度、侵染时间长短,是否预培养和共培养天数等;同时不同的培养方式也是影响番茄转化效率的主要因素,包括液体培养法、农杆菌介导的floral-dip转化法、超声波辅助农杆菌介导法、农杆菌介导与基因枪轰击结合法等.  相似文献   

10.
采用根癌农杆菌介导的叶盘转化法,以我国南方地区主栽木薯品种—华南8号的胚状体子叶为受体,对影响木薯遗传转化效率的主要因素进行了分析。研究结果表明,在木薯的遗传转化中,选用GV3101作为浸染外植体的农杆菌菌株,将感染时间和共培养时间分别控制在30~45 min和3~4 d、菌液浓度(OD600)采用0.45、并添加200 μmol·L-1的乙酰丁香酮(AS)均可明显提高其转化效率,但若对外植体进行预培养反而会降低其转化效率。利用该体系从453块外植体中共转化获得10株抗性再生植株,经PCR和Southern杂交检测,有8株木薯的基因组中已整合进了外源基因glgC336,转化率为1.77%。  相似文献   

11.
Agrobacterium tumefaciens strain LBA4404 carrying a binary vector pTOK233, which contained the GUS reporter gene and a kanamycin-resistance gene nptII, was employed for optimizing the transformation efficiency evaluated by a GUS gene transient expression level. Eight factors including explant types, explant size and source, the concentration of cytokinin, inoculation time, pH of inoculation and cocultivation media, bacterial concentration, acetosyringone concentration, and cocultivation duration were investigated in detail. This optimized protocol was then adopted to obtain transgenic tomato plants resistant to cucumber mosaic virus (CMV) mediated by Agrobacterium tumefaciens, strain LBA4404, carrying a binary vector pR-ΔGDD containing the kanamy cin-resistance gene and CMV replicase gene with GDD deletion. The presence of the CMV-RNA2 gene was confirmed by genomic DNA Southern blot analysis in all transformants analyzed. Field spray test showed that the transgenic tomato plants were resistant to 100 mg/l kanamycin. Published in Russian in Fiziologiya Rastenii, 2006, Vol. 53, No. 2, pp. 280–284. The text was submitted by the authors in English.  相似文献   

12.
为提高农杆菌介导的水稻遗传转化效率,以晚粳97为转化材料,绿色荧光蛋白gfp基因为报告基因,采用正交试验L9(33)对影响农杆菌介导水稻的遗传转化因子进行优化。通过观察愈伤组织荧光表达情况,分析菌液浓度、共培养温度与共培养时间对农杆菌转化水稻的影响。结果表明,在OD660值为0.1、共培养21℃~23℃黑暗条件下,农杆菌与水稻愈伤共培养72 h,最有利于水稻的遗传转化,该条件下晚粳97愈伤组织荧光表达率达到70.9%。  相似文献   

13.
转基因育种是快速定向改良兰花育种目标性状的有效方法,但迄今未见有关墨兰转基因育种的研究报道。试验以‘企剑白墨’墨兰Cymbidium sinensis cv.‘Qijianbaimo’的根状茎为受体材料,研究了影响农杆菌介导墨兰遗传转化效率的因素,以建立有实用价值的墨兰遗传转化技术体系。结果表明,受体的预培养时间、乙酰丁香酮的添加方式及浓度、农杆菌工程菌液浓度(OD600)、侵染时间和共培养时间均对‘企剑白墨’根状茎的GUS瞬时表达率有显著影响。以预培养39 d的根状茎尖为材料,在添加200μmol/L乙酰丁香酮,OD600为0.9的工程菌液中侵染35 min后,转入添加200μmol/L乙酰丁香酮的共培养基中培养7 d时,‘企剑白墨’根状茎的GUS瞬时表达率最高,为11.67%。采用上述条件对‘企剑白墨’墨兰进行遗传转化,经PCR鉴定和GUS染色检测,从400株再生植株中获得了3株转基因植株,转化率为0.75%。研究表明通过农杆菌介导法对墨兰进行遗传改良是可行的。  相似文献   

14.
农杆菌介导GUS基因对多年生黑麦草转化的研究   总被引:2,自引:0,他引:2  
张振霞  刘萍  杜雪玲  苏乔  杨中艺   《广西植物》2007,27(1):121-126
通过检测愈伤组织中GUS基因的瞬间表达,研究农杆菌LBA4404/pCAMBIA1301介导多年生黑麦草的转化体系。通过对多年生黑麦草瞬间表达率的比较,确立了其遗传转化的最佳优化条件。研究发现,多年生黑麦草不同品种的转化率在25%~45%之间变化。多年生黑麦草遗传转化最佳优化条件是预培养10d的胚性愈伤组织、浓度为0.5~0.8OD的农杆菌菌液以及2d共培养时间。在共培养基中添加100μmol/L乙酰丁香酮能有效地提高植物瞬间表达率。两种侵染处理方法比较结果为滤纸滴加法比浸泡法更优。转化后对愈伤组织的干燥处理能抑制农杆菌过度繁殖,能改善愈伤状态,有利于提高转化率。  相似文献   

15.
Cereal crops have been the primary targets for improvement by genetic transformation because of their worldwide importance for human consumption. For a long time, many of these important cereals were difficult to genetically engineer, mainly as a result of their inherent limitations associated with the resistance to Agrobacterium infection and their recalcitrance to in vitro regeneration. The delivery of foreign genes to rice plants via Agrobacterium tumefaciens has now become a routine technique. However, there are still serious handicaps with Agrobacterium -mediated transformation of other major cereals. In this paper, we review the pioneering efforts, existing problems and future prospects of Agrobacterium -mediated genetic transformation of major cereal crops, such as rice, maize, wheat, barley, sorghum and sugarcane.  相似文献   

16.
根癌农杆菌对巴戟天遗传转化的影响因素   总被引:2,自引:0,他引:2  
贺红  林小桦  张桂芳  徐鸿华 《广西植物》2004,24(5):411-413,395,i006
以巴戟天带节茎为材料,研究了根癌农杆菌对巴戟天遗传转化的影响因素。结果表明:外植体感染前先进行2 d预培养,对转化有一定促进作用;外植体与农杆菌共培养时间以3 d为宜;乙酰丁香酮能提高转化效率,抗性芽分化率可达18.0%;外植体与农杆菌共培养后延迟4 d选择,抗性芽分化率有所提高;硝酸银能抑制外植体表面农杆菌的生长,提高GUS阳性芽的比例,硝酸银浓度2 mg/L时,GUS阳性芽比例最高(42.9%)。  相似文献   

17.
18.
Ticarcillin/potassium clavulanate is a very effective combination of antibiotics to eliminate Agrobacterium tumefaciens during tomato transformation. It shows no toxicity to tomato tissues at a concentration of 150 mg/l and significantly promotes callus formation and shoot regeneration. The transformation frequency was raised more than 40% in comparison to cefotaxime. Cefotaxime itself did not inhibit callus growth in culture medium, but it clearly decreased shoot differentiation. Together with kanamycin, cefotaxime shows a strong negative effect on callus growth, shoot regeneration and transformation efficiency. Unlike the widely used carbenicillin and cefotaxime, ticarcillin/potassium clavulanate is light stable and resistant to inactivation by β-lactamase. Furthermore, ticarcillin/potassium clavulanate is more economical than carbenicillin and cefotaxime. In conclusion, ticarcillin/potassium clavulanate is a very good alternative to eliminate Agrobacterium tumefaciens in plant transformation and has the potential to be widely used for plants which are sensitive to carbenicillin and cefotaxime. Received: 22 September 1997 / Revision received: 7 November 1997 / Accepted: 15 December 1997  相似文献   

19.
cDNA clones encoding homologues of expansins, a class of cell wall proteins involved in cell wall modification, were isolated from various stages of growing and ripening fruit of tomato (Lycopersicon esculentum). cDNAs derived from five unique expansin genes were obtained, termed tomato Exp3 to Exp7, in addition to the previously described ripening-specific tomato Exp1 (Rose et al. (1997) Proc Natl Acad Sci USA 94: 5955–5960). Deduced amino acid sequences of tomato Exp1, Exp4 and Exp6 were highly related, whereas Exp3, Exp5 and Exp7 were more divergent. Each of the five expansin genes showed a different and characteristic pattern of mRNA expression. mRNA of Exp3 was present throughout fruit growth and ripening, with highest accumulation in green expanding and maturing fruit, and lower, declining levels during ripening. Exp4 mRNA was present only in green expanding fruit, whereas Exp5 mRNA was present in expanding fruit but had highest levels in full-size maturing green fruit and declined during the early stages of ripening. mRNAs from each of these genes were also detected in leaves, stems and flowers but not in roots. Exp6 and Exp7 mRNAs were present at much lower levels than mRNAs of the other expansin genes, and were detected only in expanding or mature green fruit. The results indicate the presence of a large and complex expansin gene family in tomato, and suggest that while the expression of several expansin genes may contribute to green fruit development, only Exp1 mRNA is present at high levels during fruit ripening.  相似文献   

20.
影响农杆菌介导狗牙根遗传转化的因素   总被引:2,自引:0,他引:2  
农杆菌LBA4404/pCAMBIA1301介导转化狗牙根的体系中,遗传转化的最佳优化条件是:胚性愈伤组织预培养10 d,农杆菌菌液浓度为OD600 0.5~0.8,共培养时间为2d.共培养基中添加100μmol·L-1乙酰丁香酮能有效地提高植物瞬时表达率.侵染处理方法中滤纸滴加法比浸泡法效果更好.黑暗条件下的瞬时表达率比12 h光照/12 h黑暗培养条件下的高.在最佳优化条件下狗牙根的GUS瞬时表达率达到36.36%.  相似文献   

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