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Although some works have explored the transformation of differentiated, embryogenic suspension‐cultured cells (SCC) to produce transgenic grapevine plants, to our knowledge this is one of the first reports on the efficient transformation of dedifferentiated Vitis vinifera cv Monastrell SCC. This protocol has been developed using the sonication‐assisted Agrobacterium‐mediated transformation (SAAT) method. A construct harboring the selectable nptII and the eyfp/IV2 marker genes was used in the study and transformation efficiencies reached over 50 independent transformed SCC per gram of infected cells. Best results were obtained when cells were infected at the exponential phase. A high density plating (500 mg/dish) gave significantly better results. As selective agent, kanamycin was inefficient for the selection of Monastrell transformed SCC since wild type cells were almost insensitive to this antibiotic whereas application of paromomycin resulted in very effective selection. Selected eyfp‐expressing microcalli were grown until enough tissue was available to scale up a new transgenic SCC. These transgenic SCC lines were evaluated molecularly and phenotypically demonstrating the presence and integration of both transgenes, the absence of Agrobacterium contamination and the ability of the transformed SCC to grow in highly selective liquid medium. The methodology described here opens the possibility of improving the production of valuable metabolites. © 2016 American Institute of Chemical Engineers Biotechnol. Prog., 32:725–734, 2016  相似文献   
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Abstract Kanamycin (Km)-resistant bacterial populations in different soil, river water, sewage and pig manure slurry samples were enumerated and their prevalence in the total populations determined. About 350 Km-resistant Gram-negative colonies grown in the presence of kanamycin were identified using a rapid presumptive identification scheme. They were then screened for the presence of Tn5 and npt II sequences using hybridization of cells in dot blots, of Southern-blotted genomic DNA extracts and of PCR amplification products. Colonies reacting positively with a 2.7 kb probe of the central region of Tn5, or with a 925 bp npt II specific probe were primarily obtained from sewage samples, whereas fewer were obtained from pig manure slurry, river water and soil. However, in soil samples bacteria containing Tn5 or npt II were not found. Transposon Tn5 carrying the npt II gene could be unequivocally demonstrated in 3 isolates from sewage, identified as Aeromonas spp. (2x) and Escherichia coli . Hin dIII digests of chromosomal DNA obtained from these strains were cloned and shown to confer Km resistance to a sensitive E. coli strain. Further, various strains revealed the presence of npt II homologous sequences in a non-Tn5 background. The occurence of Tn5 and npt II in the samples was also assessed via PCR analysis of total community DNA extracts obtained from the aforementioned environmental samples. Evidence for the occurence of npt II was obtained for sewage, pig manure slurry, for 2 (out of 3) river water (Avon, Rhine) and 3 (out of 6) soil (Flevo silt loam, Westmaas silt loam, Ahlum rhizosphere) samples. Tn5 was not detectable via PCR in any of these environmental DNA extracts but it was found in Ede loamy sand and Flevo silt loam samples taken from a field microplot 2 and 4 weeks after release of a Tn5-containing genetically modified organism.  相似文献   
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We have developed a novel system for the sensitive detection of nptII genes (kanamycin resistance determinants) including those present in transgenic plant genomes. The assay is based on the recombinational repair of an nptII gene with an internal 10-bp deletion located on a plasmid downstream of a bacterial promoter. Uptake of an nptII gene by transformation restores kanamycin resistance. In Escherichia coli, promoterless nptII genes provided by electroporation were rescued with high efficiency in a RecA-dependent recombinational process. For the rescue of nptII genes present in chromosomal plant DNA, the system was adapted to natural transformation, which favours the uptake of linear DNA. When competent Acinetobacter sp. BD413 (formerly A. calcoaceticus) cells containing the mutant nptII gene on a plasmid were transformed with DNA from various transgenic plants carrying nptII as a marker gene (Solanum tuberosum, Nicotiana tabacum, Beta vulgaris, Brassica napus, Lycopersicon esculentum), kanamycin-resistant transformants were obtained roughly in proportion to the concentration of nptII genes in the plant DNA. The rescue of nptII genes occurred in the presence of a more than 6 × 106-fold excess of plant DNA. Only 18 ng of potato DNA (2.5 × 103 genome equivalents, each with one copy of nptII) was required to produce one kanamycin-resistant transformant. These experiments and others employing DNA isolated from soil samples demonstrate that the system allows reliable and highly sensitive monitoring of nptII genes in transgenic plant DNA and in DNA from environmental sources, such as soil, without the need for prior DNA amplification (e.g. by PCR). Received: 20 May 1997 / Accepted: 17 October 1997  相似文献   
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Genetic transformation of European chestnut   总被引:3,自引:0,他引:3  
Stable incorporation of the nptII gene into Castanea sativa Mill. has been achieved by Agrobacterium-mediated transformation. The transformation assays were performed by infecting wounded hypocotyls with a strain of Agrobacterium tumefaciens, LBA 4404 harbouring the plasmid p35SGUSINT. Although two schemes of selection were tested, many escapes were obtained. The best strategy to avoid this problem is the introduction of higher concentrations of kanamycin in the culture medium, immediately after coculture. PCR analysis showed of the selectable nptII gene integration in the plant genome. β-Glucuronidase histochemical assay revealed the expression of the uidA gene in shoots, regenerated from transformed explants. Received: 3 December 1996 / Revision received: 4 February 1997 / Accepted: 1 March 1997  相似文献   
6.
According to the Kolodner and Tewari model [Kolodner, R.D. and Tewari, K.K. (1975) Nature, 256, 708.], plastid DNA replication involves displacement-loop and rolling-circle modes of replication, which are initiated on a pair of origins of replication (ori). In accordance with the model, such a pair of oris -oriA and oriB- was described in Nicotiana tabacum [Kunnimalaiyaan, M. and Nielsen B.L. (1997b) Nucl. Acids Res. 25, 3681.]. However, as reported previously, both copies of oriA can be deleted without abolishing replication. Deletion of both oriBs was not found [Mühlbauer, S.K. et al. (2002) Plant J. 32, 175.]. Here we describe new ori inactivation lines, in which one oriB is deleted and the other copy is strongly mutated. In addition, lines oriA and oriB were deleted from the same inverted repeat. In contrast to the expectations of the model, neither oriA nor oriB is essential. Some of the deletions led to reduced growth of plants and reduced plastid DNA copy number in later stages of leaf development. The gross structure of plastid DNA was unchanged; however, the location of the ends of branched plastid DNA complexes was different in the inactivation mutants. Taken together, the results indicate that there are additional mechanisms of plastid DNA replication and/or additional origins of replication. These mechanisms seem to be different from those found in eubacteria, which, according to the endosymbiont theory, are the progenitors of plastids.  相似文献   
7.
Gene targeting in maize by somatic ectopic recombination   总被引:1,自引:0,他引:1  
Low transformation efficiency and high background of non‐targeted events are major constraints to gene targeting in plants. We demonstrate here applicability in maize of a system that reduces the constraint from transformation efficiency. The system requires regenerable transformants in which all of the following elements are stably integrated in the genome: (i) donor DNA with the gene of interest adjacent to sequence for repair of a defective selectable marker, (ii) sequence encoding a rare‐cutting endonuclease such as I‐SceI, (iii) a target locus (TL) comprising the defective selectable marker and I‐SceI cleavage site. Typically, this requires additional markers for the integration of the donor and target sequences, which may be assembled through cross‐pollination of separate transformants. Inducible expression of I‐SceI then cleaves the TL and facilitates homologous recombination, which is assayed by selection for the repaired marker. We used bar and gfp markers to identify assembled transformants, a dexamethasone‐inducible I‐SceI::GR protein, and selection for recombination events that restored an intact nptII. Applying this strategy to callus permitted the selection of recombination into the TL at a frequency of 0.085% per extracted immature embryo (29% of recombinants). Our results also indicate that excision of the donor locus (DL) through the use of flanking I‐SceI cleavage sites may be unnecessary, and a source of unwanted repair events at the DL. The system allows production, from each assembled transformant, of many cells that subsequently can be treated to induce gene targeting. This may facilitate gene targeting in plant species for which transformation efficiencies are otherwise limiting.  相似文献   
8.
A collection of 70 transgenic citrus plants for the uidA and nptII genes have been maintained under screenhouse conditions over a period of 4–5 years. A detailed scanning of the plants allowed us to detect four phenotypic off-type plants and a large variation of transgene integration and expression patterns among the population. Off-type plants were analysed and characterised as nucellar tetraploids, probably originating from tetraploid starting tissues rather than from somaclonal variation events. Transgene integration and expression analyses revealed that: (1) a significant negative correlation was found between copy number and GUS activity; (2) rearrangements of the T-DNA inserts did not imply low expression levels; and (3) stability of integration and expression of the transgenes was confirmed for all the transformants grown under natural environmental conditions. These combined features validate transformation as a tool for the genetic improvement of citrus. Received: 11 January 1999 / Accepted: 19 January 1999  相似文献   
9.
以热研5号柱花草(Stylosanthes guianensis cv.Ryan No.5)为材料,系统地研究了不同选择标记基因NptII,hpt和bar的柱花草转化体系.研究发现柱花草最适合基因转化的外植体是幼苗下胚轴.最佳愈伤组织形成和愈伤组织分化培养基为M S+NAA 1.0m g/L+6B-A4.0m gL/+3%蔗糖,pH6.最适宜外植体生根培养基是MS+N AA0mg/L+3%蔗糖(pH6).Glufosinate选择压力为0.15m g/L,Kanam ycin选择压力为20mg/L,Hygrom ycin选择压力为15m g/L.在以上的优化转化系统中,柱花草幼苗下胚轴分别侵染带NptII,hpt和bar基因的农杆菌(GV 3101)后,可获得30%愈伤组织具有kanamycin抗性,5%愈伤组织具有Hygromycin抗性,50%的愈伤组织具有Glufosinate抗性.  相似文献   
10.
Abstract The reliability of Tn 5 as labelling tool was investigated in soil microcosm. The occurence of a selective in soil microcosm. The occurence of resistances encoded by Tn 5 nptII gene was assesed by kanamycin and neomycin amendment. The bioassay developed to monitor the persistence of the soil-added kanamycin did not detect the antibiotic activity in soil extract. A nptII -engineered Escherichia coli strain showed no enhanced survival in aminoglycoside amended soil. Tn 5-marker properties were investigated within indigenous bacteria to determine the specificity of labelling to follow the fate of recombinant DNA. Kanamycin and neomycin resistant population levels made Tn 5 aminoglycoside-resistance phenotype non-sensitive enough to select a soil dissemination of the labelled DNA. The unexpected occurrence of homologous sequences among soil organisms also prevented Tn 5 from being a specific DNA marker. By contrast, colony hybridization did not reveal homology to nptII suggesting its use as a reliable gene transfer indicator.  相似文献   
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