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1.
Chinese Journal of Biotechnology ; (12): 157-160, 2007.
Artigo em Chinês | WPRIM | ID: wpr-325401

RESUMO

The commonly used plant constitutive expression vector pBI121 was modified by insertion of two directly orientated lox sites each at one end of the selectable marker gene NPTII and by replacing the GUS gene with a sequence composed of multiple cloning sites (MCS). The resulting plant expression vector pBI121-lox-MCS is widely usable to accommodate various target genes through the MCS, and more importantly to allow the NPTII gene removed from transformed plants upon the action of the Cre recombinase. In addition, the CaMV 35S promoter located upstream of the MCS can be substituted with any other promoters to form plant vectors with expression features specified by the introduced promoters. Provided in this paper is an example that an enhanced phloem-specific promoter of the pumpkin PP2 gene (named dENP) was used to construct an NPTII-removable phloem-specific expression vector pBdENP-lox-MCS. Moreover, to facilitate screening of selectable marker-removed gene and the composite sequence is flanked by lox sites. Thus the selectable marker-free plants can be visually identified by loss of GFP fluorescence. The above newly created plant expression vectors can be used to develop selectable marker-removable transgenic plants for a variety of purposes.


Assuntos
Sítios de Ligação Microbiológicos , Genética , Sítios de Ligação , Genética , Clonagem Molecular , Técnicas de Inativação de Genes , Métodos , Genes de Plantas , Genética , Marcadores Genéticos , Genética , Vetores Genéticos , Genética , Proteínas de Fluorescência Verde , Genética , Metabolismo , Integrases , Genética , Metabolismo , Plantas , Genética , Plantas Geneticamente Modificadas , Genética , Recombinação Genética
2.
Chinese Journal of Biotechnology ; (12): 139-143, 2005.
Artigo em Chinês | WPRIM | ID: wpr-270133

RESUMO

Using total DNA isolated from Amaranthus caudatus as the template, a DNA fragment of about 700bp upstream of the coding sequence of Amaranthus caudatus agglutinin (ACA) gene was amplified by TAIL-PCR and cloned. To examine the regulatory function of this DNA fragment, it was inserted into a plant expression vector containing GUS gene to substitute the CaMV 35S promoter and the resulted recombinant plasmid was designated as pBpAG. The expression vector pBpAG was transferred to different tissues of plants, via Agrobacterium-mediated transformation in vacuum condition. Transient expression of GUS in the transformed tissues was detected by histochemical GUS staining and the results showed that the GUS activity was expressed specifically in seeds. These preliminary results indicate that this DNA fragment upstream of the ACA coding sequence could very possibly be a promoter with seed specificity. Some putative cis-elements within the promoter were discussed.


Assuntos
Amaranthus , Genética , Sequência de Bases , Clonagem Molecular , Escherichia coli , Genética , Metabolismo , Dados de Sequência Molecular , Lectinas de Plantas , Genética , Regiões Promotoras Genéticas , Genética , Rhizobium , Genética , Metabolismo
3.
Chinese Journal of Biotechnology ; (12): 545-550, 2003.
Artigo em Chinês | WPRIM | ID: wpr-259151

RESUMO

A binary plant expression vector, pCM12-slm, carrying the aroAM12 mutant gene encoding bacterial 5-enolpyruvylshikimate-3-phosphate synthase (EPSPS) and the Bts1m recombinant gene consisting of 331 N-terminal amino acids of CryIAc and 284 C-terminal amino acids of CryIAb has been constructed. The truncated Bts1 gene was fused with the PR1b signal peptide sequence and expressed in tobacco plants under the control of 2E-CaMV35S promoter and the omega (omega) translation enhancer sequence from tobacco mosaic virus. The mutant aroAM12 was fused with the transit sequence of tobacco EPSPS and expressed in tobacco plants under the control of the CaMV35S promoter. Tobacco leaves were transformed with Agrobacterium tumefaciens LBA4404 harboring the pCM12-slm plasmid, and the transgenic plants were selected directly on medium containing the herbicide. Forty glyphosate resistant plants were regenerated, with a transformation frequency of 27%. Transgenic plants were initially assessed for glyphosate resistance by placing leaf discs on shoot induction media containing the herbicide. Rooted plantlets, propagated from selected transgenic tobacco, were transferred to soil in a greenhouse and tested for glyphosate resistance by spraying them with Roundup at a commercial recommended dose. The glyphosate resistance assay indicated that all the transgenic plants showed highly resistant to the herbicide. The PCR assay showed that the aroAM12 gene was present in all of the 40 T0 transfer plants, and Bts1m genes present in 28 of 40 of the transgenic plants. Southern blot analysis further confirmed that the copy number of the transgenes varied from one to three copies in different transgenic plants. Northern blot and immunodot blot showed that the aroAM12 and Bts1m genes were expressed at the transcription and translation levels. Transgenic plants containing both the aroA M12 and Bts1m genes were further assessed for insect resistance. Tobacco leaves of T0 transgenic plants were infested with tobacco bollworm H. assulta larvae for 6 days. The result (table 1) showed that the survival rate of insect larvae was between 0-10%, and the growth of insect larvae was seriously inhibited, suggesting pCM12-slm as a dual functional vector with potential application in breeding of glyphosate and insect resistance transgenic plants.


Assuntos
Animais , Agrobacterium tumefaciens , Genética , Northern Blotting , Southern Blotting , Vetores Genéticos , Genética , Fisiologia , Herbicidas , Farmacologia , Mariposas , Virulência , Doenças das Plantas , Parasitologia , Folhas de Planta , Genética , Parasitologia , Plantas Geneticamente Modificadas , Genética , Parasitologia , Reação em Cadeia da Polimerase , Nicotiana , Genética , Parasitologia
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