Expression of intron modified NPT II genes in monocotyledonous and dicotyledonous plant cells

Intron sequences from monocotyledonous and dicotyledonous origin were used to abolish marker gene expression in prokaryotes (Escherichia coli and Agrobacterium tumefaciens) but permit expression in selected eukaryotic systems using the eukaryotic specific splicing mechanism. A 1014 bp maize Shrunken...

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Veröffentlicht in:Molecular breeding 1997-02, Vol.3 (1), p.15-28
Hauptverfasser: Maas, Christoph, Simpson, Craig G, Eckes, Peter, Schickler, Hedva, Brown, John WS, Reiss, Bernd, Salchert, Klaus, Ilan Chet, Schell, Jeff, Reichel, Christoph
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container_end_page 28
container_issue 1
container_start_page 15
container_title Molecular breeding
container_volume 3
creator Maas, Christoph
Simpson, Craig G
Eckes, Peter
Schickler, Hedva
Brown, John WS
Reiss, Bernd
Salchert, Klaus
Ilan Chet
Schell, Jeff
Reichel, Christoph
description Intron sequences from monocotyledonous and dicotyledonous origin were used to abolish marker gene expression in prokaryotes (Escherichia coli and Agrobacterium tumefaciens) but permit expression in selected eukaryotic systems using the eukaryotic specific splicing mechanism. A 1014 bp maize Shrunken-1 (Sh 1) intron 1 flanked by exon1 and exon2 sequences was cloned into the N-terminal of the NPT II-coding region. Transient gene expression analysis revealed that the modified neomycin phosphotransferase II (NPT II) gene, driven by the cauliflower mosaic virus (CaMV) 35S promoter, is expressed in barley protoplasts, but poorly expressed in tobacco protoplasts. In dicotyledonous cells AU-rich sequences are known to be important for efficient splicing and therefore an attempt was made to improve expression of the NPT II gene, containing the Sh 1 intron 1, in tobacco by increasing the AU content from 57% to 69%. Reverse transcriptase PCR analysis of RNA from transiently expressed NPT II transcripts from tobacco protoplasts revealed that despite the increase in AU-content, NPT II was still poorly expressed. Cryptic splice sites were identified as one possible cause for missplicing of the Sh1 intron 1 in dicots and poor levels of expression. Alternatively, cloning of the 198 bp intron 2 of the potato STLS 1 gene (81% AU) into the N-terminal part of the NPT II-coding region resulted in proper expression of NPT II in tobacco as well as in barley protoplasts and abolished marker gene expression in prokaryotes. The successful insertion of an intron into a selectable marker gene which completely abolishes gene expression in prokaryotes, without affecting expression of chimeric genes in monocotyledonous and dicotyledonous plant cells provides a suitable system to reduce the number of false-positives in transgenic plant production.
doi_str_mv 10.1023/A:1009602923403
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A 1014 bp maize Shrunken-1 (Sh 1) intron 1 flanked by exon1 and exon2 sequences was cloned into the N-terminal of the NPT II-coding region. Transient gene expression analysis revealed that the modified neomycin phosphotransferase II (NPT II) gene, driven by the cauliflower mosaic virus (CaMV) 35S promoter, is expressed in barley protoplasts, but poorly expressed in tobacco protoplasts. In dicotyledonous cells AU-rich sequences are known to be important for efficient splicing and therefore an attempt was made to improve expression of the NPT II gene, containing the Sh 1 intron 1, in tobacco by increasing the AU content from 57% to 69%. Reverse transcriptase PCR analysis of RNA from transiently expressed NPT II transcripts from tobacco protoplasts revealed that despite the increase in AU-content, NPT II was still poorly expressed. Cryptic splice sites were identified as one possible cause for missplicing of the Sh1 intron 1 in dicots and poor levels of expression. Alternatively, cloning of the 198 bp intron 2 of the potato STLS 1 gene (81% AU) into the N-terminal part of the NPT II-coding region resulted in proper expression of NPT II in tobacco as well as in barley protoplasts and abolished marker gene expression in prokaryotes. The successful insertion of an intron into a selectable marker gene which completely abolishes gene expression in prokaryotes, without affecting expression of chimeric genes in monocotyledonous and dicotyledonous plant cells provides a suitable system to reduce the number of false-positives in transgenic plant production.</description><identifier>ISSN: 1380-3743</identifier><identifier>EISSN: 1572-9788</identifier><identifier>DOI: 10.1023/A:1009602923403</identifier><language>eng</language><publisher>Dordrecht: Springer Nature B.V</publisher><subject>Barley ; Cloning ; E coli ; Gene expression ; Gene sequencing ; Genes ; Hordeum vulgare ; Insertion ; Molecular biology ; Neomycin ; Neomycin phosphotransferase ; Nicotiana tabacum ; NPT II gene ; Phosphotransferase ; Phosphotransferase II ; Plant biology ; Plant cells ; Plant production ; Potatoes ; Prokaryotes ; Protoplasts ; Ribonucleic acid ; RNA ; RNA-directed DNA polymerase ; Splicing ; Tobacco ; Transgenic plants ; Viruses</subject><ispartof>Molecular breeding, 1997-02, Vol.3 (1), p.15-28</ispartof><rights>Molecular Breeding is a copyright of Springer, (1997). 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ispartof Molecular breeding, 1997-02, Vol.3 (1), p.15-28
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language eng
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subjects Barley
Cloning
E coli
Gene expression
Gene sequencing
Genes
Hordeum vulgare
Insertion
Molecular biology
Neomycin
Neomycin phosphotransferase
Nicotiana tabacum
NPT II gene
Phosphotransferase
Phosphotransferase II
Plant biology
Plant cells
Plant production
Potatoes
Prokaryotes
Protoplasts
Ribonucleic acid
RNA
RNA-directed DNA polymerase
Splicing
Tobacco
Transgenic plants
Viruses
title Expression of intron modified NPT II genes in monocotyledonous and dicotyledonous plant cells
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