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Characterization of Genomic Integration and Transgene Organization in Six Transgenic Rapeseed Events

Characterization of Genomic Integration and Transgene Organization in Six Transgenic Rapeseed Events
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摘要 To characterize the DNA rearrangement of both the T-DNA region and the genomic insertion site during T-DNA insertion, the Genomewalker strategy was used to isolate the junctions between the inserted DNA and the plant genomic DNA in six rapeseed events as well as the genomic DNA at the sites before integration. During transformation in each of the six events, portions of both the right border(RB) and left border(LB) regions of the T-DNA were deleted, ranging from a 7 nucleotide deletion of the LB repeats in event RF1 to a 207 bp deletion of the LB region in event RF2. For the six events, T-DNA integration resulted in a deletion at the target site spanning less than 100 bp. Sequence analysis indicated that the T-DNA was integrated into the coding region of various native rapeseed genes in events RF1 and RF2. Duplications of the genomic DNA target site were observed in events RF2, RF3 and Topas 19/2. And multimerization of transgenes was found in event Topas 19/2, in which, the T-DNA was integrated as a head-to-head(RB-to-RB) concatemer into the recipient genome. In event MS1, chromosomal translocation or a large target-site deletion may have occurred during T-DNA integration, which was identified due to a failure to amplify the presumptive insertion site based on the flanking rapeseed DNA sequences. Our results provide comprehensive data concerning transgene organization and the genomic context of the T-DNA in six rapeseed events, which can aid in the developing of insert fingerprinting and the monitoring of long-term genetic stability and potential unintended effects of transgenic events. To characterize the DNA rearrangement of both the T-DNA region and the genomic insertion site during T-DNA insertion, the Genomewalker strategy was used to isolate the junctions between the inserted DNA and the plant genomic DNA in six rapeseed events as well as the genomic DNA at the sites before integration. During transformation in each of the six events, portions of both the right border(RB) and left border(LB) regions of the T-DNA were deleted, ranging from a 7 nucleotide deletion of the LB repeats in event RF1 to a 207 bp deletion of the LB region in event RF2. For the six events, T-DNA integration resulted in a deletion at the target site spanning less than 100 bp. Sequence analysis indicated that the T-DNA was integrated into the coding region of various native rapeseed genes in events RF1 and RF2. Duplications of the genomic DNA target site were observed in events RF2, RF3 and Topas 19/2. And multimerization of transgenes was found in event Topas 19/2, in which, the T-DNA was integrated as a head-to-head(RB-to-RB) concatemer into the recipient genome. In event MS1, chromosomal translocation or a large target-site deletion may have occurred during T-DNA integration, which was identified due to a failure to amplify the presumptive insertion site based on the flanking rapeseed DNA sequences. Our results provide comprehensive data concerning transgene organization and the genomic context of the T-DNA in six rapeseed events, which can aid in the developing of insert fingerprinting and the monitoring of long-term genetic stability and potential unintended effects of transgenic events.
出处 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2014年第9期1865-1876,共12页 农业科学学报(英文版)
基金 supported by the grant from the National Major Special Project for the Development of Transgenic Organisms,China(2013ZX08012-003 and 2011ZX08012-005) the Special Funds of the State Environmental Protection Public Welfare Industry,China(201109028)
关键词 transgenic rapeseed junction fragment pre-insertion site DNA rearrangement transgenic rapeseed,junction fragment,pre-insertion site,DNA rearrangement
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  • 1Alonso J M, Stepanova A N, Leisse T J, Kim C J, Chen H, Shinn P, Stevenson D K, Zimmerman J, Barajas P, Cheuk R, Gadrinab C, Heller C, Jeske A, Koesema E, Meyers CC, Parker H, Prednis L, Ansari Y, Choy N, Deen H. 2003. Genome-wide insertional mutagenesis of Arabidopsis thaliana. Science, 301,653-657.
  • 2An G, Ebert P R, Yi B Y, Choi C H. 1986. Both TATA box and upstream regions are required for the nopaline synthase promoter activity in transformed tobacco ceils. Molecular and General Genetics, 203, 245-250.
  • 3Collonnier C, Berthier G, Boyer F, Duplan M N, Fernandez S, Kebdani N, Kobilinsky A, Romanuk M, Bertheau Y. 2012. Characterisation of commercial gmo inserts: A source of useful material to study genome fluidity. [2012-6-1]. http://www.biodinamica.org.br/Biosseguran%C3%A7a/ Plantas_geneticam_modif/Files/PDF s/Collonnier%20 et%20al,%202003,%207ICPMB.pdf.
  • 4Collonnier C, Schattner A, Berthier G, Boyer F, Cour-Philippe G, Diolez A, Duplan M N, Fernandez S, Kebdani N, Kobilinsky A, Romaniuk M, de Beuckeleer M, de Loose M, Windels P, Bertheau Y. 2005. Characterization and event specific-detection by quantitative real-time PCR of T25 maize insert. Journal of AOACInternational, 88, 536-546.
  • 5Ebert P R, Ha S 13, An G. 1987. Identification of an essential upstream element in the nopaline synthase promoter by stable and transient assays. Proceedings of the National Academy of Sciences of the United States of America, 84, 5745-5749.
  • 6Filipecki M, Malepszy S. 2006. Unintended consequences of plant transformation: A molecular insight. Journal of Applied Genetics, 47, 277-286.
  • 7Forsbach A, Schubert D, Lechtenberg B, Gils M, Schmidt R. 2003. Comprehensive characterization of single-copy T-DNA insertions in the Arabidopsis thaliana genome. Plant Molecular Biology, 52, 161-186.
  • 8Greta D B, Marc D B. 2003. Hybrid Winter Oilseed Rape and Methods for Producing Same. Patent, Application No. US 6,563,026 B2.
  • 9Gheysen G, Villarroel R, van Montagu M. 1991. Illegitimate recombination in plants: A model for T-DNA integration. Genes & Development, 5, 287-297.
  • 10Hernhndez M, Pla M, Esteve T, Prat S, Puigdombnech P, Ferrando A. 2003. A specific real-time quantitative PCR detection system for event MON810 in maize YieldGard based on the 3'-transgene integration sequence. Transgenie Research, 12, 179-189.

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