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Distribution of T-DNA carrying a Ds element on rice chromosomes 被引量:5

Distribution of T-DNA carrying a Ds element on rice chromosomes
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摘要 Over 3000 rice plants with T-DNA carrying a Ds element were constructed by Agro-bacterium tumefaciens mediation. Using inverse PCR methodology, 590 unique right flanking sequences of T-DNA (Ds) were retrieved from independent transformants and classified into six main types on the basis of the origin of filler DNA between the right border of T-DNA and flanking sequence of rice genome. Type I sequences were the most common and showed canonical in-tegration that T-DNA right border was followed by rice genome sequence with or without filler DNA of no more than 50 bp, while type II sequences displayed a vector-genome combination that T-DNA right border was followed by a vector fragment and then connected with rice genome sequence. The location and distribution of 340 type I and II flanking sequences on the rice chromosome were determined using BLAST analysis. The 340 Ds insertions at an average in-terval of 0.8 megabase (Mb) constructed a basic framework of Ds starter points on whole rice chromosomes. The frequency of T-DNA (Ds) inserted into the exons of predicted genes on chromosome one was 21%. Knowledge of T-DNA (Ds) locations on chromosomes will prove to be a useful resource for isolating rice genes by Ds transposon tagging as these Ds insertions can be used as starting lines for further mutagenesis. Over 3000 rice plants with T-DNA carrying a Ds element were constructed by Agro-bacterium tumefaciens mediation. Using inverse PCR methodology, 590 unique right flanking sequences of T-DNA (Ds) were retrieved from independent transformants and classified into six main types on the basis of the origin of filler DNA between the right border of T-DNA and flanking sequence of rice genome. Type I sequences were the most common and showed canonical in-tegration that T-DNA right border was followed by rice genome sequence with or without filler DNA of no more than 50 bp, while type II sequences displayed a vector-genome combination that T-DNA right border was followed by a vector fragment and then connected with rice genome sequence. The location and distribution of 340 type I and II flanking sequences on the rice chromosome were determined using BLAST analysis. The 340 Ds insertions at an average in-terval of 0.8 megabase (Mb) constructed a basic framework of Ds starter points on whole rice chromosomes. The frequency of T-DNA (Ds) inserted into the exons of predicted genes on chromosome one was 21%. Knowledge of T-DNA (Ds) locations on chromosomes will prove to be a useful resource for isolating rice genes by Ds transposon tagging as these Ds insertions can be used as starting lines for further mutagenesis.
出处 《Science China(Life Sciences)》 SCIE CAS 2004年第4期322-331,共10页 中国科学(生命科学英文版)
关键词 Ds element T-DNA MUTAGENESIS rice(Oryza sativa L.). Ds element T-DNA mutagenesis rice (Oryza sativa L.).
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参考文献16

  • 1Z. Yin,G.-L. Wang.Evidence of multiple complex patterns of T-DNA integration into the rice genome[J].TAG Theoretical and Applied Genetics (-).2000(3-4)
  • 2Takeshi Izawa,Tohru Ohnishi,Toshitsugu Nakano,Nobuhiro Ishida,Hiroyuki Enoki,Hisako Hashimoto,Kimiko Itoh,Rie Terada,Chuanyn Wu,Chikara Miyazaki,Tomoko Endo,Shigeru Iida,Ko Shimamoto.Transposon tagging in rice[J].Plant Molecular Biology (-).1997(1-2)
  • 3Estelle Villemont,Frédéric Dubois,Rajbir S. Sangwan,Gérard Vasseur,Yvan Bourgeois,Brigitte S. Sangwan-Norreel.Role of the host cell cycle in theAgrobacterium-mediated genetic transformation ofPetunia: Evidence of an S-phase control mechanism for T-DNA transfer[J].Planta.1997(2)
  • 4Ko Shimamoto,Chikara Miyazaki,Hisako Hashimoto,Takeshi Izawa,Kimiko Itoh,Rie Terada,Yoshishige Inagaki,Shigeru Iida.Trans-activation and stable integration of the maize transposable element Ds cotransfected with the Ac transposase gene in transgenic rice plants[J].MGG Molecular & General Genetics.1993(3)
  • 5Takeshi Izawa,Chikara Miyazaki,Mikihiro Yamamoto,Rie Terada,Shigeru Iida,Ko Shimamoto.Introduction and transposition of the maize transposable element Ac in rice (Oryza sativa L.)[J].MGG Molecular & General Genetics.1991(3)
  • 6Shogo Matsumoto,Yukihiro Ito,Tsuyoshi Hosoi,Yosuke Takahashi,Yasunori Machida.Integration of Agrobacterium T-DNA into a tobacco chromosome: Possible involvement of DNA homology between T-DNA and plant DNA[J].MGG Molecular & General Genetics.1990(3)
  • 7Greco,R,Ouwerkerk,P.B.F,Sallaud,C. et al.Transposon in- sertional mutagenesis in rice[].Plant and Physiology.2001
  • 8Chen,Y,Zhang,J.Effects of different promoters controlling ex- pression ofAc transposase gene on excision frequency of maizeDs element in rice[].ActaPhytophysiologicaSinica.2001
  • 9Wu J,Maehara T,Shimokawa T,et al.A comprehensive rice transcript map containing 6591 expressed sequence tag sites[].The Plant Cell.2002
  • 10Yuan Q,Quackenbush J,Sultana R,et al.Rice bioinformatics:analysis of rice sequence data and leveraging the data to other plant species[].Plant Physiology.2001

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