새로운 선발 마커 D-아미노산 산화효소 유전자를 이용한 식물 형질전환

Though higher plants car not metabolize D-amino acid, many prokaryotes and eukaryotes have the D-amino acid metabolism. Therefore, we transformed tobacco plants with D-amino acid oxidase (DAO), which can metabolize D-amino acid, and confirmed that transgenic tobacco plants might metabolize D-amino a...

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Veröffentlicht in:Journal of plant biotechnology 2007, 34(1), , pp.31-36
Hauptverfasser: 임선형(Sun Hyung Lim), 우희종(Hee Jong Woo), 이시명(Si Myung Lee), 진용문(Yong Moon Jin), 조현석(Hyun Suk Cho)
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Zusammenfassung:Though higher plants car not metabolize D-amino acid, many prokaryotes and eukaryotes have the D-amino acid metabolism. Therefore, we transformed tobacco plants with D-amino acid oxidase (DAO), which can metabolize D-amino acid, and confirmed that transgenic tobacco plants might metabolize D-amino acid. Transgenic tobacco plants were survived a high concentration of D-serine, however non-transgenic plants were not grown on D-serine medium. From Southern and Northern blot analysis, transgenic tobacco plants selected on D-serine medium were confirmed by insert and expression of transgene. $T_{1}$ tobacco seeds derived $T_{0}$ tobacco plants selfing were grown on D-serine medium and showed normal phenotype compared to wild tobacco plants. Transgenic tobacco plants displayed the metabolic capability of D-serine. Therefore, we suggested that DAO is useful selectable marker gene for plant transformation.
ISSN:1229-2818
2384-1397