Blasticidin S Deaminase Gene(BSD):a New Selection Marker Gene for Transformation of Arabidopsis thaliana and Nicotiana tabacum
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概要
- 論文の詳細を見る
Arabidopsis thaliana and Nicotiana tabacum were transformed to blasticidin S (BS) resistance with BSD (the BS deaminase gene from Aspergillus terreus) using the Agrobacterium-mediated transformation method. Expression of BSD allowed direct selection of transformants by the fungicide, and both kinds of transgenic plants showed high level of resistance phenotype at 100ppm of BS sprayed on the leaves. Using Botrytis cinerea, the causal fungus of gray mold disease, it was exemplified that application of BS could control the disease in transgenic tobacco with negligible phytotoxicity.
- 社団法人日本農芸化学会の論文
- 1995-12-23
著者
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KIMURA Makoto
Microbial Toxicology Laboratory and Biodesign Research Group, RIKEN(The Institute of Physical and Ch
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Yamaguchi Isamu
Microbial Toxicology Laboratory Riken:(present Address)environmental Plant Research Group Plant Scie
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Yamaguchi Isamu
Microbial Toxicology Laboratory The Institute Of Physical And Chemical Research (rlken)
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Tamura Katsunori
Microbial Toxicology Laboratory, The Institute of Physical and Chemical Research (RlKEN)
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Tamura Katsunori
Microbial Toxicology Laboratory The Institute Of Physical And Chemical Research (rlken)
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Kimura Makoto
Microbial Toxicology Laboratory The Institute Of Physical And Chemical Research (rlken)
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Kimura Makoto
Microbial Toxicology Laboratory And Biodesign Research Group Riken(the Institute Of Physical And Che
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YAMAGUCHI Isamu
Microbial Toxicology Laboratory and Biodesign Research Group, RIKEN(The Institute of Physical and Chemical Research)
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