Enhanced symbiotic nitrogen fixation by Lotus japonicus containing an antisense β-1,3-glucanase gene
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概要
- 論文の詳細を見る
We hypothesized that root nodule formation would be promoted by lower expression of a β-1,3-glucanase gene (designated as LjGlu1), because expression of this gene is increased in transgenic Lotus japonicus that shows reduced nodulation. In order to suppress the expression of this gene, we introduced the antisense LjGlu1 gene into L. japonicus via Agrobacterium rhizogenes. Although there was no significant difference in shoot and root growth between L. japonicus possessing the antisense construct and plants containing an empty vector, the number of root nodules 28 days after inoculation with Mesorhizobium loti MAFF303099 increased in the antisense plant compared with the control plant. Moreover, the nitrogen fixation activity of the antisense plant was drastically enhanced. The mechanism of enhanced nitrogen fixation by suppression of the expression of LjGlu1 is unknown, but this phenomenon should be an important breeding target for leguminous plants. This is the first report of strong enhancement of nitrogen fixation activity by manipulation of a gene of the leguminous host plant.
- 日本植物細胞分子生物学会の論文
- 2008-09-01
著者
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Suzuki Akihiro
Faculty of Literature and Social Sciences, Yamagata University
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阿部 美紀子
Graduate School Of Science And Engineering Kagoshima University
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内海 俊樹
Graduate School Of Science And Engineering Kagoshima University
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KUCHO KEN-ICHI
Graduate School of Science and Engineering, Kagoshima University
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HIGASHI SHIRO
Department of Chemistry and Bioscience, Faculty of Science, Kagoshima University
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YAMASHITA Kenji
Graduate School of Science and Technology, Kagoshima University
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ISHIHARA Mami
Department of Chemistry and Bioscience, Faculty of Science, Kagoshima University
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NAKAHARA Ken-ichi
Faculty of Agriculture, Saga University
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ABE Mikiko
Department of Chemistry and Bioscience, Faculty of Science, Kagoshima University
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KUCHO Ken-ichi
Department of Chemistry and Bioscience, Faculty of Science, Kagoshima University
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UCHIUMI Toshiki
Department of Chemistry and Bioscience, Faculty of Science, Kagoshima University
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ARIMA Susumu
Faculty of Agriculture, Saga University
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ARIMA Susumu
Department of Environmental Sciences, Faculty of Agriculture, Saga University
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東 四郎
Department Of Chemistry And Bioscience Faculty Of Science Kagoshima University
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Higashi Shiro
Department Of Biology Faculty Of Science Kagoshima University
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Abe Mikiko
Department Of Anatomy And Cell Biology Graduate School Of Medicine Osaka City University
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Han Sun-young
Discovery Res. Inst. Riken
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Kucho Kenichi
Department Of Chemistry And Bioscience Faculty Of Science Kagoshima University
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Kucho Ken-ichi
Graduate School Of Science And Engineering Kagoshima University
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Arima Susumu
Department Of Environmental Sciences Faculty Of Agriculture Saga University
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Arima Susumu
Faculty Of Agriculture Saga University
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Uchiumi Toshiki
Dept. Biol. Fac. Sci. Kagoshima Univ.
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Uchiumi Toshiki
Department Of Chemistry And Bioscience Faculty Of Science Kagoshima University
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Suzuki A
Department Of Environmental Sciences Faculty Of Agriculture Saga University
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Nakahara Ken-ichi
Faculty Of Agriculture Saga University
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Suzuki Akihiro
Department Of Environmental Sciences Faculty Of Agriculture Saga University
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Uchiumi Toshiki
Graduate School Of Sci. And Engineering Kagoshima Univ.
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Ishihara Mami
Department Of Chemistry And Bioscience Faculty Of Science Kagoshima University
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Higashi Shirou
Kagoshima Univ.
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Kucho Ken-ichi
Department Of Chemistry And Bioscience Graduate School Of Science And Engineering Kagoshima Universi
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Yamashita Kenji
Graduate School Of Science And Technology Kagoshima University
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Suzuki Akihiro
Faculty Of Agriculture Saga University
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