Enrichment of Carotenoids in Flaxseed(Linum usitatissimum) by Metabolic Engineering with Introduction of Bacterial Phytoene Synthase Gene crtB(PLANT BIOTECHNOLOGY)
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概要
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Linseed flax(Linum mitatissimum L.) is an industrially important oil crop, which includes large amounts of α-linolenie acid(18:3) and lignan in its seed oil. We report here the metabolic engineering of flax plants to increase carotenoid amount in seeds. Agmbacterium-mediated transformation of flax was performed to express the phytoene synthase gene(crtB) derived from the soil bacterium Pantoea ananatis(formerly called Erwinia uredovora 20D3) under the control of the cauliflower mosaic virus(CaMV) 35S constitutive promoter or the Arabidopsis thaliana fatty acid elongase 1 gene(FAE1) seed-specific promoter. As a result, eight transgenic flax plants were generated. They formed orange seeds(embryos), in which phytoene, α-carotene, and β-carotene were newly accumulated in addition to increased amounts of lutein, while untransformed flax plants formed light-yellow seeds, in which only lutein was detected. Interestingly, despite the control of the CaMV 35S promoter, the expression of crtB was not observed in the leaves but in the seeds in the transgenic flax plants. Total carotenoid amounts in these seeds were 65.4-156.3 μg/g fresh weight, which corresponded to 7.8- to 18.6-fold increase, compared with those of untransformed controls. These results suggest that the flux of phytoene synthesis from geranylgeranyl diphosphate was first promoted by the expressed crtB gene product(CrtB), and then phytoene was consecutively decomposed to the downstream metabolites α-carotene, β-carotene, and lutein, as catalyzed by endogenous carotenoid biosynthetie enzymes in seeds. The transgenic flaxseeds enriched with the carotenoids could be valuable as nutritional sources for human health.
- 社団法人日本生物工学会の論文
- 2008-06-25
著者
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MISAWA Norihiko
Central Laboratories for Frontier Technology, Kirin Holdings Co., Ltd.
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OHYAMA Kanji
Laboratory of Plant Molecular Biology, Division of Integrated Life Science, Graduate School of Biost
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Ohyama Kanji
Laboratory Of Plant Gene Technology Research Institute For Bioresources And Biotechnology Ishikawa P
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Teramoto Maki
Department Of Biotechnology National Institute Of Technology And Evaluation
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Choi Song-kang
Marine Biotechnology Institute Co. Ltd.
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Fujisawa Masaki
Marine Biotechnology Institute Co., Ltd.
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Watanabe Mio
Marine Biotechnology Institute Co., Ltd.
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Teramoto Maki
Marine Biotechnology Institute Co., Ltd.
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Misawa Norihiko
Marine Biotechnology Institute Co., Ltd.
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FUJISAWA Masaki
Central Laboratories for Frontier Technology, Kirin Holdings Co., Ltd.
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Fujisawa Masaki
Central Laboratories For Frontier Technology Kirin Holdings Co. Ltd.
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Fujisawa Masaki
Div. Applied Life Science Grad. Schl. Agr. Kyoto Univ.
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Misawa Norihiko
Central Laboratories For Frontier Technology Kirin Holdings Co. Ltd.
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Misawa Norihiko
Marine Biotechnology Institute
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Watanabe Mio
Marine Biotechnology Institute Co. Ltd.
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OHYAMA Kanji
Laboratory of Biochemistry, Department of Agricultural Chemistry, Kyoto University
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