Functional Analysis of Transgenic Rice (Oryza sativa L.) Transformed with an Arabidopsis thaliana Ferric Reductase (AtFRO2)
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概要
- 論文の詳細を見る
Iron deficient soils limit crop production on 25-30% of the world's arable land. Both grasses (Strategy II) and dicotyledonous crops (Strategy I) are susceptible to iron deficiency, but each respond to iron stress by different mechanisms. In order to acquire iron from the soil, Strategy I plants utilize an iron reduction and Fe^<2+> transporter system at the root level, whereas Strategy II plants use a phytosiderophore-based system. Unfortunately, in some grasses such as rice, the production of phytosiderophores is low, and thus their ability to survive in iron-deficient conditions is limited. To determine whether a Strategy I root reductase can function in a Strategy II plant, and enhance its iron acquisition, we inserted the FRO2 gene from Arabidopsis thaliana (AtFRO2) into rice (Oryza sativa). Root reductase activity was determined and was found to be low in both transgenic and control plants grown at different iron concentrations. The low activity levels were attributed to the release of soluble reductants in the assay and not to membrane-localized root reductase activity. RT-PCR analysis of rice roots and shoots of plants grown hydroponically at different iron concentrations revealed no expression of the transgene. In this paper, we discuss the lack of functionality of the AtFRO2 gene in rice, and we perform a comparative study of the 0.6 kb promoter region by PlantCARE and PLACE analysis.
- 社団法人日本土壌肥料学会の論文
著者
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Datta Swapan
International Rice Research Institute
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Datta S
International Rice Res. Inst. Makati City Phl
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Vasconcelos Marta
USDA
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Musetti Valeria
ARS Children's Nutrition Research Center Department of Pediatrics Baylor College of Medicine
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Li Chee-Ming
USDA
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Datta Swapan
ARS Children's Nutrition Research Center Department of Pediatrics Baylor College of Medicine
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Grusak Michael
USDA
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Datta Swapan
Ars Children's Nutrition Research Center Department Of Pediatrics Baylor College Of Medicine
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Musetti Valeria
Ars Children's Nutrition Research Center Department Of Pediatrics Baylor College Of Medicine
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Li Chee-ming
Usda/ars Children's Nutrition Research Center Department Of Pediatrics Baylor College Of Medici
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Musetti Valeria
Usda/ars Children's Nutrition Research Center Department Of Pediatrics Baylor College Of Medici
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Vasconcelos Marta
Usda/ars Children's Nutrition Research Center Department Of Pediatrics Baylor College Of Medici
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Grusak Michael
USDA/ARS Children's Nutrition Research Center Department of Pediatrics Baylor College of Medicine
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Grusak Michael
Usda/ars Children's Nutrition Research Center Department Of Pediatrics Baylor College Of Medicine
関連論文
- Loss-of-function of a Rice Gibberellin Biosynthetic Gene, GA2O oxidase (GA20ox-2), Led to the Rice 'Green Revolution'
- Functional Analysis of Transgenic Rice (Oryza sativa L.) Transformed with an Arabidopsis thaliana Ferric Reductase (AtFRO2)