Constitutive Overexpression of the OsNAS Gene Family Reveals Single-Gene Strategies for Effective Iron- and Zinc-Biofortification of Rice Endosperm
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Enzo Lombi | Alexander A. T. Johnson | Mark Tester | M. Tester | J. Stangoulis | E. Lombi | D. Callahan | Bianca Kyriacou | Damien L. Callahan | Lorraine Carruthers | James Stangoulis | A. Johnson | B. Kyriacou | L. Carruthers
[1] S. Mori,et al. Three Nicotianamine Synthase Genes Isolated from Maize Are Differentially Regulated by Iron Nutritional Status , 2003, Plant Physiology.
[2] C. G. Ryan,et al. Quantitative trace element imaging using PIXE and the nuclear microprobe , 2000, Int. J. Imaging Syst. Technol..
[3] W. Pfeiffer,et al. Biofortification: Breeding Micronutrient‐Dense Crops , 2008 .
[4] K. Schreiber,et al. Metal complex formation by nicotianamine, a possible phytosiderophore , 1983, Experientia.
[5] R. Hurrell. Influence of vegetable protein sources on trace element and mineral bioavailability. , 2003, The Journal of nutrition.
[6] S. Mori,et al. Cloning of nicotianamine synthase genes, novel genes involved in the biosynthesis of phytosiderophores. , 1999, Plant physiology.
[7] P. Beyer,et al. Biofortified crops to alleviate micronutrient malnutrition. , 2008, Current opinion in plant biology.
[8] S. Mori,et al. Three rice nicotianamine synthase genes, OsNAS1, OsNAS2, and OsNAS3 are expressed in cells involved in long-distance transport of iron and differentially regulated by iron. , 2003, The Plant journal : for cell and molecular biology.
[9] B. Mcclafferty,et al. From Harvest to Health: Challenges for Developing Biofortified Staple Foods and Determining Their Impact on Micronutrient Status , 2007, Food and nutrition bulletin.
[10] S. Toki,et al. Iron fortification of rice seed by the soybean ferritin gene , 1999, Nature Biotechnology.
[11] Kunisuke Tanaka,et al. Accumulation of phosphorus, magnesium and potassium in developing rice grains: followed by electron microprobe X-ray analysis focusing on the aleurone layer , 1979 .
[12] P. Ouwerkerk,et al. Highly efficient production and characterization of T-DNA plants for rice (Oryza sativa L.) functional genomics , 2003, Theoretical and Applied Genetics.
[13] G. Khush. What it will take to Feed 5.0 Billion Rice consumers in 2030 , 2005, Plant Molecular Biology.
[14] Takayuki Tohge,et al. Rice endosperm iron biofortification by targeted and synergistic action of nicotianamine synthase and ferritin. , 2009, Plant biotechnology journal.
[15] R. Hamer,et al. Milling characteristics and distribution of phytic acid and zinc in long-medium- and short-grain rice , 2008 .
[16] B. Burlingame,et al. Analysis of food composition data on rice from a plant genetic resources perspective , 2003 .
[17] U. Ramakrishnan. Prevalence of micronutrient malnutrition worldwide. , 2002, Nutrition reviews.
[18] S. Mori,et al. Genetically engineered rice containing larger amounts of nicotianamine to enhance the antihypertensive effect. , 2009, Plant biotechnology journal.
[19] S. Mori,et al. Overexpression of the Barley Nicotianamine Synthase Gene HvNAS1 Increases Iron and Zinc Concentrations in Rice Grains , 2009, Rice.
[20] Ingo Potrykus,et al. Fighting Iron Deficiency Anemia with Iron-Rich Rice , 2002, Journal of the American College of Nutrition.
[21] J. Schjoerring,et al. Bio-available zinc in rice seeds is increased by activation tagging of nicotianamine synthase. , 2011, Plant biotechnology journal.
[22] J. Lott,et al. Phytic acid-phosphorus and other nutritionally important mineral nutrient elements in grains of wild-type and low phytic acid (lpa1–1) rice , 2004, Seed Science Research.
[23] F. Krens,et al. Cisgenic plants are similar to traditionally bred plants , 2006, EMBO reports.
[24] Gynheung An,et al. Iron fortification of rice seeds through activation of the nicotianamine synthase gene , 2009, Proceedings of the National Academy of Sciences.
[25] Shioiri,et al. Nicotianamine chelates both FeIII and FeII. Implications for metal transport in plants , 1999, Plant physiology.
[26] S. Kolev,et al. Relationships of nicotianamine and other amino acids with nickel, zinc and iron in Thlaspi hyperaccumulators. , 2007, The New phytologist.
[27] I. Yamaguchi,et al. Highly Sensitive Quantitative Analysis of Nicotianamine Using LC/ESI-TOF-MS with an Internal Standard , 2007, Bioscience, biotechnology, and biochemistry.
[28] E. Yoshimura,et al. Role of nicotianamine in the intracellular delivery of metals and plant reproductive development. , 2003, The Plant cell.
[29] Enzo Lombi,et al. Megapixel imaging of (micro)nutrients in mature barley grains , 2010, Journal of experimental botany.
[30] U. Grossniklaus,et al. A Gateway Cloning Vector Set for High-Throughput Functional Analysis of Genes in Planta[w] , 2003, Plant Physiology.
[31] K. Scheckel,et al. Speciation and distribution of arsenic and localization of nutrients in rice grains. , 2009, The New phytologist.
[32] P. Bauer,et al. The Analysis of Arabidopsis Nicotianamine Synthase Mutants Reveals Functions for Nicotianamine in Seed Iron Loading and Iron Deficiency Responses1[C][W][OA] , 2009, Plant Physiology.
[33] D. P. Siddons,et al. The Maia Spectroscopy Detector System: Engineering for Integrated Pulse Capture, Low-Latency Scanning and Real-Time Processing , 2010 .
[34] H. Anger. Rice. Herausgegeben von B. S. Luh. Vol. I. Production. 2. Aufl. 439 Seiten. Vol. II. Utilization. 2. Aufl. 413 Seiten. AVI Van Nostrand Reinhold, New York 1991. Preis: Band I 123,50 £; Band II 72,50 £ , 1992 .
[35] E. Yoshimura,et al. Increased nicotianamine biosynthesis confers enhanced tolerance of high levels of metals, in particular nickel, to plants. , 2005, Plant & cell physiology.
[36] Irakli Loladze. Rising atmospheric CO2 and human nutrition: toward globally imbalanced plant stoichiometry? , 2002 .
[37] David N. Jamieson,et al. Dynamic analysis: on-line quantitative PIXE microanalysis and its use in overlap-resolved elemental mapping , 1993 .
[38] F. Goto,et al. Iron accumulation does not parallel the high expression level of ferritin in transgenic rice seeds , 2005, Planta.
[39] H. Shou,et al. Nicotianamine, a Novel Enhancer of Rice Iron Bioavailability to Humans , 2010, PloS one.