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Citation: K. Higuchi et al., Nicotianamine synthase gene expression differs in barley and rice under Fe-deficient conditions, PLANT J, 25(2), 2001, pp. 159-167
Authors:
Higuchi, K
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Citation: K. Higuchi et al., The expression of a barley HvNAS1 nicotianamine synthase gene promoter-gusfusion gene in transgenic tobacco is induced by Fe-deficiency in roots, BIOS BIOT B, 65(7), 2001, pp. 1692-1696
Authors:
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Nakanishi, H
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Citation: T. Kobayashi et al., In vivo evidence that Ids3 from Hordeum vulgare encodes a dioxygenase thatconverts 2 '-deoxymugineic acid to mugineic acid in transgenic rice, PLANTA, 212(5-6), 2001, pp. 864-871
Authors:
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Citation: A. Hisada et al., Technical advance: An automated device for cryofixation of specimens of electron microscopy using liquid helium, PLANT CEL P, 42(9), 2001, pp. 885-893
Authors:
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Citation: Y. Hayashi et al., A proteinase-storing body that prepares for cell death or stresses in the epidermal cells of Arabidopsis, PLANT CEL P, 42(9), 2001, pp. 894-899
Authors:
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Citation: K. Singh et al., Root response deficiency mechanism of iron acquisition: Current overview, PERSPECTIVES ON THE MICRONUTRIENT NUTRITION OF CROPS, 2001, pp. 119-136
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Citation: E. Yoshimura et al., Characterization of the chemical state of iron in the leaves of wild-type tomato and of a nicotianamine-free mutant Chloronerva by X-ray absorption near-edge structure (XANES), PHYTOCH AN, 11(3), 2000, pp. 160-162
Authors:
Singh, K
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Citation: K. Singh et al., Ability of ancestral wheat species to secrete mugineic acid family phytosiderophores in response to iron deficiency., J PLANT NUT, 23(11-12), 2000, pp. 1973-1981
Authors:
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Yamaguchi, H
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Mori, S
Citation: H. Nakanishi et al., Two dioxygenase genes, Ids3 and Ids2, from Hordeum vulgare are involved inthe biosynthesis of mugineic acid family phytosiderophores, PLANT MOL B, 44(2), 2000, pp. 199-207
Authors:
Yamaguchi, H
Nakanishi, H
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Citation: H. Yamaguchi et al., Induction of the IDI1 gene in Fe-deficient barley roots: A gene encoding aputative enzyme that catalyses the methionine salvage pathway for phytosiderophore production, SOIL SCI PL, 46(1), 2000, pp. 1-9
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Nakanishi, H
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Mori, S
Citation: H. Yamaguchi et al., Isolation and characterization of IDI2, a new Fe-deficiency-induced cDNA from barley roots, which encodes a protein related to the alpha subunit of eukaryotic initiation factor 2B (eIF2B alpha), J EXP BOT, 51(353), 2000, pp. 2001-2007
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Yamaguchi, H
Nakanishi, H
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Mori, S
Citation: R. Itai et al., Induced activity of adenine phosphoribosyltransferase (APRT) in iron-deficient barley roots: a possible role for phytosiderophore production, J EXP BOT, 51(348), 2000, pp. 1179-1188
Authors:
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Mori, S
Citation: K. Higuchi et al., Presence of nicotianamine synthase isozymes and their homologues in the root of graminaceous plants, SOIL SCI PL, 45(3), 1999, pp. 681-691
Citation: M. Kaneko et al., Time course study of aluminum-induced callose formation in barley roots asobserved by digital microscopy and low-vacuum scanning electron microscopy, SOIL SCI PL, 45(3), 1999, pp. 701-712
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Mori, S
Citation: M. Takahashi et al., Cloning two genes for nicotianamine aminotransferase, a critical enzyme iniron acquisition (strategy II) in graminaceous plants, PLANT PHYSL, 121(3), 1999, pp. 947-956
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Higuchi, K
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Nakanishi, H
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Citation: K. Higuchi et al., Cloning of nicotianamine synthase genes, novel genes involved in the biosynthesis of phytosiderophores, PLANT PHYSL, 119(2), 1999, pp. 471-479
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Citation: T. Sakaguchi et al., The role of potassium in the secretion of mugineic acids family phytosiderophores from iron-deficient barley roots, PLANT SOIL, 215(2), 1999, pp. 221-227