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Volumn 174, Issue 2, 2007, Pages 304-310

Identification of two novel phytosiderophores secreted by perennial grasses

Author keywords

Iron deficiency; Mugineic acid; Perennial grass; Phytosiderophore; Secretion

Indexed keywords

IRON; PLANT EXUDATE; SIDEROPHORE; UNCLASSIFIED DRUG;

EID: 33947388330     PISSN: 0028646X     EISSN: 14698137     Source Type: Journal    
DOI: 10.1111/j.1469-8137.2007.02056.x     Document Type: Article
Times cited : (53)

References (31)
  • 1
    • 33749528127 scopus 로고    scopus 로고
    • Phytosiderophores released by graminaceous species promote Fe-uptake in citrus
    • Cesco S, Rombola AD, Tagliavini M, Varanini Z, Pinton R. 2006. Phytosiderophores released by graminaceous species promote Fe-uptake in citrus. Plant and Soil 287: 223-233.
    • (2006) Plant and Soil , vol.287 , pp. 223-233
    • Cesco, S.1    Rombola, A.D.2    Tagliavini, M.3    Varanini, Z.4    Pinton, R.5
  • 2
  • 4
    • 0342795202 scopus 로고
    • The ecological significance of iron mobilization in wild grasses
    • Gries D, Runge M. 1992. The ecological significance of iron mobilization in wild grasses. Journal of Plant Nutrition 15: 1727-1737.
    • (1992) Journal of Plant Nutrition , vol.15 , pp. 1727-1737
    • Gries, D.1    Runge, M.2
  • 5
    • 0033080541 scopus 로고    scopus 로고
    • Cloning of nicotianamine synthase genes, novel genes involved in the biosynthesis of phytosiderophores
    • Higuchi K, Suzuki K, Nakanishi H, Yamaguchi H, Nishizawa NK, Mori S. 1999. Cloning of nicotianamine synthase genes, novel genes involved in the biosynthesis of phytosiderophores. Plant Physiology 119: 471-479.
    • (1999) Plant Physiology , vol.119 , pp. 471-479
    • Higuchi, K.1    Suzuki, K.2    Nakanishi, H.3    Yamaguchi, H.4    Nishizawa, N.K.5    Mori, S.6
  • 7
    • 0023666154 scopus 로고
    • Separation and determination of mugineic acid and its analogues by high-performance liquid chromatography
    • Kawai S, Sato Y, Takagi S, Nomoto K. 1987. Separation and determination of mugineic acid and its analogues by high-performance liquid chromatography. Journal of Chromatography 391: 325-327.
    • (1987) Journal of Chromatography , vol.391 , pp. 325-327
    • Kawai, S.1    Sato, Y.2    Takagi, S.3    Nomoto, K.4
  • 8
    • 0035040041 scopus 로고    scopus 로고
    • In vivo evidence that Ids3 from Hordeum vulgare encodes a dioxygenase that converts 2′-deoxymugineic acid to mugineic acid in transgenic rice
    • Kobayashi T, Nakanishi H, Takahashi M, Kawasaki S, Nishizawa NK, Mori S. 2001. In vivo evidence that Ids3 from Hordeum vulgare encodes a dioxygenase that converts 2′-deoxymugineic acid to mugineic acid in transgenic rice. Planta 212: 864-871.
    • (2001) Planta , vol.212 , pp. 864-871
    • Kobayashi, T.1    Nakanishi, H.2    Takahashi, M.3    Kawasaki, S.4    Nishizawa, N.K.5    Mori, S.6
  • 9
    • 18444362441 scopus 로고    scopus 로고
    • Expression of iron-acquisition-related genes in iron-deficient rice is co-ordinately induced by partially conserved iron-deficiency-responsive elements
    • Kobayashi T, Suzuki M, Inoue H, Itai RN, Takahashi M, Nakanishi H, Mori S, Nishizawa NK. 2005. Expression of iron-acquisition-related genes in iron-deficient rice is co-ordinately induced by partially conserved iron-deficiency-responsive elements. Journal of Experimental Botany 56: 1305-1316.
    • (2005) Journal of Experimental Botany , vol.56 , pp. 1305-1316
    • Kobayashi, T.1    Suzuki, M.2    Inoue, H.3    Itai, R.N.4    Takahashi, M.5    Nakanishi, H.6    Mori, S.7    Nishizawa, N.K.8
  • 10
    • 26444491651 scopus 로고    scopus 로고
    • Plant root responses to three abundant soil minerals: Silicon, aluminum and iron
    • Ma JF. 2005. Plant root responses to three abundant soil minerals: silicon, aluminum and iron. Critical Review of Plant Science 24: 267-281.
    • (2005) Critical Review of Plant Science , vol.24 , pp. 267-281
    • Ma, J.F.1
  • 11
    • 0027145256 scopus 로고
    • Specific recognition of mugineic acid-ferric complex
    • Ma JF, Kusano G, Kimura S, Nomoto K. 1993. Specific recognition of mugineic acid-ferric complex. Phytochemistry 34: 599-603.
    • (1993) Phytochemistry , vol.34 , pp. 599-603
    • Ma, J.F.1    Kusano, G.2    Kimura, S.3    Nomoto, K.4
  • 12
    • 0026489171 scopus 로고
    • Biosynthesis of avenic acid A, a ferric chelating substance secreted from Avena sativa L
    • Ma JF, Nomoto K. 1992. Biosynthesis of avenic acid A, a ferric chelating substance secreted from Avena sativa L. Chemical and Pharmaceutical Bulletin 40: 2888-2890.
    • (1992) Chemical and Pharmaceutical Bulletin , vol.40 , pp. 2888-2890
    • Ma, J.F.1    Nomoto, K.2
  • 13
    • 0001431019 scopus 로고
    • Two related biosynthetic pathways for mugineic acids in gramineous plants
    • Ma JF, Nomoto K. 1993. Two related biosynthetic pathways for mugineic acids in gramineous plants. Plant Physiology 102: 373-378.
    • (1993) Plant Physiology , vol.102 , pp. 373-378
    • Ma, J.F.1    Nomoto, K.2
  • 14
    • 0028133953 scopus 로고
    • Biosynthetic pathway of 3-epihydroxymugineic acid and 3-hydroxymugineic acid in gramineous plants
    • Ma JF, Nomoto K. 1994a. Biosynthetic pathway of 3-epihydroxymugineic acid and 3-hydroxymugineic acid in gramineous plants. Soil Science and Plant Nutrition 40: 311-317.
    • (1994) Soil Science and Plant Nutrition , vol.40 , pp. 311-317
    • Ma, J.F.1    Nomoto, K.2
  • 15
    • 0027977679 scopus 로고
    • 15N-labeled methionine molecules during the biosynthesis of 2′-deoxymugineic acid in roots of wheat
    • 15N-labeled methionine molecules during the biosynthesis of 2′-deoxymugineic acid in roots of wheat. Plant Physiology 105: 607-610.
    • (1994) Plant Physiology , vol.105 , pp. 607-610
    • Ma, J.F.1    Nomoto, K.2
  • 16
    • 0030513917 scopus 로고    scopus 로고
    • Effective regulation of iron acquisition in graminaceous plants. The role of mugineic acids as phytosiderophores
    • Ma JF, Nomoto K. 1996. Effective regulation of iron acquisition in graminaceous plants. The role of mugineic acids as phytosiderophores. Physiologia Plantarum 97: 609-617.
    • (1996) Physiologia Plantarum , vol.97 , pp. 609-617
    • Ma, J.F.1    Nomoto, K.2
  • 17
    • 0029014791 scopus 로고
    • Biosynthesis of phytosiderophores, mugineic acids, associated with methionine cycling
    • Ma JF, Shinada T, Matsuda C, Nomoto K. 1995. Biosynthesis of phytosiderophores, mugineic acids, associated with methionine cycling. Journal of Biological Chemistry 270: 16549-16554.
    • (1995) Journal of Biological Chemistry , vol.270 , pp. 16549-16554
    • Ma, J.F.1    Shinada, T.2    Matsuda, C.3    Nomoto, K.4
  • 18
    • 0007519784 scopus 로고    scopus 로고
    • Genes controlling hydroxylations of phytosiderophores are located on different chromosomes in barley (Hordeum vulgare L.)
    • Ma JF, Taketa S, Chang YC, Iwashita T, Matsumoto H, Takeda K, Nomoto K. 1999. Genes controlling hydroxylations of phytosiderophores are located on different chromosomes in barley (Hordeum vulgare L.). Planta 207: 590-596.
    • (1999) Planta , vol.207 , pp. 590-596
    • Ma, J.F.1    Taketa, S.2    Chang, Y.C.3    Iwashita, T.4    Matsumoto, H.5    Takeda, K.6    Nomoto, K.7
  • 19
    • 0344153956 scopus 로고    scopus 로고
    • Characterization of phytosiderophore secretion under Fe deficiency stress in Festuca rubra
    • Ma JF, Ueno H, Ueno D, Rombola AD, Iwashita T. 2003. Characterization of phytosiderophore secretion under Fe deficiency stress in Festuca rubra. Plant and Soil 256: 131-137.
    • (2003) Plant and Soil , vol.256 , pp. 131-137
    • Ma, J.F.1    Ueno, H.2    Ueno, D.3    Rombola, A.D.4    Iwashita, T.5
  • 20
    • 0001457395 scopus 로고
    • Methionine as a dominant precursor of phytosiderophore in graminaceae plants
    • Mori S, Nishizawa N. 1987. Methionine as a dominant precursor of phytosiderophore in graminaceae plants. Plant and Cell Physiology 28: 1081-1092.
    • (1987) Plant and Cell Physiology , vol.28 , pp. 1081-1092
    • Mori, S.1    Nishizawa, N.2
  • 22
    • 0033675662 scopus 로고    scopus 로고
    • Two dioxygenase genes, ids3 and ids2, from Hordeum vulgare are involved in the biosynthesis of mugineic acid family phytosiderophores
    • Nakanishi H, Yamaguchi H, Umehara Y, Nishizawa NK, Chino M, Mori S. 2000. Two dioxygenase genes, ids3 and ids2, from Hordeum vulgare are involved in the biosynthesis of mugineic acid family phytosiderophores. Plant Molecular Biology 44: 199-207.
    • (2000) Plant Molecular Biology , vol.44 , pp. 199-207
    • Nakanishi, H.1    Yamaguchi, H.2    Umehara, Y.3    Nishizawa, N.K.4    Chino, M.5    Mori, S.6
  • 23
    • 0036010819 scopus 로고    scopus 로고
    • cDNA microarray analysis of gene expression during Fe-deficiency stress in barley suggests that polar transport of vesicles is implicated in phytosiderophore secretion in Fe-deficient barley roots
    • Negishi T, Nakanishi H, Yazaki J, Kishimoto N, Fujii F, Shimbo K, Yamamoto K, Sakata K, Sasaki T, Kikuchi S, Mori S, Nishizawa NK. 2002. cDNA microarray analysis of gene expression during Fe-deficiency stress in barley suggests that polar transport of vesicles is implicated in phytosiderophore secretion in Fe-deficient barley roots. Plant Journal 30: 83-94.
    • (2002) Plant Journal , vol.30 , pp. 83-94
    • Negishi, T.1    Nakanishi, H.2    Yazaki, J.3    Kishimoto, N.4    Fujii, F.5    Shimbo, K.6    Yamamoto, K.7    Sakata, K.8    Sasaki, T.9    Kikuchi, S.10    Mori, S.11    Nishizawa, N.K.12
  • 24
    • 0006149662 scopus 로고
    • Structure of 2′-deoxymugineic acid, a novel amino acid possessing an iron-chelating activity
    • Nomoto K, Yoshioka H, Arima M, Fushiya S, Takagi S, Takemoto T. 1981. Structure of 2′-deoxymugineic acid, a novel amino acid possessing an iron-chelating activity. Chimia 35: 249-250.
    • (1981) Chimia , vol.35 , pp. 249-250
    • Nomoto, K.1    Yoshioka, H.2    Arima, M.3    Fushiya, S.4    Takagi, S.5    Takemoto, T.6
  • 25
    • 0002286083 scopus 로고
    • Evidence for specific uptake system for iron phytosiderophores in roots of grasses
    • Römheld V, Marschner H. 1986. Evidence for specific uptake system for iron phytosiderophores in roots of grasses. Plant Physiology 80: 175-180.
    • (1986) Plant Physiology , vol.80 , pp. 175-180
    • Römheld, V.1    Marschner, H.2
  • 26
    • 0000623913 scopus 로고
    • Biosynthesis of phytosiderophore. In vitro biosynthesis of 2′-deoxymugineic acid from 1-methionine and nicotianamine
    • Shojima S, Nishizawa NK, Fushiya S, Nozoe S, Irifune T, Mori S. 1990. Biosynthesis of phytosiderophore. In vitro biosynthesis of 2′-deoxymugineic acid from 1-methionine and nicotianamine. Plant Physiology 93: 1497-1503.
    • (1990) Plant Physiology , vol.93 , pp. 1497-1503
    • Shojima, S.1    Nishizawa, N.K.2    Fushiya, S.3    Nozoe, S.4    Irifune, T.5    Mori, S.6
  • 27
    • 84950452568 scopus 로고
    • Naturally occurring iron-chelating compounds in oat- and rice-root washing
    • Takagi S. 1976. Naturally occurring iron-chelating compounds in oat- and rice-root washing. Soil Science and Plant Nutrition 22: 423-433.
    • (1976) Soil Science and Plant Nutrition , vol.22 , pp. 423-433
    • Takagi, S.1
  • 28
    • 84948277019 scopus 로고
    • Physiological aspects of mugineic acid, a possible phytosiderophore of gramineous plant
    • Takagi S, Nomoto K, Takemoto K. 1984. Physiological aspects of mugineic acid, a possible phytosiderophore of gramineous plant. Journal of Plant Nutrition 7: 469-477.
    • (1984) Journal of Plant Nutrition , vol.7 , pp. 469-477
    • Takagi, S.1    Nomoto, K.2    Takemoto, K.3
  • 29
    • 0033230799 scopus 로고    scopus 로고
    • Cloning two genes for nicotianamine aminotransferase, a critical enzyme in iron acquisition (Strategy II) in graminaceous plants
    • Takahashi M, Yamaguchi H, Nakanishi H, Shioiri T, Nishizawa NK, Mori S. 1999. Cloning two genes for nicotianamine aminotransferase, a critical enzyme in iron acquisition (Strategy II) in graminaceous plants. Plant Physiology 121: 947-956.
    • (1999) Plant Physiology , vol.121 , pp. 947-956
    • Takahashi, M.1    Yamaguchi, H.2    Nakanishi, H.3    Shioiri, T.4    Nishizawa, N.K.5    Mori, S.6
  • 31
    • 0033729613 scopus 로고    scopus 로고
    • Hydroxylated phytosiderophore species possess an enhanced chelate stability and affinity for iron (III)
    • von Wiren N, Khodr H, Hider RC. 2000. Hydroxylated phytosiderophore species possess an enhanced chelate stability and affinity for iron (III). Plant Physiology 124: 1149-1158.
    • (2000) Plant Physiology , vol.124 , pp. 1149-1158
    • von Wiren, N.1    Khodr, H.2    Hider, R.C.3


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