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1994 | 41 | 1 |
Tytuł artykułu

Siderophore activity in Rhizobium species isolated from different legumes

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Języki publikacji
EN
Abstrakty
EN
Rhizobium strains isolated from nodules of the different legumes including wild-growing plants were examined for their siderophore activity. Fifteen of the 84 screened rhizobial strains were able to grow under conditions of limited iron supply. Nine of them gave orange halos in the assay with Chrom azurol S. Among these strains were Rhizobium sp. (Ononis) and Rhizobium (Genista), producing hydroxamates and phenolates. These compounds could promote the growth of siderophore-negative bacteria on iron-deficient media. The results imply that the hydroxamates from G1 and Ol strains may belong to the monohydroxamate class of siderophores.
Słowa kluczowe
Wydawca
-
Rocznik
Tom
41
Numer
1
Opis fizyczny
p.7-11,fig.
Twórcy
autor
  • M.Curie-Sklodowska University, ul.Akademicka 19, 20-033 Lublin, Poland
autor
autor
autor
Bibliografia
  • 1. Neilands, J.B. (1981) Microbial iron compounds. Annu. Rev. Biochem. 50,715-731.
  • 2. Chimiak, A. (1984) Siderofory - nośniki jonu Żelazowego. Postępy Biochemii 30,435-461.
  • 3. Schwyn, B. & Neilands, J.B. (1987) Universal chemical assay for detection and determination of siderophores. Anal. Biochem. 160,47-56.
  • 4. Guerinot, M.L. (1991) Iron uptake and metabolism in rhizobia/legume symbioses. Plant Soil 130,199-209.
  • 5. Guerinot, M.L, Meidl, E.J. & Plessner, O. (1990) Citrate as a siderophore in Bradyrhizobium japonicum. J. Bacterial. 172,3298-3303.
  • 6. Skorupska, A., Choma, A., Deryło, M. & Lorkiewicz, Z. (1988) Siderophore containing 2,3-d i hydroxy benzoic acid and threonine formed by Rhizobium trifolii. Acta Biochim. Polon. 35,119-130.
  • 7. Vincent, J.M. (1970) A manual for the practical study of root nodule bacteria; in International Biological Programme. Handbook No. 15, Blackwell Sci. Publ. Oxford.
  • 8. Maniatis, T., Fritsch, E.F. & Sambrook, J. (1982) Molecular dotting: a laboratory manual. Cold Spring Harbor, N.Y.
  • 9. Csaky, T.Z. (1948) On the estimation of bound hydroxylamine in biological materials. Acta Chem. Scand. 2,450-454.
  • 10. Gibson, F. & Magrath, D.I. (1969) The isolation and characterization of hydroxamic acid (aero- bactin) formed by Aerobacter aerogenes 62-1. Biochim. Biophys. Acta 192,175-184.
  • 11. Barton, L.L., Fekete, F.A., Vester, C.R., Gill, P.R. & Neilands, J.B. (1992) Physiological chara­cteristics of Rhizobium meliloti 1021 Tn5 mutants with altered rhizobactin activities. J. Plant Nutr. 15,2145-2156.
  • 12. Winkelmann, G. (1986) Iron complex products (siderophores); in Biotechnology (Pape, H. & Rehm, H.J., eds.) vol. 4, pp. 215-243, VCH Verlag, Weinheim.
  • 13. Budzikiewicz, H. (1993) Secondary metabolites from fluorescent pseudomonads. FEMS Microb. Rev. 104, 209-228.
  • 14. Visca, P., Filetici, E., Anastasio, M.P., Vertriani, G, Fantasio, M. & Orsi, N. (1993) Siderophore production by Salmonella species isolated from different sources. FEMS Microbiol. Lett. 79, 225-232.
  • 15. Jalal, M.A.F., Love, S.K. & Helm, D. (1987) Siderophore mediated iron (III) uptake in Glicocladium viretis. 2. Role of ferric mono- and dihydroxamates as iron transport agents. /. Inorg. Biochem. 29,259-267.
  • 16. Thieken, A. & Winkelmann, G. (1993) A novel bioassay for the detection of siderophores containing keto-hydroxy bidentate ligands. FEMS Microbiol, belt. Ill, 281-286.
  • 17. Skorupska, A., Derylo, M. &: Lorkiewicz, Z. (1989) Siderophore production and utilization by Rhizobium trifolii. Biol. Metals, 2,45-49.
  • 18. Plessner, O., Klopatch, T. & Guerinot, M.L. (1993) Siderophore utilization by Bradyrhi­zobium japonicum. Appl. Environ. Microb. 59, 168-169.
Typ dokumentu
Bibliografia
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