BIBLIOGRAFÍA

 

 

Benoit L.F. y Berry A.M. (1997) Flavonoid-like compounds from seeds of red alder (Alnus rubra) influence host nodulation by Frankia (Actinomycetales). Physiol. Plant. 99: 588-593.

 

Berg R. (1999) Cytoplasmic bridge formation in the nodule apex of actinorhizal root nodules. Can. J. Bot. 77: 1351-1357.

 

Berry A.M., Moreau R.A. y Jones A.D. (1991) Bacteriohopanetetrol: abundant lipid in Frankia cells and in nitrogen-fixing nodule tissue. Plant Physiol. 95: 111-115.

 

Berry A., Sunell L. (1990) The infection process and nodule development. En C. Schwintzer, J. Tjepkema, eds, The biology of Frankia and Actinorhizal Plants, Ed. 1ª. Academic Press, London, pp 61-81.

 

Brunchorst J. (1886-1888) Über einige Wurzenlanschwellungen, besonders diejenigen von Alnus und den Eleagnaceen. Unters. Bot. Inst. Tubingen 2: 150-177.

 

Callaham D., Del Tredici P. y Torreya J.G. (1978) Isolation and cultivation in vitro of the actinomycete causing root nodulation in roots of Comptonia. Science 199: 899-902.

 

Chaia E. (1998) Isolation of an effective strain of Frankia from nodules of Discaria trinervis (Rhamnaceae). Plant Soil 205: 99-102.

 

Clawson M., Carú M. y Benson D. (1998) Diversity of Frankia strains in root nodules of plants from the families Elaeagnaceae and Rhamnaceae. Appl. Environ. Microbiol. 64: 3359-3543.

 

Galtieri G. y Bisseling T. (2000) The evolution of nodulation. Plant Mol. Biol. 42: 181-194.

 

Haines T. (2001) Do sterols reduce proton and sodium leaks through lipid bilayers? Prog. Lipid Res. 40: 299-324.

 

Harris S. y Silvester W. (1992) Nitrogenase activity and growth of Frankia in batch and continuous culture. Can. J. Microbiol. 38: 296-302.

 

Huss-Dannel K. (1990) The physiology of actinorhizal nodules. En: C. Schwintzer, J. Tjepkema, eds, The biology of Frankia and Actinorhizal Plants, Ed. 1ª. Academic Press, London, pp 129-156.

 

Jürgens U., Simonin P. y Rohmer M. (1992) Localisation and distribution of hopanoids in membrane systems of the cyanobacterium Synechocystis PCC 6714. FEMS Microbiol. Lett. 92: 285-288.

 

Kleeman G., Alskog G., Berry A. y Huss-Danell K. (1994) Lipid composition and nitrogenase activity of symbiotic Frankia (Alnus incana) in response to different oxygen concentrations. Protoplasma 183: 107-115.

 

Lambein F. y Wolk C.P. (1973) Structural studies on the glycolipids from the envelope of the heterocyst of Anabaena cylindrica. Biochem. 12: 791-798.

 

Laplaze L., Duhoux E., Franche C., Frutz T., Svistoonoff S., Bisseling T., Bogusz D. y Pawloski K. (2000) Casuarina glauca prenodule cells display the same differenttiation as the corresponding nodule cells. Mol. Plant Microbe. Interact. 13: 107-112.

 

Llopiz P., Jürgens U. y Rohmer M. (1996) Prokaryotic triterpenoids: bacteriohopanetetrol glycuronosides from the thermophilic cyanobacterium Synecococcus PCC 6907. FEMS Microbiol. Lett. 140: 199-202.

 

Meyen J. (1829) Ûber das Hervorwachsen parasitischer Gebilde aus den Wurzeln anderer Pflanzen. Flora (Jena) 12: 49-64.

 

Murry M.A., Fontaine M.S. y Torrey J.G. (1984) Growth kinetics and nitrogenase induction in Frankia sp. HPF ArI5 grown in batch culture. Plant Soil 78: 61-78.

 

Nalin R., Putra S.R., Domenach A.M., Rohmer M., Gourbiere F. y Berry A.M. (2000) High hopanoid/total lipids ratio in Frankia mycelia is not related to the nitrogen status. Microbiol. 146: 3013-3019.

 

Nittayajarn A. y Baker D.D. (1989) Methods for the quantification of Frankia cell biomass. Plant Soil 118: 199-204.

 

Parsons R., Silvester W.B., Harris S., Gruijters W.T.M. y Bullivant S. (1987) Frankia vesicles provide inducible and absolute oxygen protection for nitrogenase.

 

Quispel A. (1990) Discoveries, discussions and trends in research on actinorhizal root nodule symbioses before 1978. En: C. Schwintzer, J. Tjepkema, eds, The biology of Frankia and Actinorhizal Plants, Ed. 1ª. Academic Press, London, pp 15-33.

 

Schultz N. y Benson D. (1989) Developmental potential of Frankia vesicles. J. Bacteriol. 171: 6873-6877.

 

Silvester W., Harris S. (1990) Oxygen regulation and hemoglobin. En: C. Schwintzer, J. Tjepkema, eds, The biology of Frankia and Actinorhizal Plants, Ed. 1ª. Academic Press, London, pp 157-176.

 

Torrey J.G. y Callaham D. (1982) Structural features of the vesicle of Frankia sp. CpI1 in culture. Can. J. Microbiol. 28: 749-757.

 

Tunlid A., Schultz N.A., Benson D.R., Steele D.B. y White D.C. (1989) Differences in fatty acid composition between vegetative cells and N2-fixing vesicles of Frankia  sp. Strain CpI1. Proc. Natl. Acad. Sci. U S A 86: 3399-3403.

 

Valverde C. y Wall L.G. (1999) Time course of nodule development in the Discaria trinervis (Rhamnaceae) - Frankia symbiosis. New Phytol. 141: 345-354.

 

Van Gheule M., Løvaas E., Ringø E. y Solheim B. (1997) Early interactions between Alnus glutinosa and Frankia strain ArI3. Production and specificity of root hair deformation factor(s). Physiol. Plant. 99: 579-587.

 

Wheeler C., Miller J. (1990) Current and potential uses of actinorhizal plants in Europe. En: C. Schwintzer, J. Tjepkema, eds, The biology of Frankia and Actinorhizal Plants, Ed. 1ª. Academic Press, London, pp 365-389.

 

Wolk C. (1982) Heterocysts. En: N. Carr, B. Whitton, eds, The biology of cyanobacteria. Blackwell Scientific Publications, Oxford, pp 359-386.

 

Zehr J.P., Mellon J.M. y Zani S. (1998) New nitrogen-fixing microorganisms detected in oligotrophic oceans by amplification of nitrogenase (nifH) genes. Appl. Environ. Microbiol. 64: 3444-3450.