Comparison of light and dark nitrogenase activity in selected soil cyanobacteria
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[1] T. Zaki,et al. Effect of boron and calcium on growth and nitrogen fixation of the blue-green algaCalothrix parietina , 1999, Folia Microbiologica.
[2] M. Čerňáková. Effect of the insecticide nerametrine EK-15 on the activity of soil microorganisms , 1993, Folia Microbiologica.
[3] K. D. Pandey,et al. Nitrogenase activity of the antarctic cyanobacteriumNostoc commune: Influence of temperature , 1991, Folia Microbiologica.
[4] D. Madamwar,et al. Ultrastructure of the cyanobacteriumNostoc muscorum and exploitation of the culture for hydrogen production , 2008, Folia Microbiologica.
[5] F. Chen,et al. Cell differentiation and colony alteration of an edible terrestrial cyanobacteriumNostoc flagelliforme, in liquid suspension cultures , 2008, Folia Microbiologica.
[6] M. Kurucová,et al. Effect of the herbicide bentanex on soil microorganisms and their activity , 2008, Folia Microbiologica.
[7] I. Watanabe,et al. 3. Technologies for utilizing biological nitrogen fixation in wetland rice: Potentialities, current usage, and limiting factors , 1986, Fertilizer research.
[8] L. Drinkwater,et al. Free-living nitrogen-fixing bacteria in temperate cropping systems: Influence of nitrogen source , 1996, Biology and Fertility of Soils.
[9] P. Hrouzek,et al. Nitrogenase activity (acetylene reduction activity) and diversity of six soil Nostoc strains , 2003 .
[10] B. Pan,et al. Response of the Endophytic DiazotrophGluconacetobacter diazotrophicus on Solid Media to Changes in Atmospheric Partial O2 Pressure , 2001, Applied and Environmental Microbiology.
[11] Ian C. Simpson,et al. Effects of pesticides on soil and water microflora and mesofauna in wetland ricefields: a summary of current knowledge and extrapolation to temperate environments , 1994 .
[12] R. Smith,et al. The Effect of Ecdysterone on the Cyanobacterium Nostoc 6720 , 1992 .
[13] M. Šimek,et al. Evidence for abscisic acid-caused enhancement of nitrogenase activity in Trichormus variabilis , 1992 .
[14] J. Komárek,et al. Modern approach to the classification system of Cyanophytes 4 - Nostocales , 1989 .
[15] P. Roger,et al. Technologies for utilizing biological nitrogen fixation in wetland rice: potentialities, current usage, and limiting factors , 1986 .
[16] A. Ernst,et al. Control of hydrogen-dependent nitrogenase activity by adenylates and electron flow in heterocysts of Anabaena variabilis (ATCC 29413) , 1984 .
[17] J. Gallon,et al. Acetylene reduction (nitrogen fixation) by cyanobacteria grown under alternating light-dark cycles , 1981 .
[18] P. Rowell,et al. GLUTAMINE SYNTHETASE AND NITROGENASE ACTIVITY IN THE BLUE‐GREEN ALGA ANABAENA CYLINDRICA , 1977 .
[19] G. Cohen-bazire,et al. Phototrophic prokaryotes: the cyanobacteria. , 1977, Annual review of microbiology.
[20] M. Ohmori,et al. Effect of ammonia on nitrogen fixation by the blue-green alga Anabaena cylindrica , 1974 .
[21] R. Haselkorn,et al. Differentiation in Nostoc muscorum: nitrogenase is synthesized in heterocysts. , 1973, Proceedings of the National Academy of Sciences of the United States of America.
[22] R. Hardy,et al. Applications of the acetylene-ethylene assay for measurement of nitrogen fixation , 1973 .
[23] M. Donze,et al. Localization of Nitrogen Fixation in Anabaena , 1971, Nature.
[24] D. E. Brown. Chapter V Aeration in the Submerged Culture of Micro-organisms , 1970 .
[25] G. E. Fogg,et al. Is the Heterocyst the Site of Nitrogen Fixation in Blue-green Algae? , 1968, Nature.