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  • Hydrogenase Hydrogen evolution  (1)
  • Induction  (1)
  • 1
    ISSN: 1432-072X
    Keywords: Actinomycetes ; Frankia ; Vesicles ; Nitrogenase ; Localization ; Induction
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract A comparative study was conducted on the effect of NH4Cl on growth, vesicle formation and formation of nitrogenase of Frankia strains Cc1.17 and Cp1.2, derived from root nodules of Colletia cruciata and Comptonia peregrina, respectively. On a medium without combined nitrogen (“P-N”), both strains formed spherical cells, called vesicles, like many other Frankia strains. Data are presented on the number of vesicles per mg protein, after cultivation in media with sodium propionate as C-source without combined nitrogen (“P-N”) or with 0.2 g NH4Cl/l (“P+N”). Strain Cp1.2 as may other Frankia strains, showed on “P+N” medium a very strong reduction of vesicle formation of 99% relative to the number of vesicles formed on “P-N” medium, after 11 days growth. However, in strain Cc11.17 this reduction was only 70%. The occurence of relatively large numbers of vesicles in “P+N” media has not yet been reported for other Frankia strains. No acetylene reduction activity was found in NH 4 + -grown cells. The regulation of induction of nitrogenase in Frankia by NH4Cl was tested by immuno-gelectrophoresis using antisera against nitrogenase of Rhizobium leguminosarum PRE. The component I of the enzyme showed crossreactivity while the component II had only a weak crossreaction. The experiments indicated that no nitrogenase was detectable in the NH 4 + -grown cells. For the localization of nitrogenase, relative amounts of the enzyme were compared in whole cells and vesicle-enriched fractions. Western blots showed a significant enrichment of nitrogenase in the vesicle fractions, which indicated that most of the nitrogenase was localized in the vesicle.
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Plant and soil 52 (1979), S. 571-578 
    ISSN: 1573-5036
    Keywords: Acetylene reduction ; Actinomycetous symbiosis ; Alnus glutinosa ; Hydrogenase Hydrogen evolution ; Hydrogen uptake ; Nitrogen fixation ; Respiration ; Root nodules
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Notes: Summary In the growing season no net H2 evolution is detected when root nodules ofAlnus glutinosa are incubated in air or in argon containing 20% O2. Due to the hydrogenase activity, N2-fixing root nodules consume added H2 at a rate of about 1.4 μmoles H2.g fresh nodule−1.h−1. The uptake of H2 is only found in summer. At the end of the season, in autumn, nodules evolve significant quantities of H2 although the nodules still continue to fix nitrogen. In-vitro studies with fractionated homogenates of summer-harvested nodules show that the recovery of the hydrogenase is high when using methylene-blue or phenazine metasulfate as electron acceptors. No hydrogenase activity is detected in homogenates of autumn-harvested nodules. The hydrogenase is localised in the microsymbiont.
    Type of Medium: Electronic Resource
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