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Carbon-nitrogen requirements for the expression of nitrogenase activity in cultured Parasponia-Rhizobium strain ANU 289
Authors:S S Mohapatra  P M Gresshoff
Institution:(1) Botany Department, Australian National University, 2601 Canberra, A.C.T., Australia;(2) Present address: Fakultät für Biologie (Genetik), Universität Bielefeld, D-4800 Bielefeld, Germany
Abstract:Nutritional factors controlling derepression of nitrogenase activity in Parasponia-Rhizobium strain ANU 289 were studied in stationary and agitated liquid cultures. Altering type and/or concentrations of the constituents of the derepression medium in respect of carbon and nitrogen sources influenced both derepression kinetics as well as the maximal level of activity. Hexose sugars and disaccharides stimulated nitrogenase activity three to six-fold compared to pentose sugars. Activity was also modulated by combining sugars with some organic acids such as succinate, fumarate and pyruvate but not with others (e.g. agr-ketoglutarate, malate, malonate). Of the range of nitrogen sources tested, either casamino acids (at 0.05%, but not at 0.1%), glutamate, proline or to a lesser extent histidine (each at 5 mM N) supported significant derepression of nitrogenase activity. Notably glutamine, urea, alanine, ammonium sulfate, nitrate, nitrite (each at 5 mM N) and yeast extract (0.05%) failed to derepress or support nitrogenase activity. Ammonium (5 mM) abolished established nitrogenase activity of rapidly agitated cultures within 15 h after addition. This inhibitory effect was alleviated by the addition of methionine sulfoximime (10 mM). Thus, in view of strong glutamine effects, ammonium repression appears to be mediated by glutamine and not by ammonium itself.Abbreviations HEPES 4-(2-hydroxyethyl)-1-piperazine-ethane; sulfonic acid] - MOPS 3-(N-morpholino) propane sulphonic acid] - MSX Methionine sulfoximine
Keywords:Nitrogenase activity  Parasponia-Rhizobium  Nutritional requirements  Carbon-nitrogen sources
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