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Physiology, enzyme production, and zoospore behavior of ba trachochytrium dendroba tidis, a chytrid pathogenic to amphibians /Piotrowski, Jeffery Scott, January 2002 (has links) (PDF)
Thesis (M.S.) in Botany and Plant Pathology--University of Maine, 2002. / Includes vita. Includes bibliographical references (leaves 67-72 ).
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Sugar and amino acid binding to membrane vesicles and its relation to transport in Alteromonas haloplanktis, 214.Gerson, Richard K. January 1980 (has links)
No description available.
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Oxygen metabolism of Neisseria meningitidis.Yu, Ernest Kar-cheung. January 1980 (has links)
The physiology of oxygen metabolism in Group B N. meningitidis was investigated. The respiratory components of the electron transport chain included dehydrogenases, ubiquinone, multiple b- and c-type cytochromes, and cytochromes o and a as terminal oxidases. Independent variations in the respiratory components were determined for cells grown under different conditions of iron concentrations and aeration (including anaerobiosis). Studies on oxidase activities in envelope preparations suggested branching of the respiratory chain at the levels of dehydrogenases, cytochrome b and terminal oxidases. Work on L-cysteine oxidase activity associated with the envelope preparations indicated the presence of an additional "alternate" oxidase insensitive to terminal oxidase inhibitors. A soluble CO- and NO-binding c-type cytochrome was shown to be present in the supernatant fluids and might be involved in an ascorbate-TMPD oxidase activity. A model of a branched electron transport system is proposed. The levels of catalase, peroxidase and superoxide dismutase in the organism were shown to vary with the growth conditions.
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The metabolic function of p-hydroxybenzoic acid and related compounds in micro-organismsWyn Jones, R. G. January 1966 (has links)
No description available.
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Oxygen metabolism of Neisseria meningitidis.Yu, Ernest Kar-cheung. January 1980 (has links)
No description available.
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Sugar and amino acid binding to membrane vesicles and its relation to transport in Alteromonas haloplanktis, 214.Gerson, Richard K. January 1980 (has links)
No description available.
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Biochemical investigations of the adaptive changes in photosynthetic micro-organisms which can also live in the darkSpier, Raymond January 1964 (has links)
No description available.
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Physio-morphological effects of abrupt thermal stress on diatomsLanza, Guy R. 20 May 2010 (has links)
Introduction: Increased temperature as a stress factor in aquatic environments has recently received much attention. Human population growth accompanied by expanded demands for electrical energy has resulted in increased construction of power generating facilities. Conventional fossil fuel power plants are being built to produce many times the electricity of those built in previous years. Nuclear power plants, not economically feasible in small sizes, are being constructed to generate even more electrical energy per unit than the new conventional units. Nuclear power facilities produce heat less efficiently and, thus, require approximately fifty percent more cooling per BTU than usual methods (Kolflat, 1968). Increased exposure of populations and communities of aquatic organisms to thermal pollution can thus be anticipated when natural water systems are utilized as a cooling source.
The majority of research effort relative to the effects of heated waste waters on aquatic systems has been directed towards macro- as opposed to micro-organisms. While the use of microorganisms in general pollution monitoring is not a nevi concept; for examples see Kolkwitz and Marsson (1908); Butcher (1947); Fjerdingstad (1962), most of the existing effort has been in the area of correlation of species to various polluted situations. The major disadvantages of such approaches as well as the use of populations and communities of microorganisms in pollution monitoring are discussed in Cairns and Lanza (1971) and Cairns, etc. (submitted)...
<i>Vita removed Nov. 30, 2011. GMc</i> / Ph. D.
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