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Urea and selenium nutrition of marine phytoplanton : a physiological and biochemical studyPrice, Neil Martin January 1987 (has links)
Laboratory and field experiments measured urea uptake and assimilation with ¹⁴C⁻ and ¹⁵N-urea and by disappearance of dissolved urea. A modified diacetyl monoxime method was developed, which accurately and precisely determined dissolved urea concentrations in seawater. In the Strait of Georgia, chlorophyll α (chl α) specific uptake rates of ammonium (NH₄⁺) and urea were greatest in stratified water; whereas, chl α specific uptake rates of nitrate (NO₃⁻) were greatest in frontal water. Ammonium and urea regeneration rates were calculated by a mass balance method and the rates were
similar. Differences between measurements of particulate
nitrogen, dissolved NH₄⁺, NO₃⁻ and urea, and ¹⁵N uptake were
used to explain the dominant N transformations in frontal and
stratified seawater. Uptake rates measured by ¹⁴C-urea were
ca. 1.4 times faster than those determined by ¹⁵N-urea in the Sargasso Sea. Turnover times of urea in the surface-mixed layer were ca. 12 h. Within some seawater samples, phytoplankton utilized urea at rates which approximated the maximum rates of utilization. In a nitrate-sufficient culture of Thaiassiosira pseudonana (clone 3H) (Hustedt) Hasle and Heimdal, urea uptake rates measured by three methods disagreed; whereas, no discrepancies occurred in a nitrate-starved culture. NH₄⁺ was released from cells after urea was taken up and was later reabsorbed. A model of urea uptake and assimilation by T. pseudonana is proposed.
An obligate selenium (Se) requirement for growth of T. pseudonana was demonstrated in axenic culture in artificial seawater. The addition of 10⁻⁹ M SeO₃²⁻ to culture medium was sufficient for good growth of this alga; SeO₄²⁻ was only effective at concentrations greater than 10⁻⁷ M. To elucidate
the biochemical role of Se in T. pseudonana, cells were
cultured in medium containing 10⁻⁹ M Na₂ ⁷⁵SeO₃. Two soluble
polypeptides of 21 and 29 kD contained ⁷⁵Se. Glutathione
peroxidase was detected on non-denaturing polyacrylamide gels
and ⁷⁵Se co-migrated with the enzyme. It was concluded that Se is an essential element for growth of T. pseudonana due, in part, to the presence of the selenoenzyme glutathione peroxidase. / Science, Faculty of / Botany, Department of / Graduate
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Modeling variations of the seasonal cycle of plankton production : the Labrador Sea, Labrador Shelf and Hamilton Inlet /Cardoso, Diana, January 2004 (has links)
Thesis (M.Sc.)--Memorial University of Newfoundland, 2004. / Restricted until May 2005. Bibliography: leaves 220-230.
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Annual distribution of phytoplankton in Tolo Harbour: a flow cytometry approachLam, Yung-chun, Nelson., 林勇進. January 2001 (has links)
published_or_final_version / Zoology / Doctoral / Doctor of Philosophy
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An ecosystem dynamics model of Monterey Bay, California /Klein, Lawrence S., January 2002 (has links)
Thesis (M.S.) in Oceanography--University of Maine, 2002. / Includes vita. Bibliography: leaves 72-78.
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Utilization of inorganic and organic nitrogen by phytoplankton off the Washington and Oregon coastsKokkinakis, Steven Andon 31 July 1986 (has links)
Graduation date: 1987
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Implications of the phaeopigment, carbon and nitrogen content of sinking particles for the origin of export production /Downs, Janet Newton, January 1989 (has links)
Thesis (Ph. D.)--University of Washington, 1989. / Vita. Includes bibliographical references (leaves [179]-194).
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Marine phytoplankton primary production and ecophysiology using chlorophyll-A fluorescence /Cosgrove, Jeffrey John. January 2007 (has links)
Thesis (Ph.D.)--Murdoch University. / Thesis submitted to the Division of Science and Engineering. Includes bibliographical references (leaves 217-247).
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The influence of phytoplankton on ocean color spectraMueller, James L. January 1900 (has links)
Thesis (Ph. D.)--Oregon State University, 1974. / "Portion of final report, U.S. Naval Oceanographic Office Contract Number N62306-70-0414". Bibliography : leaves 197-204.
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Modeling plankton community structure under environmental forcing on the southeastern U.S. contintental shelfHaskell, Andrew Glenn Edward, January 1997 (has links)
Originally presented as the author's Thesis (M.S.). / Publication data from cover. Includes bibliographical references (leaves 91-98).
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Cell cycle controls in marine phytoplanktonVaulot, Daniel. January 1900 (has links)
Thesis (Ph. D.)--Massachusetts Institute of Technology and Woods Hole Oceanographic Institution, 1985. / Includes bibliographies.
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