The accumulation of iodide by Fucus ceranoides.
نویسنده
چکیده
Calvin, M., Heidelberger, C., Reid, J. C., Tolbert, B. M. & Yankwich, P. E. (1949). Isotopic Carbon. New York: John Wiley and Sons Inc. De Moss, J. A., Swim, H. E. & Krampitz, L. 0. (1955). Bact. Proc. p. 114. Eaton, N. R. (1955). Doctoral Dissertation: University of Washington. Eaton, N. R. & Klein, H. P. (1954). J. Bact. 68, 110. Foulkes, E. C. (1951). Biochem. J. 48, 378. Halvorson, H. 0. & Spiegelman, S. (1952). J. Bact. 64, 207. Horecker, B. L. & Mehler, A. H. (1955). Annu. Rev. Biochem. 24, 207. Isherwood, F. A. & Hanes, C. S. (1953). Biochem. J. 55,824. Krebs, H. A. (1952). Symposium sur le cycle tricarboxylique, 2nd Int. Congr. Biochem., Paris. Lardy, H. A. (1949). Respiratory Enzymes. Minneapolis, Minn.: Burgess Publ. Co. Lynen, F. (1943). Liebigs Ann. 554, 40. Meyerhof, 0. (1951). Canad. J. med. Sci. 29, 63. Meyerhof, O., Ohlmeyer, P. & Mohle, W. (1938). Biochem. Z. 297, 90. Nossal, P. M. (1954a). Biochim. biophy8. Acta, 14, 154. Nossal, P. M. (1954b). Biochim. biophy8. Acta, 15, 594. Novelli, G. D. & Lipmann, F. (1950). J. biol. Chem. 182, 213. Phares, E. F., Mosbach, E. H., Denison, F. W. & Carson, S. F. (1952). Analyt. Chem. 24, 660. Putman, E. W. & Hassid, W. Z. (1952). J. biol. Chem. 196, 749. Reiner, J. M. (1948). Arch. Biochem. 19, 218. Slonimsky, P. (1953). ActualitWs biochim. p. 17. Spiegelman, S. (1945). J. cell. comp. Physiol. 25, 121. Swim, E. H. & Krampitz, L. 0. (1954). J. Bact. 67, 419. Umbreit, W. W., Burris, R. H. & Stauffer, J. F. (1949). Manometric Techniques and Tissue Metabolism. Minneapolis, Minn.: Burgess Publ. Co. Weinhouse, S., Millington, R. H. & Lewis, K. F. (1948). J. Amer. chem. Soc. 70, 3680. Wieland, H. & Wille, F. (1933). Liebigs Ann. 503, 70. Wieland, H. & Wile, F. (1935). Liebigs Ann. 515, 260. Zilversmit, D. B., Chaikoff, I. L., Feller, D. D. & Masoro, E. J. (1948). J. biol. Chem. 176, 389.
منابع مشابه
Accumulation of silver by Fucus spp. (Phaeophyceae) and its toxicity to Fucus ceranoides under different salinity regimes.
Metals constitute an important group of abiotic stressors that elicit stress responses in marine algae that include the production of reactive oxygen species (ROS). Silver (Ag) is a highly toxic metal to organisms but despite this there are relatively few studies on how it affects marine macroalgae (seaweeds). In a landmark study published in 1977 the first information was provided on the accum...
متن کاملIn situ determination of trace elements in Fucus spp. by field-portable-XRF.
Fresh and freeze-dried sample sections of the coastal macroalgae, Fucus serratus and F. vesiculosus, and the brackish water macroalga, F. ceranoides, have been analysed for trace elements by field-portable-X-ray fluorescence (FP-XRF) spectrometry using a Niton XL3t in a low density mode with thickness correction. When analysed fresh in a laboratory accessory stand for a period of 200 seconds, A...
متن کاملMetal accumulation kinetics by the estuarine macroalga, Fucusceranoides
The kinetics of Cu, Cd and Pb accumulation by the macroalga, Fucus ceranoides, was studied under simulated estuarine conditions. Accumulation of Cu and Pb proceeded via a pseudo-first-order reaction that was reversible, suggesting desorption or efflux of accumulated metal, with forward rate constants on the order of 0.1 h 1. For both metals, reaction reversibility increased and the equilibrium ...
متن کاملHighly selective and rapid arsenic removal by metabolically engineered Escherichia coli cells expressing Fucus vesiculosus metallothionein.
An arsenic-chelating metallothionein (fMT) from the arsenic-tolerant marine alga Fucus vesiculosus was expressed in Escherichia coli, resulting in 30- and 26-fold-higher As(III) and As(V) binding, respectively. Coexpression of the As(III)-specific transporter GlpF with fMT further improved arsenic accumulation and offered high selectivity toward As. Resting E. coli cells coexpressing fMT and Gl...
متن کاملStudy of Heavy Metals and Other Elements in Macrophyte Algae Using Energy-dispersive X-ray Fluorescence
Fucus vesiculosus L. seaweeds from three estuarine stations were analysed by X-ray fluorescence, providing results for the concentration of total In order to study the differential accumulation of heavy metals by different parts of Fucus, four different structures of the algae, base, stipe reproductive organs and growing tips, were analysed. Some elements (e.g. Cu and Fe) are preferentially acc...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
برای دانلود متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید
ثبت ناماگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید
ورودعنوان ژورنال:
- The Biochemical journal
دوره 67 3 شماره
صفحات -
تاریخ انتشار 1957