Nitrogen metabolism in the mudskipper, Periophthalmus cantonensis: A role of free amino acids in detoxication of ammonia produced during its terrestrial life
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[1] W. Hanke,et al. Cell volume regulation in juveniles of xenopus laevis in hypertonic urea solution , 1980 .
[2] T. Vislie. Cell volume regulation in isolated, perfused heart ventricle of the flounder (Platichthys flesus) , 1980 .
[3] H. Morii. Changes with time of ammonia and urea concentrations in the blood and tissue of mudskipper fish, Periophthalmus cantonensis and Boleophthalmus pectinirostris kept in water and on land , 1979 .
[4] O. Tamura,et al. Ammonia and urea excretion from mudskipper fishes Periophthalmus cantonensis and Boleophthalmus pectinirostris transferred from land to water , 1979 .
[5] P. W. Hochachka,et al. Kinetic properties of glutamate dehydrogenase from the gills of Arapaima gigas and Osteoglossum bicirrhosum , 1978 .
[6] P. W. Hochachka,et al. Control of ammoniagenesis in the kidney of water- and air-breathing osteoglossids: characterization of glutamate dehydrogenase , 1978 .
[7] M. Gordon,et al. Aspects of the physiology of terrestrial life in amphibious fishes. III. The Chinese mudskipper Periophthalmus cantonensis. , 1978, The Journal of experimental biology.
[8] O. Tamura,et al. Nitrogen excretion of mudskipper fish Periophthalmus cantonensis and Boleophthalmus pectinirostris in water and on land , 1978 .
[9] R. Gregory. Synthesis and total excretion of waste nitrogen by fish of the periophthalmus (mudskipper) and scartelaos families , 1977 .
[10] R. Ahokas,et al. The effect of salinity and temperature on intracellular osmoregulation and muscle free amino acids in Fundulus diaphanus. , 1977, Comparative biochemistry and physiology. A, Comparative physiology.
[11] S. Tamura,et al. Respiration of the amphibious fishes Periophthalmus cantonensis and Boleophthalmus chinensis in water and on land. , 1976, The Journal of experimental biology.
[12] E. Schoffeniels. Adaptations with respect to salinity. , 1976, Biochemical Society symposium.
[13] S. Konosu,et al. Distribution of nitrogenous constituents in the muscle extracts of eight species of fish , 1974 .
[14] F. R. Fox,et al. The effect of changes in external salinity on the non-protein nitrogenous constituents of parietal muscle from Agonus cataphractus. , 1974, Comparative biochemistry and physiology. A, Comparative physiology.
[15] S. Venkatachari. Effect of salinity adaptation on nitrogen metabolism in the freshwater fish Tilapia mossambica. I. Tissue protein and amino acid levels , 1974 .
[16] H. Uchiyama,et al. Partial freezing as a means of preserving fish freshness, 1: Changes in free amino acids, TMA-N, ATP and its related compounds, and nucleic acids during storage. , 1974 .
[17] 文昭 宇田,et al. 連続濃度勾配カラムクロマトグラフィーによるイノシン,ヒポキサンチン,尿酸およびヌクレオチドの迅速定量法 , 1973 .
[18] P. Janssens. The influence of ammonia on the transition to ureotelism in Xenopus laevis , 1972 .
[19] J. Lowenstein,et al. Ammonia production in muscle and other tissues: the purine nucleotide cycle. , 1972, Physiological reviews.
[20] A. Huggins,et al. The effect of short-term changes in the external salinity on the levels of the non-protein nitrogenous compounds and the ornithine-urea cycle enzymes in Rana cancrivora. , 1972, Comparative biochemistry and physiology. B, Comparative biochemistry.
[21] A. Huggins,et al. The changes in the non-protein nitrogenous constituents of muscle during the adaptation of the eel Anguilla anguilla L. from fresh water to sea water , 1971 .
[22] N. Seki. 3. Nucleotides in Aquatic Animals and Seaweeds , 1971 .
[23] L. Goldstein,et al. Accelerated synthesis of urea in Xenopus laevis during osmotic stress. , 1970, The American journal of physiology.
[24] L. Goldstein,et al. Renal function during osmotic stress in the aquatic toad Xenopus laevis. , 1970, The American journal of physiology.
[25] M S Gordon,et al. Aspects of the physiology of terrestrial life in amphibious fishes. II. The Chilean clingfish, Sicyases sanguineus. , 1969, The Journal of experimental biology.
[26] R. A. Bloomfield,et al. Ammonia toxicity in selected fishes , 1969 .
[27] V. Tucker,et al. Further Observations on the Physiology of Salinity Adaptation in the Crab-Eating Frog (Rana Cancrivora) , 1968 .
[28] C. Coe,et al. Amino acid metabolism and urea synthesis in naturally aestivating Xenopus laevis. , 1967, Comparative biochemistry and physiology.
[29] N. Kaplan,et al. Purification and kinetic characteristics of dogfish liver glutamate dehydrogenase. , 1967, The Journal of biological chemistry.
[30] L. Goldstein,et al. Glutamate dehydrogenase and ammonia production in the eel (Anguilla rostrata). , 1966, Comparative biochemistry and physiology.
[31] T. Sagi. Determination of ammonia in sea water by the indophenol method and its application to the coastal and offshore waters , 1966 .
[32] K. Fugelli,et al. The osmotic adjustment in the euryhaline teleosts, the flounder, Pleuronectes flesus L. and the three-spined stickleback, Gasterosteus aculeatus L. , 1965, Comparative biochemistry and physiology.
[33] P. Janssens. THE METABOLISM OF THE AESTIVATING AFRICAN LUNGFISH. , 1964, Comparative biochemistry and physiology.
[34] M. Cragg,et al. The adaptation of amphibian waste nitrogen excretion to dehydration. , 1961, Comparative biochemistry and physiology.
[35] J. Bystedt,et al. Determination of trimethylamine oxide in fish muscle , 1959 .
[36] O. H. Lowry,et al. Protein measurement with the Folin phenol reagent. , 1951, The Journal of biological chemistry.