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Bishop, S. H., Greenwalt, D. E., Kapper, M. A., Paynter, K. T. and Ellis, L. L (1994). Metabolic regulation of proline, glycine830and alanine accumulation as intracellular osmolytes in ribbed mussel gill tissue. J. Exp. Zool 268, 151-.

Bradley, T. J. and Phillips, J. E (1975). The secretion of hyperosmotic fluid by the rectum of a saline-water mosquito larva, Aedes taeniorhynchus. J. Exp. Biol 63, 331-.[Abstract/Free Full Text]

Bradley, T. J. and Phillips, J. E (1977). Regulation of rectal secretion in saline-water mosquito larvae living in waters of diverse ionic composition. J. Exp. Biol 66, 83-.[Abstract/Free Full Text]

Bradley, T. J. and Phillips, J. E (1977). The effect of external salinity on drinking rate and rectal secretion in the larvae of the saline-water mosquito Aedes taeniorhynchus. J. Exp. Biol 66, 97-.[Abstract/Free Full Text]

Bradley, T. J. and Phillips, J. E (1977). The location and mechanism of hyperosmotic fluid secretion in the rectum of the saline-water mosquito larvae Aedes taeniorhynchus. J. Exp. Biol 66, 111-.[Abstract/Free Full Text]

Burton, R. S (1991). Regulation of proline synthesis in osmotic response: effects of protein synthesis inhibitors. J. Exp. Zool 259, 272-.

Chamberlin, M. E. and Phillips, J. E (1982). Regulation of hemolymph amino acid levels and active secretion of proline by Malpighian tubules of locusts. Can. J. Zool 60, 2745-.

Cohen, S. A. and Strydom, D. J (1988). Amino acid analysis utilizing phenylisothiocyanate derivatives. Analyt. Biochem 174, 1-.[Medline]

Edwards, H. A (1982). Free amino acids as regulators of osmotic pressure in aquatic insect larvae. J. Exp. Biol 101, 153-.[Abstract/Free Full Text]

Garrett, M. A. and Bradley, T. J (1984). The pattern of osmoregulation in the larvae of the mosquito Culiseta inornata. J. Exp. Biol 113, 133-.[Abstract/Free Full Text]

Garrett, M. A. and Bradley, T. J (1984). Ultrastructure of osmoregulatory organs in larvae of the brackish-water mosquito, Culiseta inornata (Williston). J. Morph 182, 257-.[Medline]

Garrett, M. A. and Bradley, T. J (1987). Extracellular accumulation of proline, serine and trehalose in the haemolymph of osmoconforming brackish-water mosquitoes. J. Exp. Biol 129, 231-.[Abstract/Free Full Text]

Herzog, R. M., Galinski, E. A. and Truber, H. G (1990). Degradation of the compatible solute trehalose in Ectothiorhodospira halochloris : isolation and characterization of trehalase. Arch. Microbiol 153, 600-.

Kempf, B. and Bremer, E (1998). Uptake and synthesis of compatible solutes as microbial stress responses to high-osmolality environments. Arch. Microbiol 170, 319-.[Medline]

Mahan, M. J. and Csonka, L. N (1983). Genetic analysis of the pro BA genes of Salmonella typhimurium : physical and genetic analyses of the cloned pro B+A+genes of Escherichia coli and of a mutant allele that confers proline overproduction and enhanced osmotolerance. J. Bacteriol 156, 1249-.[Abstract/Free Full Text]

Parrou, J. L and Fran\215ois, J (1997). A simplified procedure for a rapid and reliable assay of both glycogen and trehalose in whole yeast cells. Analyt. Biochem 248, 186-.[Medline]

Patrick, M. L. and Bradley, T. J (2000). Regulation of compatible solute accumulation in larvae of the mosquito Culex tarsalis : osmolality versus salinity. J. Exp. Biol 203, 831-.[Abstract]

Phillips, J. E. and Meredith, J (1969). Active sodium and chloride transport by anal papillae of a salt water mosquito larva ( Aedes campestris ). Nature 222, 168-.[Medline]

Rushlow, K. E., Deutch, A. H. and Smith, C. J (1984). Identification of a mutation that relieves gamma-glutamyl kinase from allosteric feedback inhibition by proline. Gene 39, 109-.

Scudder, G. G. E., Jarial, M. S. and Choy, S. K (1972). Osmotic and ionic balance in two species of Cenocorixa (Hemiptera). J. Insect Physiol 18, 883-.

Stobbart, R. H (1971). Evidence for Na+/H+and Cl/HCO3 exchanges during independent sodium and chloride uptake by thelarva of the mosquito Aedes aegypti (L.). J. Exp. Biol 54, 19-.[Abstract/Free Full Text]

Sutcliffe, D. W (1961). Studies on salt and water balance in caddis larvae (Trichoptera). J. Exp. Biol 38, 501-.[Abstract]

Tomenchok, D. M. and Brandriss, M. J (1987). Gene\320enzyme relationships in the proline biosynthetic pathway of Saccharomyces cerevisiae. J. Bacteriol 169, 5364-.[Abstract/Free Full Text]

Whatmore, A. M., Chudek, J. A. and Reed, R. H (1990). The effects of osmotic shock on the intracellular solute pools of Bacillus subtilis. J. Gen. Microbiol 136, 2527-.[Medline]

Wigglesworth, V. B (1933). The effect of salts on the anal gills of the mosquito larva. J. Exp. Biol 10, 1-.[Abstract]

Wigglesworth, V. B (1933). The function of the anal gills of the mosquito larva. J. Exp. Biol 10, 16-.[Abstract]




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