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1.
Joseph Biodegradation of phenol using bacteria from different brackishwater habitats // Indian J. Mar. Sci., 1999. Vol. 28, N 4.-С.438-442

2.
Joseph Biodegradation of phenol using bacteria from different brackishwater habitats // Indian J. Mar. Sci., 1999. Vol. 28, N 4.-С.438-442

3.
Guerreiro Pedro M. Dynamics of scale regeneration in seawater- and brackish water-acclimated sea bass, Dicentrarchus labrax // Fish Physiol. and Biochem., 2013. Vol. 39, N 4.-С.917-930

4.
Ellis S.C. Effect of initial age variation on production of Florida red tilapia fry a under intensive, brackishwater tank culture // Aquacult. and Fish. Manag., 1993. Vol. 24, N 4.-С.465-471

5.
Effects of acclimation to brackish water on the growth, respiratory metabolism, and swimming performance of young-of-the-year Adriatic sturgeon (Acipenser naccarii) // Can. J. Fish. and Aquat. Sci., 2001. Vol. 58, N 6.-С.1104-1112

6.
Effects of acclimation to brackish water on tolerance of salinity challenge by young-of-the-year Adriatic sturgeon (Acipenser naccarii) // Can. J. Fish. and Aquat. Sci., 2001. Vol. 58, N 6.-С.1113-1121

7.
Exposure to brackish water, upon feeding, leads to enhanced conservation of nitrogen and increased urea synthesis and retention in the Asian freshwater stingray Himantura signifer // J. Exp. Biol., 2006. Vol. 209, N 3.-С.484-492

8.
Elger Glomerular permselectivity to serum proteins in rainbow trout (Salmo gairdneri) // Amer. J. Physiol., 1988. Vol. 255, N 3.-С.R418-R423

9.
Romana-Eguia Maria Rowena R. Growth of five Asian red tilapia strains in saline environments // Aquaculture, 1999. Vol. 173, N 1-4.-С.161-170

10.
Growth performance, osmoregulatory and metabolic modifications in red porgy fry, Pagrus pagrus, under different environmental salinities and stocking densities // Aquacult. Res., 2011. Vol. 42, N 9.-С.1269-1278

11.
Hematology of great sturgeon (Huso huso Linnaeus, 1758) juvenile exposed to brackish water environment // Fish Physiol. and Biochem., 2010. Vol. 36, N 3.-С.655-659

12.
Mukai T. Molecular phylogenetic perspective on freshwater and seawater adaptation of sperm motility in gobiid fishes (Genus Tridentiger) // Zool. Sci., 1998. Vol. 15, Suppl..-С.36

13.
Mukai T. Molecular phylogenetic perspective on freshwater and seawater adaptation of sperm motility in gobiid fishes (Genus Tridentiger) // Zool. Sci., 1998. Vol. 15, Suppl..-С.36

14.
Roberts Mosquitoes (Diptera: Culicidae) breeding in brackish water: Female ovipositional preferences or larval survival? // J. Med. Entomol., 1996. Vol. 33, N 4.-С.525-530

15.
Fridman S. Ontogenetic changes in location and morphology of chloride cells during early life stages of the Nile tilapia Oreochromis niloticus adapted to fresh and brackish water // J. Fish Biol., 2011. Vol. 79, N 3.-С.597-614

16.
Physiological and molecular mechanisms of osmoregulatory plasticity in killifish after seawater transfer // J. Exp. Biol., 2008. Vol. 211, N 16.-С.2450-2459

17.
Quantitative trait loci (QTL) for body weight in Fraser strain Arctic charr (Salvelinus alpinus) reared in fresh and brackish water // AAC Spec. Publ., 2010, N 17.-С.24-26

18.
Sex reversal of Florida red tilapia in brackish water tanks under different treatment durations of 17'альфа'ethynyltestosterone administered in feed // J. Appl. Aquacult., 1993. Vol. 2, N 1.-С.29-41

19.
Landergren P. Survival and growth of sea trout parr in fresh and brackish water // J. Fish Biol., 2001. Vol. 58, N 2.-С.591-593

20.
Systemic Flavobacterium psychrophilum infection in rainbow trout, Oncorhynchus mykiss (Walbaum), farmed in fresh and brackish water in Norway // J. Fish Diseases, 2011. Vol. 34, N 5.-С.403-408

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