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1.
Anderson W.G. An alternative approach for the measurement of trimethylamine oxide in body fluid samples of elasmobranchs // J. Fish Biol., 2011. Vol. 78, N 2.-С.667-672

2.
Changes in trimethylamine oxide and trimethylamine in muscle of wild and farmed cod (Gadus morhua) during iced storage // Aquacult. Res., 2009. Vol. 41, N 1.-С.95-102

3.
Elevated levels of trimethylamine oxide in muscles of deep-sea gadiform teleosts: A high-pressure adaptation? // J. Exp. Zool., 1997. Vol. 279, N 4.-С.386-391

4.
Elevated levels of trimethylamine oxide in muscles of deep-sea teleosts // Amer. Zool., 1996. Vol. 36, N 5.-С.35

5.
Genes regulated by TorR, the trimethylamine oxide response regulator of Shewanella oneidensis // J. Bacteriol., 2004. Vol. 186, N 14.-С.4502-4509

6.
Kelly Robert H. High contents of trimethylamine oxide correlating with depth in deep-sea teleost fishes, skates, and decapod crustaceans // Biol. Bull., 1999. Vol. 196, N 1.-С.18-25

7.
Kelly Robert H. High contents of trimethylamine oxide correlating with depth in deep-sea teleost fishes, skates, and decapod crustaceans // Biol. Bull., 1999. Vol. 196, N 1.-С.18-25

8.
Morris C.J Influence of respiratory substrate on the cytochrome content of Shewanella putrefaciens // FEMS Microbiol. Lett., 1990. Vol. 69, N 3.-С.259-262

9.
Seibel Brad A. Trimethylamine oxide accumulation in marine animals: Relationship to acylglycerol storage // J. Exp. Biol., 2002. Vol. 205, N 3.-С.297-306

10.
Seibel Brad A. Trimethylamine oxide accumulation in marine animals: Relationship to acylglycerol storage // J. Exp. Biol., 2002. Vol. 205, N 3.-С.297-306

11.
The freeze-avoidance response of smelt Osmerus mordax: Initiation and subsequent suppression of glycerol, trimethylamine oxide and urea accumulation // J. Exp. Biol., 2002. Vol. 205, N 10.-С.1419-1427

12.
Treberg Jason R. Elevated levels of trimethylamine oxide in deep-sea fish: Evidence for synthesis and intertissue physiological importance // J. Exp. Zool., 2002. Vol. 293, N 1.-С.39-45

13.
Treberg Jason R. Temperature effects on trimethylamine oxide accumulation and the relationship between plasma concentration and tissue levels in smelt (Osmerus mordax) // J. Exp. Zool. A, 2005. Vol. 303, N 4.-С.283-293

14.
Trimethylamine oxide counteracts effects of hydrostatic pressure on proteins of deep-sea teleosts // J. Exp. Zool., 2001. Vol. 289, N 3.-С.172-176

15.
Villalobos Alice R.A. Trimethylamine oxide suppresses stress-induced alteration of organic anion transport in choroid plexus // J. Exp. Biol., 2007. Vol. 210, N 3.-С.541-552

16.
Wilson Elizabeth D. Trimethylamine oxide transport across plasma membranes of elasmobranch erythrocytes // J. Exp. Zool., 1999. Vol. 284, N 6.-С.605-609

17.
Yancey Paul H. Trimethylamine oxide stabilizes teleost and mammalian lactate dehydrogenases against inactivation by hydrostatic pressure and trypsinolysis // J. Exp. Biol., 1999. Vol. 202, N 24.-С.3597-3603

18.
Zeisel S.H. Formation of aliphatic amine precursors of N-nitrosodimethylamine after oral administration of цшолине анд цшолине аналогуес ин тше рат // Feod and. Chem. Toxicol., 1989. Vol. 27, N 1.-С.31-34

 




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