The Oxidative Metabolism of Antarctic Fish: Some Peculiar Aspects of Cold Adaptation
137
3. Kennet JP (1977) Cenozoic evolution of Antarctic glaciation, the CircumAntarctic Ocean and their impact on global paleoceanography. J Geophys
Res 82(27):3843-3860
4. Somero GN, De Vries AL (1967) Temperature tolerance of some Antarctic
fishes. Sciences 156:257-258
5. De Vries AL (1988) The role of antifreeze glycopeptides and peptides in the
freezing avoidance of Antarctic fishes. Comp Biochem PhysioI90B:539-545
6. Hemmingsen EA, Douglas EL (1970) Respiratory and circulatory
adaptations to the absence of hemoglobin in Chaenichthyid fishes. In: Llano
GA (ed) Adaptations within Antarctic ecosystems. Smithsonian Inst,
Washington DC, pp 479-487
7. Hureau JC, Petit D, Fine JM, Marneux M (1977) New cytological,
biochemical and physiological data on the colorless blood
of the
Channichthyidae (Pisces, Teleosteans, Perciformes). In: Llano GA (ed)
Adaptations within Antarctic ecosystems. Smithsonian Inst, Washington DC,
pp 459-477
8. Wells RMG, Ashby MD, Duncan SJ, Macdonald JA (1980) Comparative
studies of the erythrocytes and haemoglobins in nototheniid fishes from
Antarctica. JFishBioI17:517-527
9. Somero GN, Hochachka PW (1976) Biochemical adaptation to temperature.
In: Newell RC (ed) Adaptation to environment: essays on the physiology of
marine animals. Butterworths, London, pp 125-190
10. Detrich HW (1991) Polymerization of microtubule proteins from Antarctic
fish. In: di Prisco G, Maresca B, Tota B (eds) Biology of Antarctic fish.
Springer-Verlag, pp 248-262
11. Maresca B, Patriarca E, Goldenberg C, Sacco M (1988) Heat shock and cold
adaptation in Antarctic fishes: a molecular approach. Comp Biochem Physiol
90B: 623-629
12. Pedersen PL, Greenwalt JW, Reynafarje B, Hullihen J, Decker GL, Soper
JW, Bustamente E (1978) Preparation and characterization of mitochondria
and submitochondrial particles of rat liver and liver-derived tissues. Methods
Cell BioI 20:411-481
13. Lippa S, Littarru GP, Oradei A (1985) Determinazione routinaria del
Coenzima QIO mediante HPLC in campioni biologici. I a Conferenza
Nazionale su La cromatografia liquida ad alta risoluzione in analitica clinica:
situazione attuale e prospettive. Verona, p. 51
14. Ericson T, Soerensen B (1977) High performance liquid chromatography of
vitamin E. Acta Pharmac Suec 14: 478-483
15. Mackler B (1961) Electron transport particle of yeast. Biochim Biophys Acta
50:141
16. Youssef H (1967) Preparation and properties of NADH: ubiquinone
oxidoreductase (complex I) E.C.1.6.5.3. Methods EnzymollO:13
17. Youssef H, Stiggall DL (1967) Preparation and properties of NADH
cytochrome C oxidoreductase (complex I-III). Methods Enzymol10:9
18. Egginton S, Sidell BD (1989) Thermal acclimation induces adaptive changes
in subcellular structure of fish skeletal muscle. Am J Physiol 256:R1-R9
137
3. Kennet JP (1977) Cenozoic evolution of Antarctic glaciation, the CircumAntarctic Ocean and their impact on global paleoceanography. J Geophys
Res 82(27):3843-3860
4. Somero GN, De Vries AL (1967) Temperature tolerance of some Antarctic
fishes. Sciences 156:257-258
5. De Vries AL (1988) The role of antifreeze glycopeptides and peptides in the
freezing avoidance of Antarctic fishes. Comp Biochem PhysioI90B:539-545
6. Hemmingsen EA, Douglas EL (1970) Respiratory and circulatory
adaptations to the absence of hemoglobin in Chaenichthyid fishes. In: Llano
GA (ed) Adaptations within Antarctic ecosystems. Smithsonian Inst,
Washington DC, pp 479-487
7. Hureau JC, Petit D, Fine JM, Marneux M (1977) New cytological,
biochemical and physiological data on the colorless blood
of the
Channichthyidae (Pisces, Teleosteans, Perciformes). In: Llano GA (ed)
Adaptations within Antarctic ecosystems. Smithsonian Inst, Washington DC,
pp 459-477
8. Wells RMG, Ashby MD, Duncan SJ, Macdonald JA (1980) Comparative
studies of the erythrocytes and haemoglobins in nototheniid fishes from
Antarctica. JFishBioI17:517-527
9. Somero GN, Hochachka PW (1976) Biochemical adaptation to temperature.
In: Newell RC (ed) Adaptation to environment: essays on the physiology of
marine animals. Butterworths, London, pp 125-190
10. Detrich HW (1991) Polymerization of microtubule proteins from Antarctic
fish. In: di Prisco G, Maresca B, Tota B (eds) Biology of Antarctic fish.
Springer-Verlag, pp 248-262
11. Maresca B, Patriarca E, Goldenberg C, Sacco M (1988) Heat shock and cold
adaptation in Antarctic fishes: a molecular approach. Comp Biochem Physiol
90B: 623-629
12. Pedersen PL, Greenwalt JW, Reynafarje B, Hullihen J, Decker GL, Soper
JW, Bustamente E (1978) Preparation and characterization of mitochondria
and submitochondrial particles of rat liver and liver-derived tissues. Methods
Cell BioI 20:411-481
13. Lippa S, Littarru GP, Oradei A (1985) Determinazione routinaria del
Coenzima QIO mediante HPLC in campioni biologici. I a Conferenza
Nazionale su La cromatografia liquida ad alta risoluzione in analitica clinica:
situazione attuale e prospettive. Verona, p. 51
14. Ericson T, Soerensen B (1977) High performance liquid chromatography of
vitamin E. Acta Pharmac Suec 14: 478-483
15. Mackler B (1961) Electron transport particle of yeast. Biochim Biophys Acta
50:141
16. Youssef H (1967) Preparation and properties of NADH: ubiquinone
oxidoreductase (complex I) E.C.1.6.5.3. Methods EnzymollO:13
17. Youssef H, Stiggall DL (1967) Preparation and properties of NADH
cytochrome C oxidoreductase (complex I-III). Methods Enzymol10:9
18. Egginton S, Sidell BD (1989) Thermal acclimation induces adaptive changes
in subcellular structure of fish skeletal muscle. Am J Physiol 256:R1-R9
