LEADER 05525nam 2200697Ia 450 001 9910139746503321 005 20230802004343.0 010 $a1-283-33779-7 010 $a9786613337795 010 $a1-4443-4598-2 010 $a1-4443-4595-8 035 $a(CKB)2550000000072859 035 $a(EBL)693810 035 $a(OCoLC)768731694 035 $a(SSID)ssj0000551850 035 $a(PQKBManifestationID)11341419 035 $a(PQKBTitleCode)TC0000551850 035 $a(PQKBWorkID)10538691 035 $a(PQKB)10329101 035 $a(MiAaPQ)EBC693810 035 $a(Au-PeEL)EBL693810 035 $a(CaPaEBR)ebr10515852 035 $a(CaONFJC)MIL333779 035 $a(EXLCZ)992550000000072859 100 $a20110518d2012 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 00$aOxidative stress in aquatic ecosystems$b[electronic resource] /$f[edited by] Doris Abele, Jose? Pablo Va?zquez-Medina, Tania Zenteno-Savi?n 210 $aHoboken, NJ $cWiley-Blackwell$dc2012 215 $a1 online resource (564 p.) 300 $aIncludes index. 311 $a1-4443-3548-0 327 $aOXIDATIVE STRESS IN AQUATIC ECOSYSTEMS; Contents; Contributors; Acknowledgments; List of Abbreviations; INTRODUCTION TO OXIDATIVE STRESS IN AQUATIC ECOSYSTEMS; PART I. CLIMATE REGIONS AND SPECIAL HABITATS; 1. OXIDATIVE STRESS IN TROPICAL MARINE ECOSYSTEMS; 2. OXIDATIVE CHALLENGES IN POLAR SEAS; 3. OXIDATIVE STRESS IN ESTUARINE AND INTERTIDAL ENVIRONMENTS (TEMPERATE AND TROPICAL); 4. OXIDATIVE STRESS TOLERANCE STRATEGIES OF INTERTIDAL MACROALGAE; 5. OXIDATIVE STRESS IN AQUATIC PRIMARY PRODUCERS AS A DRIVING FORCE FOR ECOSYSTEM RESPONSES TO LARGE-SCALE ENVIRONMENTAL CHANGES 327 $a6. MIGRATING TO THE OXYGEN MINIMUM LAYER: EUPHAUSIIDS7. OXIDATIVE STRESS IN SULFIDIC HABITATS; 8. IRON IN COASTAL MARINE ECOSYSTEMS: ROLE IN OXIDATIVE STRESS; 9. OXIDATIVE STRESS IN CORAL-PHOTOBIONT COMMUNITIES; PART II. AQUATIC RESPIRATION AND OXYGEN SENSING; 10. PRINCIPLES OF OXYGEN UPTAKE AND TISSUE OXYGENATION IN WATER-BREATHING ANIMALS; 11. OXIDATIVE STRESS IN SHARKS AND RAYS; 12. OXYGEN SENSING: THE ROLE OF REACTIVE OXYGEN SPECIES; 13. ISCHEMIA/REPERFUSION IN DIVING BIRDS AND MAMMALS: HOW THEY AVOID OXIDATIVE DAMAGE; PART III. MARINE ANIMAL MODELS FOR AGING, DEVELOPMENT, AND DISEASE 327 $a14. AGING IN MARINE ANIMALS15. OXIDATIVE STRESS AND ANTIOXIDANT SYSTEMS IN CRUSTACEAN LIFE CYCLES; 16. TRANSFER OF FREE RADICALS BETWEEN PROTEINS AND MEMBRANE LIPIDS: IMPLICATIONS FOR AQUATIC BIOLOGY; 17. IMMUNE DEFENSE OF MARINE INVERTEBRATES: THE ROLE OF REACTIVE OXYGEN AND NITROGEN SPECIES; 18. ATTACK AND DEFENSE: REACTIVE OXYGEN AND NITROGEN SPECIES IN TELEOST FISH IMMUNE RESPONSE AND THE COEVOLVED EVASION OF MICROBES AND PARASITES; PART IV. MARINE ANIMAL STRESS RESPONSE AND BIOMONITORING; 19. STRESS EFFECTS ON METABOLISM AND ENERGY BUDGETS IN MOLLUSKS 327 $a20. STARVATION, ENERGETICS, AND ANTIOXIDANT DEFENSES21. ENVIRONMENTALLY INDUCED OXIDATIVE STRESS IN FISH; 22. CHEMICAL POLLUTANTS AND THE MECHANISMS OF REACTIVE OXYGEN SPECIES GENERATION IN AQUATIC ORGANISMS; 23. BIOMARKERS OF OXIDATIVE STRESS: BENEFITS AND DRAWBACKS FOR THEIR APPLICATION IN BIOMONITORING OF AQUATIC ENVIRONMENTS; PART V. METHODS OF OXIDATIVE STRESS DETECTION; 24. DETECTION OF REACTIVE METABOLITES OF OXYGEN AND NITROGEN; 25. ROLE OF SINGLET MOLECULAR OXYGEN IN THE OXIDATIVE DAMAGE TO BIOMOLECULES; 26. TOTAL OXYRADICAL SCAVENGING CAPACITY ASSAY 327 $a27. SPECTROPHOTOMETRIC ASSAYS OF ANTIOXIDANTS28. EVALUATION OF GLUTATHIONE STATUS IN AQUATIC ORGANISMS; 29. MEASUREMENT OF ANTIOXIDANT PIGMENTS AND VITAMINS IN PHYTOPLANKTON, ZOOPLANKTON, AND FISH; 30. CAROTENOID ANALYSIS AND IDENTIFICATION IN MARINE ANIMALS; 31. LINOLEIC ACID OXIDATION PRODUCTS AS BIOMARKERS OF OXIDATIVE STRESS IN VIVO; 32. THE CLASSIC METHODS TO MEASURE OXIDATIVE DAMAGE: LIPID PEROXIDES, THIOBARBITURIC-ACID REACTIVE SUBSTANCES, AND PROTEIN CARBONYLS; 33. PROTEIN CARBONYL MEASUREMENT BY ENZYME LINKED IMMUNOSORBENT ASSAY; 34. EVALUATION OF MALONDIALDEHYDE LEVELS 327 $a35. THE USE OF ELECTRON PARAMAGNETIC RESONANCE IN STUDIES OF OXIDATIVE DAMAGE TO LIPIDS IN AQUATIC SYSTEMS 330 $aReactive oxygen species (ROS) are increasingly appreciated as down-stream effectors of cellular damage and dysfunction under natural and anthropogenic stress scenarios in aquatic systems. This comprehensive volume describes oxidative stress phenomena in different climatic zones and groups of organisms, taking into account specific habitat conditions and how they affect susceptibility to ROS damage. A comprehensive and detailed methods section is included which supplies complete protocols for analyzing ROS production, oxidative damage, and antioxidant systems. Methods are also evaluated with 606 $aAquatic ecology 606 $aAquatic biodiversity 606 $aOxidative stress 606 $aOxidation, Physiological 615 0$aAquatic ecology. 615 0$aAquatic biodiversity. 615 0$aOxidative stress. 615 0$aOxidation, Physiological. 676 $a577.6/14 701 $aAbele$b Doris$0857621 701 $aVazquez-Medina$b Jose Pablo$0857622 701 $aZenteno-Savin$b Tania$0857623 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910139746503321 996 $aOxidative stress in aquatic ecosystems$91915027 997 $aUNINA