Anoxic or aerial survival of bivalves and other euryoxic invertebrates as a useful response to environmental stress—A comprehensive review

Albertus de Zwaan1, Richard H.M. Eertman1
1Netherlands Institute of Ecology, Centre for Estuarine and Coastal Ecology, Yerseke, The Netherlands

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Abele-Oeschger, 1994, Biochemical adaptations of Nereis diversicolor (Polychaeta) to temporarily increased hydrogen peroxide levels in intertidal sandflats, Mar. Ecol. Prog. Ser., 106, 101, 10.3354/meps106101 Agnew, 1986, Metabolic adaptations of Gammarus duebeni Liljeborg (Crustacea, Amphipoda) to hypoxia in a sewage treatment plant, Comp. Biochem. Physiol., 84A, 475, 10.1016/0300-9629(86)90351-8 Anderson, 1994, Anaerobic metabolism during anoxia in the burrowing shrimp Calocaris macandrae Bell (Crustacea: Thalassinidea), Comp. Biochem. Physiol., 108A, 515, 10.1016/0300-9629(94)90335-2 Bestwick, 1989, Metabolic adaptations of the intertidal polychaete Cirriformia tentaculata to life in an oxygen-sink environment, J. Mar. Biol. Ecol., 125, 193, 10.1016/0022-0981(89)90096-8 Brooks, 1991, Differential survival of Venus gallina and Scapharca inaequivalvis during anoxic stress: covalent modification of phosphofructokinase and glycogen phosphorylase during anoxia, J. Comp. Physiol., B 161, 207, 10.1007/BF00262885 Cortesi, 1992, Physiological and biochemical responses of the bivalve Scapharca inaequivalvis to hypoxia and cadmium exposure: erythrocytes versus other tissues, Sci. Total Environ. Suppl., 1041 De Kock, W.C.; Scholten, M.; De Zwaan, A. Onderzoek naar een aantal stressindicerende parameters bij Mytilus edulis, L. langs een verontreinigingsgradiënt in de Westerschelde. In TNO Report R 86/289, TNO Delft. Demers, 1994, Acclimatization to intertidal conditions modifies the physiological response to prolonged air exposure in Mytilus edulis, Mar. Biol., 118, 115, 10.1007/BF00699225 De Vooys, 1991, Anaerobic metabolism of erythrocytes of the arcid clam Scapharca inaequivalvis (Bruguiere): effects of cadmium, Comp. Physiol Biochem., 986, 169 De Zwaan, A. Physiological and biochemical approaches to the assessment of pollution of European estuarine and coastal ecosystems. Report of Research Contract EV4V.0122/NL (GDF). De Zwaan, 1983, Carbohydrate catabolism in bivalves, 1, 137 De Zwaan, 1988, The development of a general biochemical stress index, Mar. Environ. Res., 24, 254, 10.1016/0141-1136(88)90314-5 De Zwaan, 1985, Metabolic adaptations of intertidal invertebrates to environmental hypoxia (a comparison of environmental anoxia to exercise anoxia, 33 De Zwaan, 1985, Low and high output modes of anaerobic metabolism: invertebrate and vertebrate strategies, 167 De Zwaan, 1976, Anaerobic metabolism in bivalvia (mollusca): characteristics of anaerobic metabolism, Comp. Physiol. Biochem, 54B, 313 De Zwaan, A.; Cortesi, P.; Cattani, O. Resistance of bivalves to anoxia as a response to pollution induced environmental stress. Sci. Total Environ. (In press). De Zwaan, 1993, Sulfide and cyanides induced mortality and anaerobic metabolism in the arcid blood clam Scapharca inaequivalvis, Comp. Biochem. Physiol., 105C, 49 De Zwaan, 1991, Differential sensitivities to hypoxia by two anoxiatolerant marine molluscs: a biochemical analysis, Mar. Biol., 111, 343, 10.1007/BF01319405 De Zwaan, 1983, The role of phosphoenolpyruvate carboxykinase in the anaerobic metabolism of the sea mussel Mytilus edulis L, J. Comp. Physiol., 153, 267, 10.1007/BF00689630 De Zwaan, 1982, Anaerobic energy metabolism in isolated adductor muscle of the sea mussel Mytilus edulis L., J. Comp. Physiol., 149, 137, 10.1007/BF00735724 Eertman, 1994, Survival of the fittest: resistance of mussels to aerial exposure, 269 Eertman, 1995, Response of the blue mussel Mytilus edulis L. following exposure to PAHs or contaminated sediment, Mar. Environ. Res., 39, 169, 10.1016/0141-1136(94)00022-H Eertman, R.H.M.; Zurburg, W.; Schipper, C.A.; Sandee, B.; Smaal, A.C. Effects of PCB 126 and cadmuim on the anaerobic metabolism of the mussel Mytilus edulis L: analysis of opines by a new HPLC method. Comp. Biochem. Physiol. Eertman, 1993, “Survival in air” of the blue mussel Mytilus edulis L. as a sensitive response to pollution-induced environmental stress, J. Mar. Biol. Ecol., 170, 179, 10.1016/0022-0981(93)90151-D Famme, 1984, Total heat balance study of anaerobiosis in Tubifex tubifex (Müller), J. Comp. Physiol., 154, 587, 10.1007/BF00684412 Felder, 1979, Respiratory adaptations of estuarine mud shrimp, Callianassa jamaicense (Schmitt, 1935) (crustacea, decapoda, thalassinidea), Biol. Bull., 157, 125, 10.2307/1541082 Gamble, 1970, Anaerobic survival of the crustaceans Corophium volutator, C. arenarium and Tanais chevreuxi, J. Mar. Biol. Ass. U.K., 50, 657, 10.1017/S0025315400004938 Gnaiger, 1980, Das kalorische Äquivalent des ATP-umsatzes im aeroben und anoxischen Metabolismus, Thermochim. Acta, 40, 195, 10.1016/0040-6031(80)87186-3 Gnaiger, 1987, Aerobic metabolism and physiological responses of aquatic oligochaetes to environmental anoxia: heat dissipation, oxygen consumption, feeding, and defecation, Physiol. Zool., 60, 659, 10.1086/physzool.60.6.30159981 Groenendaal, 1980, Tolerance of the lugworm (Arenicola marina) to sulphide Neth, J. Sea Res., 14, 200, 10.1016/0077-7579(80)90022-8 Hagerman, 1993, Anaerobic metabolism hypoxia and hydrogen sulphide in the brackish water isopod Suduria entomon (L.), Ophelia, 38, 1, 10.1080/00785326.1993.10429920 Hammen, 1991, Opine oxidoreductases in Brachiopods, Bryozoans, Phoronids and Molluscs, Biochem. Syst. Ecol., 19, 263, 10.1016/0305-1978(91)90013-P Hammen, 1983, Direct calorimetry of marine invertebrates entering anoxic states, J. Exp. Zool., 228, 397, 10.1002/jez.1402280302 Hammen, 1976, Respiratory adaptations: invertebrates, 1, 347 Hardewig, 1991, Metabolic rates at different oxygen levels determined by direct and indirect calorimetry in the oxyconformer Sipunculus nudus, J. Exp. Biol., 157, 143, 10.1242/jeb.157.1.143 Hemelraad, 1988, Accumulation and effects of cadmium in fresh-water clams (unionidae) Hamelraad, 1990, Effects of cadmium in freshwater clams. III. Interaction with energy metabolism in Anodonta cygnea, Arch. Environ. Contam. Toxicol., 19, 699, 10.1007/BF01183987 Hill, 1981, Respiratory adaptations of three species of Upogebia (thalassinidea, crustacea) with special reference to low tide periods, Biol. Bull., 160, 272, 10.2307/1540887 Hill, 1991, Physiological and metabolic responses of the shore crab Carcinus maenas (L.) during environmental anoxia and subsequent recovery, J. Exp. Mar. Biol. Ecol., 150, 31, 10.1016/0022-0981(91)90104-5 Holwerda, 1986, Accumulation and metabolic effects of din-n-butyltin dichloride in the freshwater clam, Anodonta anatina, Bull. Environ. Contam. Toxicol., 36, 756, 10.1007/BF01623580 Hummel, 1989, The glycogen content in stressed marine bivalves: the initial absence of a decrease, Comp. Biochem. Physiol., 94B, 729 Kang, 1993, Tolerance of anoxia and hydrogen sulfide by benthic crustaceans Portunus trituberculatus, Metapenaeus monoceros and Macrobrachium nipponense, J. Fac. Appl. Biol. Sci., 32, 61 Kushins, 1971, Response to low oxygen conditions in two species of the mud snail Nassarius, Comp. Biochem. Physiol., 39A, 421, 10.1016/0300-9629(71)90306-9 Levitt, 1991, The effects of sulfide on the anaerobic metabolism of two congeneric species of mudflat clams, Comp. Biochem. Physiol., 98B, 339 Livingstone, 1982, General biochemical indices of sublethal stress, Mar. Pollut. Bull., 13, 262, 10.1016/0025-326X(82)90541-0 Livingstone, 1990, Further studies on the phylogenetic distribution of pyruvate oxidoreductase activities, Comp. Biochem. Physiol., 97B, 661 Livingstone, 1983, Studies on the phylogenetic distribution of pyruvate oxidoreductases, Biochem. Syst. Ecol., 11, 415, 10.1016/0305-1978(83)90047-9 Livingston, 1981, Aerobic metabolism, octopine production and phosphoarginine as sources of energy in the phasic and catch adductor muscles of the giant scallop Placopecten magellanicus during swimming and the subsequent recovery period, Comp. Biochem. Physiol., 70B, 35 Llansó, 1994, Tolerance to low dissolved oxygen by the tubicolous polychaete Loimia medusa, J. Mar. Biol. Ass. U.K., 74, 143, 10.1017/S0025315400035724 Llansó, 1991, Tolerance of low dissolved oxygen and hydrogen sulfide by the polychaete Streblospio benedicti (webster), J. Exp. Mar. Biol. Ecol., 153, 165, 10.1016/0022-0981(91)90223-J Looise, 1994, Sediment toxicity tests for poorly water soluble substances Mangum, 1980, Sea anemone neuromuscular responses in anaerobic conditions, Science, 208, 1177, 10.1126/science.6103580 Nordtug, 1991, Measurements of oxygen consumption in Mytilus edulis during exposure to, and recovery from, high sublethal concentrations of formaldehyde, benzene and phenol, Comp. Biochem. Physiol., 100C, 85 Oeschger, 1990, Long-term anaerobiosis in sublittoral marine invertebrates from the Western Baltic Sea: Halicryptus spinulosus (priapulida), Astarte borealis and Artica islandica (bivalvia), Mar. Ecol. Prog. Ser., 59, 133, 10.3354/meps059133 Oeschger, 1992, Sulfide detoxification and tolerance in Halicryptus spinulosus (priapulida): a multiple strategy, Mar. Ecol. Prog. Ser., 86, 167, 10.3354/meps086167 Pamatmat, 1979, Anaerobic heat production of bivalves (Polymesoda caroliniana and Modiolus demissus) in relation to temperature, body size, and duration of anoxia, Mar. Biol., 53, 223, 10.1007/BF00952430 Putzer, 1985, Der anaerobe Stoffwechsel des Glanzwurmes Lumbriculus variegatus Putzer, 1990, Anaerobic energy metabolism in the oligochaete Lumbriculus variegatus Müller, J. Comp. Physiol., B 159, 707, 10.1007/BF00691716 Sassaman, 1973, Relationship between aerobic and anaerobic metabolism in estuarine anemones, Comp. Biochem. Physiol., 44A, 1313, 10.1016/0300-9629(73)90270-3 Schmidt, 1993, Recovery after anaerobic metabolism in the leech (Hirudo medicinalis L.), J. Comp. Physiol., B 163, 574, 10.1007/BF00302116 Schöttler, 1979, On the anaerobic metabolism of three species of Nereis (annelida), Mar. Ecol. Prog. Ser., 1, 249, 10.3354/meps001249 Schöttler, 1988, Adaptation of the polychaete worm Scoloplos armiger to hypoxic conditions, Mar. Biol., 99, 251, 10.1007/BF00391983 Schick, 1981, Heat production and oxygen uptake in intertidal sea anemones from different shore heights during exposure to air, Mar. Biol. Lett., 2, 225 Schick, 1988, Calorometric studies of behavior, metabolism and energetics of sessile intertidal animals, Amer. Zool., 28, 161, 10.1093/icb/28.1.161 Schick, 1986, Metabolism, biochemical composition, and ultrastructure of aerobic and anoxic Mulinia lateralis, Amer. Zool., 26, 152A Shumway, 1983, The effects of anoxia and hydrogen sulphide on survival, activity and metabolic rate in the coot clam, Mulinia lateralis (Say), J. Exp. Mar. Biol. Ecol., 71, 135, 10.1016/0022-0981(93)90069-Z Smaal, 1991, Response to stress of mussels (Mytilus edulis) exposed in Dutch tidal waters, Comp. Biochem. Physiol., 100C, 197 Stickle, 1989, Metabolic adaptation of several species of crustaceans and molluscs to hypoxia: tolerance and microcalorimetric studies, Biol. Bull., 177, 303, 10.2307/1541945 Storey, 1990, Metabolic rate depression and biochemical adaptation in anaerobiosis, hibernation and estivation, Quart. Rev. Biol., 65, 145, 10.1086/416717 Taylor, 1987, Metabolic responses of the prawns Palaemon elegans and P. serratus (crustacea: decapoda) to acute hypoxia and anoxia, Mar. Biol., 95, 521, 10.1007/BF00393095 Theede, 1969, Studies on the resistance of marine bottom invertebrates to oxygendeficiency and hydrogen sulphide, Mar. Biol., 2, 325, 10.1007/BF00355712 Thompson, 1969, Respiratory adaptations of the two burrowing crustaceans Callianassa californiensis and Upogebia pugettensis, Biol. Bull., 136, 274, 10.2307/1539820 Veldhuizen-Tsoerkan, 1991, A field study on stress indices in the sea mussel, Mytilus edulis: application of the “stress approach” in biomonitoring, 10.1007/BF01183870 Veldhuizen-Tsoerkan, 1991, Anoxic survival time and metabolic parameters as stress indices in sea mussels exposed to cadmium or polychlorinated biphenyls, Arch. Environ. Contam. Toxicol., 20, 259, 10.1007/BF01055913 Vökel, 1994, Oxygen dependent sulfide detoxification in the lugworm Arenicola marina, Mar. Biol., 118, 137, 10.1007/BF00699228 Völkel, 1992, Mechanisms of sulphide tolerance in the peanut worm, Sipunculus nudus (Sipunculidae) and in the lugworm, Arenicola marina (polychaeta), J. Comp. Physiol., B 162, 469 Von Brand, 1946, Anaerobiosis in invertebrates, 1 Wang, 1993, Metabolic responses of the common mussel Mytilus edulis to hypoxia and anoxia, Mar. Ecol. Prog. Ser., 95, 205, 10.3354/meps095205 Wang, 1993, Interactive effects of pentachlorophenol (PCP) and hypoxia on the energy metabolism of the mussel, Mytilus edulis, Mar. Environ. Res., 35, 109, 10.1016/0141-1136(93)90022-R Wang, 1993, Calorimetric studies on the energy metabolism of an infaunal bivalve, Abra tenuis, under normoxia, hypoxia and anoxia, Mar. Biol., 116, 73, 10.1007/BF00350733 Wang, 1991, Physiological responses of mussel larvae Mytilus edulis to environmental hypoxia and anoxia, Mar. Ecol. Prog. Ser., 70, 223, 10.3354/meps070223 Wang, 1992, Effects of organic toxicants on the anoxic energy metabolism of the mussel Mytilus edulis, Mar. Environ. Res., 34, 327, 10.1016/0141-1136(92)90129-A Warren, 1977, The ecology of Capitella capitata in British waters, J. Mar. Biol. Assoc. U.K., 57, 151, 10.1017/S0025315400021305 Warren, 1980, Glucose degradation in the polychaete annelid Owenia fusiformis delle Chiaje under anaerobic conditions, Comp. Physiol. Biochem., 65B, 443 Weber, 1992, Interactive effects of ambient copper and anoxic, temperature and salinity stress on survival, hemolymph and muscle tissue osmotic effectors in Mytilus edulis, J. Exp. Mar. Biol. Ecol., 159, 135, 10.1016/0022-0981(92)90033-7 Weber, 1990, Effects of cadmium on anoxic survival, haematology, erythrocyte volume regulation and haemoglobin-oxygen affinity in the marine bivalve Scapharca inaequivalvis, J. Exp. Mar. Biol. Ecol., 144, 29, 10.1016/0022-0981(90)90017-7 Widdows, 1987, Application of calorimetric methods in ecological studies, 182 Widdows, 1985, Physiological responses of Mytilus edulis and Cardium edide to aerial exposure, Mar. Biol., 85, 217, 10.1007/BF00393242 Widdows, 1991, Mini-review role of physiological energetics in ecotoxicology, Comp. Biochem. Physiol., 100C, 69 Widdows, 1989, Effects of hypoxia and anoxia on survival, energy metabolism, and feeding of oyster larvae (Crassostrea virginica, Gmelin), Biol. Bull., 177, 154, 10.2307/1541843 Zacheriassen, 1991, Physiological parameters in ecotoxicology, Comp. Biochem. Physiol., 100C, 77 Zebe, 1982, Anaerobic metabolism in Upogebia pugettensis and Callianassa californiensis (Crustacea, Thalassinidea), Comp. Biochem. Physiol., 72B, 613 Zebe, 1991, Arthropods