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Normoxic and anoxic heat output of the freshwater bivalves Pisidium and Sphaerium : I. Rhythms of spontaneous quiescence and behaviour.

作者信息

Holopainen I J, Penttinen O-P

机构信息

Department of Biology, University of Joensuu, P.O. Box 111, SF-80101, Joensuu, Finland.

出版信息

Oecologia. 1993 Mar;93(2):215-223. doi: 10.1007/BF00317674.

DOI:10.1007/BF00317674
PMID:28313610
Abstract

In fasting Pisidium amnicum and Sphaerium corneum, regular periods of behavioural and metabolic quiescence were shown to occur in the normoxic, constant environment of the flow-through chamber of a heat-flow microcalorimeter. The metabolic rate was suppressed to 7.5% of normal at 10° C and to 8.5-9.7% at 20° C for periods exceeding the period of active metabolism by a factor of 3.5 at 10° C and 8.3 at 20° C. The rate of heat output during normoxic quiescence was equal to that during environmental anoxia, suggesting spontaneous achievement of body anoxia by complete shell closure. The mass-specific integrated heat output during closure periods was independent of size. Parallel observations on clam behaviour suggested that metabolic quiescence coincided with shell closure, and bursts of heat flow with active ventilation. Shell closure was accompanied by pronounced bradycardia, down to 20% of the active rate. In a constant environment, the rhythmic quiescence is regulated by shell closure which is probably triggered by lack of food. Regular quiescence of fasting bivalves may conserve energy reserves considerably, the amount depending on the possible excretion rate of the end products, and the post-quiescence recovery costs, which were not measured. Heat output during the active period was close to the average metabolic rate found earlier for Sphaeriidae. However, all the values determined so far are likely to be underestimates of the natural metabolism because the effects of digestion and growth are not included.

摘要

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引用本文的文献

1
Physiological energetics of a midge, Chironomus riparius Meigen (Insecta, Diptera): normoxic heat output over the whole life cycle and response of larva to hypoxia and anoxia.摇蚊(Chironomus riparius Meigen)(昆虫纲,双翅目)的生理能量学:整个生命周期的常氧热输出以及幼虫对低氧和缺氧的反应
Oecologia. 1995 Sep;103(4):419-424. doi: 10.1007/BF00328679.

本文引用的文献

1
Metabolic rate depression and biochemical adaptation in anaerobiosis, hibernation and estivation.无氧代谢、冬眠和夏眠中的代谢率降低及生化适应
Q Rev Biol. 1990 Jun;65(2):145-74. doi: 10.1086/416717.