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绿唇贻贝(Perna canaliculus)足丝附着与摄食的能量学

Energetics of byssus attachment and feeding in the green-lipped mussel Perna canaliculus.

作者信息

Lurman Glenn J, Hilton Zoë, Ragg Norman L C

机构信息

Institute of Anatomy, University of Bern, Baltzerstr. 2, 3000 Bern 9, Switzerland.

出版信息

Biol Bull. 2013 Apr;224(2):79-88. doi: 10.1086/BBLv224n2p79.

Abstract

In most animals, significant increases in metabolic rate are due to activity and to feeding (known as apparent specific dynamic action). We determined the energetic costs of activity and feeding in adult green-lipped mussels (Perna canaliculus). Maximal metabolic rate was determined, using closed-chamber respirometry, during byssus re-attachment, during specific dynamic action after 16 h of feeding with Isochrysis galbana, and for the two activities combined, in 23 mussels. Metabolic rate was significantly elevated above rest by about 1.9-fold during byssus attachment (17.1 ± 1.53 μg O(2) h(-1) g(-1) whole mussel wet weight at rest, increased to 27.9 ± 0.91 μg O(2) h(-1) g(-1)), and by 2.2-fold after feeding (31.4 ± 1.20 μg O(2) h(-1) g(-1)). Combined feeding and byssus attachment led to a still higher metabolic rate (34.0 ± 1.23 μg O(2) h(-1) g(-1)). Behavior was also significantly altered, with mussels being almost continuously open during attachment and after feeding (90%-99% of the time); however, the time spent open during the day decreased, reaching a minimum of 52% ± 9% 3 days after feeding, and remained low (67%-82%) for the following 45-day starvation period. Significant diurnal differences were observed, with mussels continuously (92%-100%) open at night. The key findings from this study are that green-lipped mussels (1) have an aerobic scope of approximately 2-fold; (2) reach a higher metabolic rate during feeding than during activity, and the two combined can raise the metabolic rate higher still; (3) display a marked diurnal behavior.

摘要

在大多数动物中,代谢率的显著提高是由于活动和进食(称为表观特殊动力作用)。我们测定了成年绿唇贻贝(Perna canaliculus)活动和进食的能量消耗。使用密闭式呼吸测定法,在23只贻贝中测定了足丝重新附着期间、用等鞭金藻喂食16小时后的特殊动力作用期间以及两种活动同时进行时的最大代谢率。在足丝附着期间,代谢率比静止时显著提高约1.9倍(静止时整个贻贝湿重为17.1±1.53μg O₂ h⁻¹ g⁻¹,增加到27.9±0.91μg O₂ h⁻¹ g⁻¹),进食后提高2.2倍(31.4±1.20μg O₂ h⁻¹ g⁻¹)。进食和足丝附着同时进行导致代谢率更高(34.0±1.23μg O₂ h⁻¹ g⁻¹)。行为也有显著改变,贻贝在附着和进食后几乎一直张开(90%-99%的时间);然而,白天张开的时间减少,喂食后3天降至最低52%±9%,在接下来4天的饥饿期内保持在较低水平(67%-82%)。观察到明显的昼夜差异,贻贝在夜间一直(92%-100%)张开。本研究的主要发现是,绿唇贻贝(1)有氧代谢范围约为2倍;(2)进食时的代谢率高于活动时,两者同时进行可使代谢率进一步提高;(3)表现出明显的昼夜行为。

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