Pfeiler E, Govoni J J
Biol Bull. 1993 Oct;185(2):277-283. doi: 10.2307/1542007.
The respiratory electron transport system (ETS) assay was used to estimate metabolic rates in four species of eel (Anguilliformes: Ophichthidae and Congridae) leptocephali (Myrophis punctatus, Ophichthus sp., Hildebrandia flava, and one unidentified congrid) and the bonefish (Albuliformes: Albulidae: Albula sp.). Wet-weight-specific ETS values in whole-body homogenates, assayed at physiological temperatures, ranged from 4-20 {mu}-at O h-1 (g wet wt)-1. Arrhenius activation energies (Ea) ranged from 11.0-15.7 kcal mole-1. Both wet-weight-specific ETS activity and oxygen consumption rate increased approximately fivefold during metamorphosis of leptocephali of Albula sp. Wet-weight-specific ETS activity showed little change as leptocephali of M. punctatus transformed into glass eels, but increased about fivefold as glass eels metamorphosed into elvers. No significant difference was found in ETS activity measured in fresh early metamorphic leptocephali of Albula sp. and leptocephali that had been stored frozen at -70{deg}C for up to 15 months. The data suggest that metabolic rates are low in leptocephali, which implies that the demand for nutrients is also relatively low. We argue that the apparent diet of these larvae seems capable of providing a sufficient supply of nutrients under these conditions.
呼吸电子传递系统(ETS)测定法用于估计四种鳗鱼(鳗鲡目:蛇鳗科和海鳗科)柳叶鳗(斑点蛇鳗、蛇鳗属、黄斑希氏鳗,以及一种未鉴定的海鳗科鳗鱼)和北梭鱼(北梭鱼目:北梭鱼科:北梭鱼属)的代谢率。在生理温度下测定的全身匀浆中湿重特异性ETS值范围为4 - 20 μ-at O h-1(克湿重)-1。阿累尼乌斯活化能(Ea)范围为11.0 - 15.7千卡/摩尔。在北梭鱼柳叶鳗变态过程中,湿重特异性ETS活性和耗氧率均增加了约五倍。斑点蛇鳗柳叶鳗转变为玻璃鳗时,湿重特异性ETS活性变化不大,但玻璃鳗变态为鳗线时增加了约五倍。在新鲜的早期变态北梭鱼柳叶鳗和在-70℃下冷冻保存长达15个月的柳叶鳗中测得的ETS活性没有显著差异。数据表明柳叶鳗的代谢率较低,这意味着对营养物质的需求也相对较低。我们认为这些幼体的明显食物在这些条件下似乎能够提供足够的营养供应。