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首页> 外文期刊>Environmental Biology of Fishes >Effect of body mass and water temperature on the standard metabolic rate of juvenile yellow perch, Perca flavescens (Mitchill)
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Effect of body mass and water temperature on the standard metabolic rate of juvenile yellow perch, Perca flavescens (Mitchill)

机译:体重和水温对少年黄鲈(Perca flavescens(Mitchill))标准代谢率的影响

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摘要

Fish respiration rates that are presumed to represent standard metabolic rates (SMR) may sometimes include an unspecified energy expenditure associated with activity and digestion. This situation may introduce a bias in bioenergetics models because standard metabolism, digestion, and activity may not be affected by the same environmental conditions. The aim of this study was to (1) develop a SMR model for juvenile yellow perch, Perca flavescens (Mitchill), that represent the minimum energy expenditure required to maintain life and (2) compare the results of this study with published perch metabolic rates and bioenergetics models. SMR was estimated for yellow perch over a range of body␣mass (4.4–24.7 g) and water temperature (12–20°C). The intercept of the relationship between fish respiration and swimming velocity obtained during forced swimming experiments was used to determine SMR. SMR estimated by the present study were comparable to values presented by two published studies on Eurasian perch, Perca fluviatilis L. However, estimated SMR were 4.1–20.9 times lower than values of a third respirometry study and predictions of bioenergetics models for perch. The present study suggests that published SMR models may sometimes include a significant fraction of energy expenditures (39.2–75.9%) associated with digestion and activity. This may complicate the implementation and the interpretation of fish bioenergetics models. The present study indicates that the intercept of respiration-velocity relationships and long-term respiration rates during starvation experiments may provide similar and reliable SMR values.
机译:假定代表标准代谢率(SMR)的鱼类呼吸速率有时可能包括与活动和消化有关的未指定能量消耗。这种情况可能会在生物能学模型中产生偏差,因为标准的代谢,消化和活性可能不受相同环境条件的影响。这项研究的目的是(1)为少年黄鲈Perca flavescens(Mitchill)开发SMR模型,该模型代表维持生命所需的最低能量消耗;(2)将这项研究的结果与公开的鲈鱼新陈代谢率进行比较和生物能模型。估计SMR在一定范围的体重(4.4–24.7 g)和水温(12–20°C)内有黄鲈。在强制游泳实验中获得的鱼呼吸与游泳速度之间的关系的截距用于确定SMR。本研究估计的SMR与两项关于欧亚鲈鱼Perca fluviatilis L的已发表研究的值可比。但是,估计的SMR比第三次呼吸测定研究和生物能量学模型预测的值低4.1–20.9倍。本研究表明,已发表的SMR模型有时可能包括与消化和活动相关的大部分能量消耗(39.2-75.9%)。这可能会使鱼类生物能学模型的实施和解释复杂化。本研究表明,饥饿试验期间呼吸速度关系和长期呼吸速率的截获可能提供相似且可靠的SMR值。

著录项

  • 来源
    《Environmental Biology of Fishes 》 |2006年第4期| 399-407| 共9页
  • 作者单位

    Fisheries and Oceans Canada Ecological Sciences Section 80 East White Hills Road P.O. Box 5667 St. John’s Newfoundland Canada;

    Département de sciences biologiques Université de Montréal C.P. 6128 Succursale ‘Centre ville’ H3C 3J7 Montréal Québec Canada;

    Department of Biological Sciences University of New Orleans New Orleans Louisiana 70148 USA;

    Groupe de recherche sur les écosystèmes aquatiques Université du Québec à Trois-Rivières C.P. 500 G9A 5H7 Trois-Rivières Québec Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Standard metabolic rate; Respirometry; Bioenergetics modeling; Perca flavescens;

    机译:标准代谢率;呼吸测定法;生物能学建模;苦参;

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