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不同温度条件下胭脂闪鱼(Notropis percobromus)和角闪鱼(Luxilus cornutus)的标准代谢率模型。

Standard metabolic rate models for Carmine Shiner (Notropis percobromus) and Common Shiner (Luxilus cornutus) across different temperature regimes.

作者信息

Macnaughton Camille J, Kovachik Colin, Enders Eva C

机构信息

Fisheries and Oceans Canada, Freshwater Institute, Winnipeg, Canada.

出版信息

J Fish Biol. 2019 Jan;94(1):113-121. doi: 10.1111/jfb.13869. Epub 2019 Jan 8.

Abstract

Standard metabolic rates (SMR) were measured empirically for carmine shiner Notropis percobromus and common shiner Luxilus cornutus to develop SMR models that predict metabolic responses of each species under thermal conditions observed in the wild. SMR increased significantly with body mass and rising water temperature, ranging from 0.05 mg O h at 10°C to 0.89 mg O h at 20°C for N. percobromus weighing 0.6-2.5 g and from 0.11 mg O h at 10°C to 0.98 mg O h at 20°C for L. cornutus weighing 0.8-6.6 g. SMR models significantly differed between sympatric species on account of differences in model intercepts (RA) and temperature coefficients (RQ), however, the allometric relationships between mass and SMR did not significantly differ between species. Known distribution of N. percobromus and L. cornutus includes the Birch River located in Manitoba, Canada, where N. percobromus is listed as Endangered. Little is known about the physiology of N. percobromus or the species' ability to acclimate or adapt to different environmental conditions. While size differences between species contributed, in part, to differences in SMR predictions for Birch River populations, SMR trends (< 2 mg O h ) for individuals weighing 1 g were similar for both species across daily temperatures. Respirometry experiments contributed to developing species-specific SMR models and inform on the effect of natural and anthropogenic stressors, namely water temperature, on the conservation of N. percobromus in this ecosystem.

摘要

通过实验测量了胭脂闪耀鱼(Notropis percobromus)和普通闪耀鱼(Luxilus cornutus)的标准代谢率(SMR),以建立能预测这两个物种在野外观察到的热条件下代谢反应的SMR模型。SMR随体重和水温升高而显著增加,对于体重0.6 - 2.5克的胭脂闪耀鱼,其SMR在10°C时为0.05毫克O₂/小时,在20°C时为0.89毫克O₂/小时;对于体重0.8 - 6.6克的普通闪耀鱼,其SMR在10°C时为0.11毫克O₂/小时,在20°C时为0.98毫克O₂/小时。由于模型截距(RA)和温度系数(RQ)的差异,同域物种之间的SMR模型存在显著差异,然而,物种之间体重与SMR的异速生长关系并无显著差异。胭脂闪耀鱼和普通闪耀鱼的已知分布包括加拿大马尼托巴省的桦树河,胭脂闪耀鱼在那里被列为濒危物种。关于胭脂闪耀鱼的生理学或该物种适应不同环境条件的能力知之甚少。虽然物种间的大小差异在一定程度上导致了桦树河种群SMR预测的差异,但在每日温度范围内,体重1克的个体的SMR趋势(< 2毫克O₂/小时)在两个物种中相似。呼吸测量实验有助于建立物种特异性的SMR模型,并为自然和人为应激源(即水温)对该生态系统中胭脂闪耀鱼保护的影响提供信息。

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