首页> 外文期刊>The Journal of Experimental Biology >The contribution of air breathing to aerobic scope and exercise performance in the banded knifefish Gymnotus carapo L.
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The contribution of air breathing to aerobic scope and exercise performance in the banded knifefish Gymnotus carapo L.

机译:带状刀鱼Gymnotus carapo L的呼吸对有氧运动范围和运动表现的贡献。

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The contribution of air breathing to aerobic metabolic scope and exercise performance was investigated in a teleost with bimodal respiration, the banded knifefish, submitted to a critical swimming speed (U-crit) protocol at 30 degrees C. Seven individuals (mean +/- s.e.m. mass 89 +/- 7. g, total length 230 +/- 4. mm) achieved a U-crit of 2.1 +/- 1. body. lengths. (BL). s(-1) and an active metabolic rate (AMR) of 350 +/- 21. mg. kg(-1). h(-1), with 38 +/- 6% derived from air breathing. All of the knifefish exhibited a significant increase in air-breathing frequency (f(AB)) with swimming speed. If denied access to air in normoxia, these individuals achieved a U-crit of 2.0 +/- 0.2. BL. s(-1) and an AMR of 368 +/- 24. mg. kg(-1). h(-1) by gill ventilation alone. In normoxia, therefore, the contribution of air breathing to scope and exercise was entirely facultative. In aquatic hypoxia (P-O2=4. kPa) with access to normoxic air, the knifefish achieved a U-crit of 2.0 +/- 0.1. BL. s(-1) and an AMR of 338 +/- 29. mg. kg(-1). h(-1), similar to aquatic normoxia, but with 55 +/- 5% of AMR derived from air breathing. Indeed, f(AB) was higher than in normoxia at all swimming speeds, with a profound exponential increase during exercise. If the knifefish were denied access to air in hypoxia, U-crit declined to 1.2 +/- 0.1. BL. s(-1) and AMR declined to 199 +/- 29. mg. kg(-1). h(-1). Therefore, air breathing allowed the knifefish to avoid limitations to aerobic scope and exercise performance in aquatic hypoxia.
机译:在双峰呼吸的硬骨鱼(带状knife鱼)中,在30摄氏度下接受了临界游泳速度(U暴击)实验,研究了呼吸对有氧代谢范围和运动表现的贡献。七个人(平均+/- sem)质量89 +/- 7.克,总长度230 +/- 4.毫米)的U-爆击为2.1 +/- 1.主体。长度。 (BL)。 s(-1)和350 +/- 21毫克的主动代谢率(AMR)。千克(-1)。 h(-1),其中38 +/- 6%来自呼吸。所有的刀鱼都显示出随着游泳速度的增加,呼吸频率(f(AB))显着增加。如果在常氧状态下拒绝接触空气,这些人的U-暴击率为2.0 +/- 0.2。 BL。 s(-1)和AMR为368 +/- 24。千克(-1)。 h(-1)仅通过g通风。因此,在常氧状态下,呼吸对范围和运动的贡献完全是偶然的。在可以接触常氧的水生缺氧(P-O2 = 4。kPa)中,knife鱼的U暴击率为2.0 +/- 0.1。 BL。 s(-1)和338 +/- 29.的AMR。千克(-1)。 h(-1),类似于水生常氧,但空气呼吸产生的AMR为55 +/- 5%。实际上,在所有游泳速度下,f(AB)均高于常氧,并且在运动过程中呈指数级增长。如果缺氧条件下禁止刀鱼接触空气,U暴击降至1.2 +/- 0.1。 BL。 s(-1)和AMR降至199 +/- 29. mg。千克(-1)。 h(-1)。因此,呼吸可以使the鱼避免在有氧缺氧时限制有氧运动范围和运动能力。

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