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冠状动脉血流影响鱼类对环境极端条件的耐受能力。

Coronary blood flow influences tolerance to environmental extremes in fish.

机构信息

Department of Biological and Environmental Sciences, University of Gothenburg, PO Box 463, 405 30 Gothenburg, Sweden.

Department of Animal Environment and Health, Swedish University of Agricultural Sciences, 532 23 Skara, Sweden.

出版信息

J Exp Biol. 2021 Apr 15;224(8). doi: 10.1242/jeb.239970. Epub 2021 Apr 23.

Abstract

Approximately half of all fishes have, in addition to the luminal venous O2 supply, a coronary circulation supplying the heart with fully oxygenated blood. Yet, it is not fully understood how coronary O2 delivery affects tolerance to environmental extremes such as warming and hypoxia. Hypoxia reduces arterial oxygenation, while warming increases overall tissue O2 demand. Thus, as both stressors are associated with reduced venous O2 supply to the heart, we hypothesised that coronary flow benefits hypoxia and warming tolerance. To test this hypothesis, we blocked coronary blood flow (via surgical coronary ligation) in rainbow trout (Oncorhynchus mykiss) and assessed how in vivo cardiorespiratory performance and whole-animal tolerance to acute hypoxia and warming was affected. While coronary ligation reduced routine stroke volume relative to trout with intact coronaries, cardiac output was maintained by an increase in heart rate. However, in hypoxia, coronary-ligated trout were unable to increase stroke volume to maintain cardiac output when bradycardia developed, which was associated with a slightly reduced hypoxia tolerance. Moreover, during acute warming, coronary ligation caused cardiac function to collapse at lower temperatures and reduced overall heat tolerance relative to trout with intact coronary arteries. We also found a positive relationship between individual hypoxia and heat tolerance across treatment groups, and tolerance to both environmental stressors was positively correlated with cardiac performance. Collectively, our findings show that coronary perfusion improves cardiac O2 supply and therefore cardiovascular function at environmental extremes, which benefits tolerance to natural and anthropogenically induced environmental perturbations.

摘要

大约一半的鱼类除了腔静脉氧供应外,还有冠状动脉循环为心脏提供完全含氧的血液。然而,人们并不完全了解冠状动脉氧输送如何影响鱼类对环境极端条件(如变暖、缺氧)的耐受能力。缺氧会降低动脉氧合,而升温会增加整体组织的氧需求。因此,由于这两个压力源都与向心脏输送的静脉氧减少有关,我们假设冠状动脉血流有利于鱼类耐受缺氧和升温。为了验证这一假设,我们阻断了虹鳟鱼(Oncorhynchus mykiss)的冠状动脉血流(通过冠状动脉结扎手术),并评估了体内心肺功能和对急性缺氧和升温的整体耐受能力如何受到影响。虽然与完整冠状动脉的虹鳟鱼相比,冠状动脉结扎会降低常规的每搏输出量,但心率的增加维持了心输出量。然而,在缺氧条件下,当出现心动过缓时,冠状动脉结扎的虹鳟鱼无法增加每搏输出量来维持心输出量,这与稍微降低的缺氧耐受能力有关。此外,在急性升温期间,与具有完整冠状动脉的虹鳟鱼相比,冠状动脉结扎会导致心脏功能在较低温度下崩溃,并降低整体耐热性。我们还发现,在治疗组之间,个体对缺氧和耐热性存在正相关关系,对这两种环境压力源的耐受能力与心脏功能呈正相关。总之,我们的研究结果表明,冠状动脉灌注可改善心脏的氧供应,从而改善环境极端条件下的心血管功能,有利于耐受自然和人为引起的环境干扰。

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