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首页> 外文期刊>The Journal of Experimental Biology >Linking swimming performance, cardiac pumping ability and cardiac anatomy in rainbow trout
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Linking swimming performance, cardiac pumping ability and cardiac anatomy in rainbow trout

机译:将虹鳟的游泳表现,心脏抽动能力和心脏解剖联系起来

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We exploited the inherent individual diversity in swimming performance of rainbow trout Oncorhynchus mykiss to investigate the hypothesis that maximum cardiac performance is linked to active metabolic rate (AMR) and critical swimming speed (U crit). Six hundred juveniles (body mass approximately 150 g) were screened using a swimming challenge of 1.2 m s(-1) to identify 'poor swimmers' and 'good swimmers', i.e. the first and last 60 fish to fatigue, respectively. These 120 fish were individually tagged and then reared in common tanks for 9 months, where they grew at similar rates and achieved a similar body mass of approximately 1100 g. Critical swimming speed (U crit) was then measured individually in tunnel respirometers, with simultaneous recordings of cardiac output via a ventral aortic flow probe. The group of individuals that were screened as poor swimmers remained so, with a significantly (27%) lower U crit than good swimmers [89+/-10 cm s(-1) vs 123+/-5 cm s(-1) (mean +/-s.e.m.), respectively, N = 6], a 19% lower AMR (147+/-12 micromol min(-1) kg(-1) vs 181+/-11 micromol min(-1) kg(-1), respectively), and a 30% lower maximum in vivo cardiac output (47.3+/-4.7 ml min(-1) kg(-1) vs 68.0+/-5.2 ml min(-1) kg(-1), respectively). When cardiac performance was compared with an in situ heart preparation, hearts from poor swimmers had a significantly (26%) lower maximum cardiac output (45.9+/-1.9 ml min(-1) kg(-1) vs 56.4+/-2.3 ml min(-1) kg(-1), respectively) and a 32% lower maximum cardiac power output at a high afterload (3.96+/-0.58 mW g(-1) vs 5.79+/-1.97 mW g(-1), respectively). Cardiac morphology was visualised in vivo by Doppler echography on anaesthetised individual fish and revealed that poor swimmers had a significantly more rounded ventricle (reduced ventricle length to height ratio) compared with good swimmers, which in turn was correlated with fish condition factor. These results provide clear evidence that maximum cardiac performance is linked to AMR and U crit and indicate that a simple screening test can distinguish between rainbow trout with lower active metabolic rate, U crit, maximal cardiac pumping capacity and a more rounded ventricular morphology. These distinguishing traits may have been retained for 9 months despite a common growing environment and growth.
机译:我们利用虹鳟Onkihynchus mykiss的游泳表现中固有的个体多样性来研究最大心脏表现与活动代谢率(AMR)和临界游泳速度(U crit)相关的假设。使用1.2 m s(-1)的游泳挑战赛筛选了600只幼鱼(体重约150 g),以识别“贫穷的游泳者”和“良好的游泳者”,即分别使头60尾鱼疲劳。将这120条鱼分别贴上标签,然后在普通水箱中饲养9个月,它们以相似的速度生长,并实现相似的体重约1100 g。然后在隧道呼吸计中分别测量临界游泳速度(U暴击),并通过腹主动脉流量探头同时记录心输出量。被筛选为不良游泳者的个人群体仍然如此,与良好游泳者相比,U暴击率显着降低(27%)[89 +/- 10 cm s(-1)与123 +/- 5 cm s(-1) (分别为+/- sem,N = 6),AMR降低了19%(147 +/- 12 micromol min(-1)kg(-1)与181 +/- 11 micromol min(-1)kg (-1),并且体内最大心输出量降低了30%(47.3 +/- 4.7 ml min(-1)kg(-1)与68.0 +/- 5.2 ml min(-1)kg(- 1)。当将心脏性能与原位心脏准备进行比较时,来自差泳者的心脏的最大心输出量显着降低(26%)(45.9 +/- 1.9 ml min(-1)kg(-1)对56.4 +/- 2.3 ml min(-1)kg(-1))和高后负荷时最大心输出功率降低32%(3.96 +/- 0.58 mW g(-1)与5.79 +/- 1.97 mW g(-1 ), 分别)。通过多普勒超声在体内对麻醉的单个鱼进行可视化的心脏形态研究,结果表明,与良好的游泳者相比,贫穷的游泳者具有明显更好的心室圆形(心室长度与身高比降低),这又与鱼类的状况因素相关。这些结果提供了明确的证据,表明最大的心脏功能与AMR和U暴击有关,并表明简单的筛查测试可以区分具有较低活动代谢率的虹鳟鱼,U暴击,最大的心脏搏动能力和更圆形的心室形态。尽管有共同的生长环境和生长,但这些显着特征仍可以保留9个月。

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