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首页> 外文期刊>The Journal of Experimental Biology >Influence of local adaptation and interstock hybridization on the cardiovascular performance of largemouth bass Micropterus salmoides
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Influence of local adaptation and interstock hybridization on the cardiovascular performance of largemouth bass Micropterus salmoides

机译:局部适应和种间杂交对大嘴鲈鱼的生物性能的影响

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In this study, the cardiovascular response to exhaustive exercise among differentiated stocks of largemouth bass Micropterus salmoides was compared at 10 degrees C and 20 degrees C to assess the level of their local adaptation. In addition, the impact that interstock hybridization had on adaptive differences was assessed using F1 hybrids. To accomplish these assessments, four genetically distinct stocks of fish were produced using adults from two regions in the midwestern United States identified as distinct conservation management units (central Illinois, IL and southeastern Wisconsin, WI): both P1 stocks and both reciprocal F1 interstock hybrids. Cardiac variables (both resting and maximal) were consistently lowest for the IL x IL stock relative to the WI x WI stock and both F1 interstock hybrids. Interestingly, however, all groups of fish were able to maintain similar levels of cardiac scope. All fish responded to exercise by increasing heart rate and decreasing stroke volume, consistent with the notion that largemouth bass modulate cardiac output via frequency. After exercise, cardiac variables returned to resting levels 25-35% more rapidly for IL x IL fish relative to all other groups at 20 degrees C. At 10 degrees C, recovery rates for both P1 stocks were similar but more rapid than the interstock hybrids. Collectively, these results indicate that the locally adapted stock (IL x IL) exhibited cardiovascular adaptations that enabled rapid cardiovascular recovery and maintenance of low resting cardiac output and heart rate. Conversely, the translocated stock (WI x WI) and the interstock hybrids required longer for cardiovascular variables to recover after exercise and exhibited higher resting levels of cardiac output and heart rate. This study provides some of the first direct evidence of a physiological mechanism by which mixing stocks could potentially decrease fitness and illustrates the magnitude of the intraspecific diversity of cardiovascular performance.
机译:在这项研究中,在10摄氏度和20摄氏度下比较了大口黑鲈Micropterus salmoides的不同种群之间对力竭运动的心血管反应,以评估其局部适应水平。此外,使用F1杂种评估了种间杂交对适应性差异的影响。为了完成这些评估,使用来自美国中西部两个地区的成年鱼生产了四种遗传上不同的鱼类种群,这些地区被确定为不同的保护管理单位(伊利诺伊州中部和威斯康星州东南部):P1种群和F1互易种群。相对于WI x WI种群和两个F1种群间杂种,IL x IL种群的心脏变量(静止和最大)始终最低。然而,有趣的是,所有鱼类组都能维持相似的心脏范围。所有鱼类对运动的反应都是通过增加心率和减少中风量来实现的,这与大嘴鲈鱼通过频率调节心输出量的观点一致。运动后,IL x IL鱼的心脏变量在20°C时比所有其他组更快地恢复了静息水平25-35%。在10°C时,两种P1种群的恢复率相似,但比种群间杂种更快。总的来说,这些结果表明,局部适应的牲畜(IL x IL)表现出心血管适应性,从而能够迅速恢复心血管并维持低静息心输出量和心率。相反,易位种群(WI x WI)和种群间杂种需要更长的时间才能使心血管变量在运动后恢复,并表现出更高的静息心输出量和心率。这项研究提供了一些生理机制的第一个直接证据,通过该机制混合原种可能会降低健康状况,并说明了心血管功能种内多样性的大小。

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