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首页> 外文期刊>Canadian Journal of Zoology >Critical swim speed and fast-start response in the African cichlid Pseudocrenilabrus multicolor victoriae: convergent performance in divergent oxygen regimes
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Critical swim speed and fast-start response in the African cichlid Pseudocrenilabrus multicolor victoriae: convergent performance in divergent oxygen regimes

机译:非洲丽鱼科丽鱼伪游丝的关键游泳速度和快速启动反应:在不同的氧气状态下会聚性能

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摘要

Dissolved oxygen (DO) can be a strong predictor of intraspecific variation in morphology and physiology in fishes. In the African cichlid Pseudocrenilabrus multicolor victoriae Seegers, 1990, fish reared under low DO develop larger gills, deeper bodies, and larger, wider heads than full siblings reared under high DO, which could influence swim performance. In this study, we compared critical swim speed (U-crit) and fast-start swimming in F-1-generation fish from two field populations (one high and one low DO) of P. m. victoriae reared under high or low DO. There was no difference in U-crit between populations or rearing treatments. However, females exhibited a lower U-crit than males. In fast-start trials, low-DO-reared fish reacted faster (lower response latency) and used double bends more often than high-DO-reared fish, but there was no difference in maximum velocity or acceleration. Low-DO-reared fish might compensate for morphological differences by using double bends to achieve similar performance as high-DO siblings. These results suggest that divergent morphotypes of P. m. victoriae are capable of achieving the same level of performance under their home DO condition and highlights the importance of developmental plasticity in facilitating adaptive response to alternative environments.
机译:溶解氧(DO)可以强烈预测鱼体内形态和生理的种内变异。在1990年的非洲丽鱼科丽鱼伪装西格斯犬中,与在高DO下饲养的全兄弟姐妹相比,在低DO下饲养的鱼会长出更大的s,更深的身体以及更大,更宽的头部,这可能会影响游泳性能。在这项研究中,我们比较了P.m的两个田间种群(一高一低DO)的F-1代鱼类的临界游泳速度(U暴击)和快速开始游泳。维多利亚州在高或低溶解氧下饲养。种群或饲养方法之间的U-暴击无差异。但是,女性的U暴击率低于男性。在快速启动试验中,低DO饲养的鱼比高DO饲养的鱼反应更快(响应潜伏期更短),并且使用双弯的次数更多,但最大速度或加速度没有差异。低DO饲养的鱼可能会通过使用双弯来获得与高DO兄弟姐妹相似的性能来弥补形态差异。这些结果表明P.m.的形态不同。维多利亚能够在其家庭DO条件下达到相同的性能水平,并强调了发展可塑性在促进对替代环境的适应性反应中的重要性。

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