Phenotypic polymorphisms often differ in mu'/> Polymorphism and multiple correlated characters: Do flatfish asymmetry morphs also differ in swimming performance and metabolic rate?
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Polymorphism and multiple correlated characters: Do flatfish asymmetry morphs also differ in swimming performance and metabolic rate?

机译:多态性和多个相关特征:比目鱼不对称形态在游泳能力和代谢率上是否也有所不同?

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摘要

class="enumerated" style="list-style-type:decimal" id="ece35080-list-0001">Phenotypic polymorphisms often differ in multiple correlated traits including morphology, behavior, and physiology, all of which can affect performance. How selection acts on these suites of traits can be complex and difficult to discern. Starry flounder (Platichthys stellatus) is a pleuronectid flatfish that exhibits rare polymorphism for the direction of eye migration and resulting whole‐body asymmetry. P. stellatus asymmetry morphs differ subtly in several anatomical traits, foraging behavior, and stable isotope signatures, suggesting they may be ecologically segregated, yet performance and metabolic differences are unknown.Here we tested the hypothesis that sinistral and dextral P. stellatus asymmetry morphs diverge in performance and routine metabolic rate (RMR) by comparing prolonged swimming endurance (time to exhaustion at a constant swimming speed), fast‐start swimming velocity and acceleration, and rate of oxygen consumption. Based on subtle morphological differences in caudal tail size, we expected sinistral P. stellatus to have superior prolonged swimming endurance relative to dextral fish, but inferior fast‐start performance.Sinistral P. stellatus exhibited both significantly greater prolonged swimming performance and fast‐start swimming performance. However, sinistral P. stellatus also exhibited greater RMR, suggesting that their general swimming performance could be enhanced by an elevated metabolic rate.Divergence between P. stellatus asymmetry morphs in swimming performance and metabolic rates contributes to growing evidence of ecological segregation between them, as well as our understanding of possible ecological consequences of asymmetry direction in flatfishes. These data provide an example of the complexity of polymorphisms associated with multiple correlated traits in a rare case of asymmetry polymorphism in a marine flatfish species.
机译:class =“ enumerated” style =“ list-style-type:decimal” id =“ ece35080-list-0001”> <!-list-behavior = enumerated prefix-word = mark-type = decimal max-label- size = 0-> 表型多态性通常在多个相关性状(包括形态,行为和生理学)方面有所不同,所有这些都会影响性能。选择如何作用于这些特质可能是复杂且难以辨别的。繁星比目鱼(Platichthys stellatus)是一种胸鳍类比目鱼,在眼球迁移的方向和导致的全身不对称性方面表现出罕见的多态性。斑节对虾的不对称形态在几个解剖学特征,觅食行为和稳定的同位素特征上有细微的差别,表明它们可能在生态上是隔离的,但性能和代谢差异尚不明确。 在此我们检验了鼻窦和鼻窦的假说。通过比较长时间的游泳耐力(以恒定的游泳速度到疲惫的时间),快速开始的游泳速度和加速度以及氧气消耗率,右旋P. stellatus不对称形态在性能和常规代谢率(RMR)上有所不同。基于尾巴尾巴大小的细微形态差异,我们预期鼻窦假单胞菌的游泳耐力相对于右旋鱼类具有更好的延长的游泳耐力,但快速启动性能较差。 正鼻假单胞菌的恒久性都表现出更大的延长时间游泳性能和快速启动游泳性能。然而,鼻窦毕赤柱菌还表现出更高的RMR,这表明它们的一般游泳表现可以通过提高代谢率来增强。 在游泳表现和代谢率方面,恒星拟杆菌的不对称形态之间的差异有助于增加证据它们之间的生态隔离,以及我们对比目鱼不对称方向的可能生态后果的理解。这些数据提供了一个例子,说明在海洋比目鱼物种中罕见的不对称多态性情况下,与多个相关性状相关的多态性的复杂性。

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