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首页> 外文期刊>Evolutionary Ecology Research >Divergence in thyroid hormone concentrations between juveniles of marine and stream ecotypes of the threespine stickleback (Gasterosteus aculeatus)
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Divergence in thyroid hormone concentrations between juveniles of marine and stream ecotypes of the threespine stickleback (Gasterosteus aculeatus)

机译:三脊背棘鱼(Gasterosteus aculeatus)的海洋和溪流生态型少年之间的甲状腺激素浓度差异

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摘要

Background: Hormones regulate the expression of multiple phenotypic traits. Therefore, divergence in hormone concentrations may lead to evolutionary changes in the coordinated physiological and behavioural traits that comprise an organism’s integrated phenotype. Adults of marine ecotypes of threespine stickleback (Gasterosteus aculeatus) have higher concentrations of the thyroid hormone thyroxine (T_4) than adults of stream-resident ecotypes (Kitano et al, 2010). Thyroid hormones are well-established mediators of osmoregulation and migratory behaviours in fish, and the difference in T_4 concentrations indicates that changes in thyroid hormone signalling may underlie the evolutionary and ecological divergence of migratory and non-migratory ecotypes.Questions: Is the variation in T_4 concentrations present in earlier life stages where it could contribute developmentally to differences in phenotype? Do T_4 concentrations change in marine ecotypes before seaward migration? Organisms: A parapatric pair of marine and stream ecotypes of threespine stickleback collected from British Columbia, Canada, and a marine ecotype collected from Washington State, USA. Methods: We collected juvenile fish of both marine and stream ecotypes on the same day in a single river to compare the whole body concentrations of T_4 using radioimmunoassay. We also sampled juvenile fish of the marine ecotype in another river at three different times to determine whether these fish exhibit temporal changes in T_4 concentrationsbefore seaward migration. Results: Juvenile stickleback of the marine ecotype had higher T_4 concentrations than the parapatric stream-resident juveniles. The T_4 concentrations in another marine population varied slightly across sampling times before seaward migration. Conclusions: T_4 concentrations differ consistently between marine and stream ecotypes in both juvenile and adult life stages consonant with the hypothesis of evolutionary changes in thyroid signalling.
机译:背景:激素调节多种表型性状的表达。因此,激素浓度的差异可能导致包括生物体综合表型在内的协调的生理和行为特征发生进化变化。海洋生态型三脊背棘背成虫(Gasterosteus aculeatus)的成年人的甲状腺激素甲状腺素(T_4)浓度高于溪流生态型成年人(Kitano et al,2010)。甲状腺激素是鱼类中渗透调节和迁移行为的公认媒介,T_4浓度的差异表明甲状腺激素信号的变化可能是迁移型和非迁移型生态型进化和生态差异的基础。问题:T_4的变化是在生命的早期阶段存在浓度,该浓度可能在发育上导致表型差异?在向海迁移之前,海洋生态型中的T_4浓度会发生变化吗?生物体:从加拿大不列颠哥伦比亚省收集的海生和棘生的棘背棘生动物对,海洋生境类型对,从美国华盛顿州收集的海洋生生动物对。方法:我们在同一天收集了海洋和河流生态型的幼鱼,在一条河流中进行了放射免疫分析,比较了T_4的全身浓度。我们还在三个不同的时间对另一条河流中的海洋生态型幼鱼进行了采样,以确定这些鱼在向海迁移之前是否表现出T_4浓度的时间变化。结果:海洋生态型少年背stick的T_4浓度高于副流居住的少年。在向海迁移之前,另一个海洋种群中的T_4浓度在采样时间之间略有变化。结论:T_4浓度在青少年和成年生命阶段的海洋和溪流生态型之间始终存在差异,这与甲状腺信号变化的假设相吻合。

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