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Effects of inter-habitat migration on the evaluation of growth rate and habitat residence of American eels Anguilla rostrata

机译:生境间迁移对美洲鳗生长和栖息地评价的影响

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The use of Sr:Ca ratios in fish otoliths to reconstruct historical patterns of fish movement between aquatic habitats of different salinity ranges (fresh, estuarine, marine) can be extended to evaluate the frequency and duration of inter-habitat movements. However, the proportion of otolith growth in a habitat does not necessarily equal the proportion of time spent in that habitat and depends on the difference between otolith growth rates within each habitat. For inter-habitat migrant yellow American eels Anguilla rostrata from the East River, Nova Scotia, the mean proportion of residence time in freshwater slightly (2.9%), but significantly, exceeded the proportion of otolith growth in freshwater, but the magnitude of the effect was small and perhaps of little practical consequence. Although the observed effect magnitude was small, where large differences in otolith growth rates occur among habitats or with ontogeny, habitat-specific growth rates should be considered for detailed examinations of inter-habitat migration and residency. A simple habitat residence model provides results consistent with the observed data. For inter-habitat migrants, the mean difference between 2 possible methods of estimating the proportion of fish growth in freshwater from micro-probe otolith Sr:Ca ratio transects was small (2.2%). Singleton outliers of eel otolith Sr:Ca ratios may create difficulties in evaluating the frequency and duration of inter-habitat movements that remain to be resolved.
机译:可以扩展利用鱼类耳石中Sr:Ca的比例来重建不同盐度范围(新鲜,河口,海洋)的水生生境之间鱼类运动的历史模式,以评估栖息地间运动的频率和持续时间。但是,在一个栖息地中耳石生长的比例不一定等于在该栖息地中所花费的时间比例,而是取决于每个栖息地内耳石生长速率之间的差异。对于来自新斯科舍省东河的栖息地迁徙黄色美洲鳗鱼,其淡水停留时间的平均比例略有下降(2.9%),但显着超过了淡水中耳石生长的比例,但影响程度很小,也许没有实际结果。尽管观察到的影响程度很小,但在生境之间或个体发育中耳石生长率差异较大,但应详细考虑生境特定的生长率,以详细检查生境间的迁徙和居住情况。一个简单的栖息地居住模型可提供与观测数据一致的结果。对于栖息地之间的移民,通过微探针耳石Sr:Ca比值横断面估算淡水中鱼类生长比例的两种可能方法之间的平均差异很小(2.2%)。鳗鱼耳石Sr:Ca比值的单例离群值可能会在评估栖息地间运动的频率和持续时间方面产生困难,这些问题尚待解决。

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