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Otolith Microstructure during the Early Life-History Stages of Brown Trout: Validation and Interpretation

机译:鳟鳟生活史早期阶段的耳石微结构:验证和解释

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摘要

We examined the extent to which otolith microstructure provides an accurate estimate of age, growth, and early life history transitions during the period between hatching and 1 week after emergence in Brown Trout Salmo trutta exposed to natural variations in ambient water temperature. All fry analyzed possessed a prominent check on the observed date of hatching. After hatching, daily growth increments were visible on sagittal otoliths. There was no evidence for the formation of an emergence check mark and no statistically significant evidence that emergence and daily temperature fluctuations interacted to form check marks. However, daily temperature fluctuations may influence the formation of check marks, largely based on an observed increase in theproportion of fish possessing checks on the days following the two largest temperature fluctuations observed during the experiment. There was no evidence that feeding or stressing emergent fish contributed to the formation of an emergence check mark. The observed proportionality of somatic and otolith growth in conjunction with daily growth increments and the formation of a prominent hatch mark provides the opportunity to back-calculate somatic length distribu-tions and to document the hatching, dispersal, growth, and survival of the early life history stages of Brown Trout in nature.
机译:我们研究了在暴露于环境水温自然变化的褐鳟鳟鱼中,在孵化到出苗后1周之间,耳石微结构能够准确估计年龄,生长和早期生活史转变的程度。所有被分析的鱼苗在观察到的孵化日期上都有明显的检查。孵化后,在矢状耳石上可见每日生长增量。没有证据表明出现了出现复选标记,也没有统计学上显着的证据表明出现和每日温度波动相互作用形成了复选标记。但是,每天的温度波动可能会影响检查标记的形成,这主要是基于在实验期间观察到的两次最大温度波动之后的第二天,拥有检查的鱼所占比例的增加。没有证据表明喂食或强调突生鱼类有助于形成突生检查标记。观察到的体细胞和耳石生长的比例,以及每日的生长增量和明显的孵化标记的形成,提供了反算体细胞长度分布并记录孵化,散布,生长和早期生存的机会。大自然中鳟的历史阶段。

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