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A novel length back-calculation approach accounting for ontogenetic changes in the fish length - otolith size relationship during the early life of sprat (Sprattus sprattus)

机译:一种新的长度反算方法,用于解释鱼类长度的个体发生变化 - 鲱鱼(sprattus sprattus)早期生活中的耳石大小关系

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摘要

An individual-based length back-calculation method was developed for juvenile Baltic sprat (Sprattus sprattus), accounting for ontogenetic changes in the relationship between fish length and otolith length. In sprat, metamorphosis from larvae to juveniles is characterized by the coincidence of low length growth, strong growth in body height, and maximal otolith growth. Consequently, the method identifies a point of metamorphosis for an individual as the otolith radius at maximum increment widths. By incorporating this information in our back-calculation method, estimated length growth for the early larval stage was more than 60% higher compared with the result of the biological intercept model. After minimal length growth during metamorphosis, we found the highest increase in length during the early juvenile stage. We thus located the strongest growth potential in the early juvenile stage, which is supposed to be critical in determining recruitment strength in Baltic sprat.
机译:针对幼体波罗的海鲱(Sprattus sprattus)开发了一种基于个体的长度反算方法,该方法考虑了鱼类长度与耳石长度之间关系的个体发生变化。在鲱鱼中,从幼虫到幼虫的变态的特征是长短生长,体长高增长和耳石最大生长。因此,该方法将个体的变质点识别为最大增量宽度处的耳石半径。通过将此信息纳入我们的反向计算方法,与生物拦截模型的结果相比,幼虫早期的估计长度增长高出60%以上。在变态过程中最小的长度增长之后,我们发现在幼年早期的长度增长最大。因此,我们在青少年早期就找到了最强劲的增长潜力,这对于确定波罗的海鲱的招募强度至关重要。

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