首页> 外文期刊>Canadian Journal of Fisheries and Aquatic Sciences >Experimental and field evaluation of otolith strontium as a marker to discriminate between river-spawning populations of walleye in Lake Erie
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Experimental and field evaluation of otolith strontium as a marker to discriminate between river-spawning populations of walleye in Lake Erie

机译:奥利北北北北右锶锶的实验和现场评价,以区分Walleye湖伊利河河产卵

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摘要

Otolith microchemistry is a commonly used tool for stock discrimination in fisheries management. Two key questions remain with respect to its effectiveness in discriminating among river-spawning populations. First, do larvae remain in their natal river long enough for their otoliths to pick up that system's characteristic chemical signature? Second, are larval otolith microchemical differences between natal rivers sufficiently large to overcome spatiotemporal variation in water chemistry? We quantified how larval age, the ratio of ambient strontium to calcium concentrations (Sr: Ca), and water temperature influence otolith Sr in both lab-reared and wild-collected Lake Erie walleye (Sander vitreus). Otolith microchemistry shows promise as a spawning stock discrimination tool, given that otolith Sr in larval walleye (i) is more strongly influenced by ambient Sr: Ca than by temperature; (ii) reflects Sr: Ca levels in the natal environment, even in larvae as young as 2 days old; and (iii) can effectively discriminate between larvae captured in two key Lake Erie spawning tributaries, even in the face of short larval river residence times and within-year and across-year variation in ambient Sr:Ca.
机译:耳石微化学是渔业管理中常用的种群鉴别工具。关于其在区分河流产卵种群方面的有效性,仍然存在两个关键问题。首先,幼虫在出生河中停留的时间是否足以让耳石吸收该系统的特征化学特征?第二,出生河流之间的幼体耳石微化学差异是否足够大,以克服水化学的时空变化?我们量化了在实验室饲养和野生采集的伊利湖(Sander vitreus)中,幼虫年龄、环境锶钙浓度比(Sr:Ca)和水温对耳石Sr的影响。耳石微化学显示了作为产卵种群鉴别工具的前景,因为幼虫壁眼(i)中的耳石Sr受环境Sr:Ca的影响比温度的影响更大;(ii)反映出生环境中的Sr:Ca水平,即使是2天大的幼体;和(iii)可以有效区分在伊利湖两条主要产卵支流捕获的幼虫,即使面对较短的幼虫河流停留时间,以及环境Sr:Ca的年内和跨年变化。

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