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Otolith elemental fingerprints as biological tracers of fish stocks

机译:耳石元素指纹作为鱼类种群的生物示踪剂

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Specific trace elements incroporated into the growing surface of the fish otolith reflect the physical and chemical characteristics of the ambient water, although not necessarily in a simplistic manner. Since fish which spend at least part of their lives in different water masses often produce otoliths of different elemental composition, the otolith elemental composition ('elemental fingerprint') can serve as an environmentally induced tag of groups of fish. On the basis of isotope dilution ICPMS (ID-ICPMS) assays of nearly 2500 dissolved adult cod (Gadus morhua) otoliths,it has become clear that cod otolith elemental fingerprints based on the elements Li, Mg, Mn, Sr and Ba are physically stable, reproducible and consistent between left and right otoliths. Highly significant differences existed among the fingerprints of all of the spawning aggregations, resulting in a characteristic marker for each aggregation. Long-term stability (4-13 years) of the fingerprints for a given spawning grows was not evident, indicating that the fingerprint was not a proxy for genetic identity. However,the fingerprint was very stable over the short-term (up to 1 year), suggesting that it could serve as a seasonally stable biological tracer, or natural tag, of pre-defined groups of fish, even during situations of extensive stock mixing. As an illustration of the tracer approach, a maximum likelihood-based stock mixture analysis was applied to feeding (summer) and over-wintering stock distributions, using th fingerprints of the spring spawning aggregations as known-stock reference samples. The results of the summer stock mixture analyses suggested that the mixture analysis was accurate within 1%, while the stock mixture analysis of the over-wintering schools produced stock-specific distributions which would have been diffecult to obtain using alternative approaches. While the use of elemental fingerprints as natural tags is not suited to all stock mixing situaations, suitability can probably be determined beforehand on the basis of existing environmental and biological information.
机译:渗入到鱼耳石生长表面的特定微量元素反映了周围水的物理和化学特征,尽管不一定以简单的方式。由于将其至少一部分生命花费在不同水团中的鱼类通常会产生不同元素组成的耳石,因此耳石元素组成(“元素指纹”)可作为环境诱使的鱼类群标签。根据同位素稀释ICPMS(ID-ICPMS)分析法对近2500种溶解的成年鳕(Gadus morhua)耳石进行分析,很明显,基于Li,Mg,Mn,Sr和Ba元素的鳕鱼耳石元素指纹在物理上是稳定的,左右耳石之间可重复且一致。所有产卵集合体的指纹之间都存在非常显着的差异,从而为每个集合体提供了特征标记。对于给定的产卵生长,指纹的长期稳定性(4-13年)不明显,这表明指纹不是遗传身份的代表。但是,指纹在短期内(长达1年)非常稳定,这表明即使在大量混合种群的情况下,指纹也可以用作预先定义的鱼类的季节性生物示踪剂或自然标记。 。作为示踪剂方法的一个说明,使用春季产卵集合的th指纹作为已知库存参考样本,对基于进料(夏季)和越冬的库存分布进行了基于最大似然的混合饲料分析。夏季库存混合物分析的结果表明,混合物分析在1%以内是准确的,而对越冬学校的库存混合物分析产生了特定于库存的分布,使用其他方法很难做到这一点。虽然使用元素指纹作为自然标签并不适合所有混合库存的情况,但可以根据现有的环境和生物学信息事先确定适用性。

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