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Is analysis of otolith microstructure a valid method for investigating early life history of Western Baltic cod?

机译:otolith微观结构的分析是调查西波罗科鳕鱼的早期病史的有效方法吗?

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摘要

Daily formation of fish otolith micro-increments is frequently assumed, however applying inferences about timing of life history events and formation of otolith macro-structures requires further validation of the periodicity of micro-increment formation. We analysed micro-increments from Western Baltic cod (WBC, Gadus morhua) otoliths marked with tetracycline-hydrochloride as part of an age validation study to test the assumption of daily formation of micro-increments. We found that the number of counted micro-increments consistently underestimated the age of cod aged 1 and older. Time at liberty was also underestimated, especially for fish at liberty during winter. In contrast, micro-increment counts of otoliths from wild-caught young-of-the-year (YOY) cod could be used to realistically estimate timing of hatch and translucent zone formation. Under ambient conditions, settlement did not correspond to any visible pattern within the otoliths, but could be inferred from the prey switch observed from stomach content analyses. We therefore conclude that micro-increments can be assumed to form on a daily basis until the first winter, and can therefore be used to investigate early life history of YOY WBC. However, the periodicity of micro-increment formation appears to vary seasonally in older individuals, with the number of micro-increments formed during the winter period being particularly low.
机译:每日形成鱼otleTith微增量,然而,施加关于寿命历史事件的时间和右侧宏观结构的形成需要进一步验证微量增量形成的周期性。我们分析了来自西巴尔科鳕鱼(WBC,GADUS MORHUA)的微生物,标有四环素 - 盐酸盐,作为年龄验证研究的一部分,以测试每日形成微量增量的假设。我们发现计数的微增量数量始终低估了1岁及以上的COD年龄。自由的时间也被低估了,特别是在冬季自由的鱼。相比之下,野生捕获的年轻人(同比)COD的偏振性微量增量计数可用于现实地估计舱口和半透明区域的形成。在环境条件下,沉降不对应于右侧的任何可见图案,而是可以从从胃内容分析观察到的猎物开关中推断出来。因此,我们得出结论,可以在每天之前假设微量增量直到第一次冬季,因此可以用于调查同类WBC的早期病史。然而,微增量形成的周期性似乎在老年人中季节性季节性差异,并且在冬季期间形成的微增量数量特别低。

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  • 来源
    《Marine biology》 |2021年第3期|30.1-30.15|共15页
  • 作者单位

    Univ Hamburg Inst Marine Ecosyst & Fishery Sci Fac Math Informat & Nat Sci Olbersweg 24 D-22767 Hamburg Germany;

    Thunen Inst Balt Sea Fisheries Alter Hafen Sud 2 D-18069 Rostock Germany;

    Univ Hamburg Inst Marine Ecosyst & Fishery Sci Fac Math Informat & Nat Sci Olbersweg 24 D-22767 Hamburg Germany;

    Univ Hamburg Inst Marine Ecosyst & Fishery Sci Fac Math Informat & Nat Sci Olbersweg 24 D-22767 Hamburg Germany;

    Univ Hamburg Inst Marine Ecosyst & Fishery Sci Fac Math Informat & Nat Sci Olbersweg 24 D-22767 Hamburg Germany;

    Thunen Inst Balt Sea Fisheries Alter Hafen Sud 2 D-18069 Rostock Germany;

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