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首页> 外文期刊>PLoS One >Otolith chemical fingerprints of skipjack tuna ( Katsuwonus pelamis ) in the Indian Ocean: First insights into stock structure delineation
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Otolith chemical fingerprints of skipjack tuna ( Katsuwonus pelamis ) in the Indian Ocean: First insights into stock structure delineation

机译:Istolith Skipjack金枪鱼(Katsuwonus pelamis)的化学指纹在印度洋:首先洞察股票结构描绘

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The chemical composition of otoliths (earbones) can provide valuable information about stock structure and connectivity patterns among marine fish. For that, chemical signatures must be sufficiently distinct to allow accurate classification of an unknown fish to their area of origin. Here we have examined the suitability of otolith microchemistry as a tool to better understand the spatial dynamics of skipjack tuna ( Katsuwonus pelamis ), a highly valuable commercial species for which uncertainties remain regarding its stock structure in the Indian Ocean. For this aim, we have compared the early life otolith chemical composition of young-of-the-year (6 months) skipjack tuna captured from the three main nursery areas of the equatorial Indian Ocean (West, Central and East). Elemental (Li:Ca, Sr:Ca, Ba:Ca, Mg:Ca and Mn:Ca) and stable isotopic (δ 13 C, δ 18 O) signatures were used, from individuals captured in 2018 and 2019. Otolith Sr:Ca, Ba:Ca, Mg:Ca and δ 18 O significantly differed among fish from different nurseries, but, in general, the chemical signatures of the three nursery areas largely overlapped. Multivariate analyses of otolith chemical signatures revealed low geographic separation among Central and Eastern nurseries, achieving a maximum overall random forest cross validated classification success of 51%. Cohort effect on otolith trace element signatures was also detected, indicating that variations in chemical signatures associated with seasonal changes in oceanographic conditions must be well understood, particularly for species with several reproductive peaks throughout the year. Otolith microchemistry in conjunction with other techniques (e.g., genetics, particle tracking) should be further investigated to resolve skipjack stock structure, which will ultimately contribute to the sustainable management of this stock in the Indian Ocean.
机译:右侧(耳机)的化学成分可以提供有关海洋鱼类中的股票结构和连通模式的有价值的信息。为此,化学签名必须足够明确,以便准确地分类未知鱼到原产地区。在这里,我们研究了Otolith微型化学作为更好地了解Skipjack金枪鱼(Katsuwonus Pelamis)的空间动态的工具的适用性,这是一种高贵的商业物种,在印度洋中仍然存在股票结构的不确定性。为此目的,我们已经将早年的奥托尔化学成分与赤道印度洋(西部,中部和东部)的三个主要苗圃地区捕获的幼小幼儿园的早期寿命偏见的欧斯蒂尔化学成分进行了比较。元素(Li:Ca,Sr:Ca,Ba:Ca,Mg:Ca和Mn:Ca)和稳定同位素(δ13c,δ18o)签名,来自2018年和2019年捕获的个体。奥罗特里斯SR:CA ,BA:Ca,Mg:Ca和δ180在不同苗圃中的鱼类中显着不同,但通常,三个托儿所的化学特征在很大程度上重叠。欧特尔化学签名的多变量分析显示中东苗圃中的低地理分离,实现最大的整体随机森林交叉验证的分类成功51%。还检测到对Otolith散列元素签名的群组效应,表明必须康复地理解与海洋环境变化相关的化学签名的变化,特别是全年具有几种生殖峰的物种。应进一步调查otolith微型化合物与其他技术(例如,遗传学,粒子跟踪)结合解决斯皮帕克股票结构,最终将有助于在印度洋中的股票的可持续管理。

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