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Ontogenetic shifts in diet and trophic position of walleye pollock, Theragra chalcogramma, in the western East Sea (Japan Sea) revealed by stable isotope and stomach content analyses

机译:Walleye Pollock,Theagra Chalcogramma,西部东海(日本海)稳定同位素和胃内容分析的饮食和营养地位

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摘要

We determined the dietary composition and trophic position (TP) of walleye pollock in the western East Sea (Japan Sea), based on the delta C-13 and delta N-13 values of this species, sympatric dominant fish and invertebrates, and their putative food sources in winter. A broad range of the consumer delta C-13' (lipid-corrected) values reflected clear distinctions between benthic and pelagic feeders, differentiating benthic vs. pelagic trophic pathways. The intermediate delta C-13' and delta N-15 values of pollock fell between those of benthic and pelagic feeders, indicating their trophic links through both pathways. Increases of their isotopic values with increasing body length suggest an ontogenetic change in dominant diets from pelagic to benthic prey as confirmed by stomach content analysis. Their ontogenetic pattern in resource utilization might be associated with deeper migration range with size, increasing TP during ontogeny.
机译:我们确定了西部东海(日本海)的Walleye Pollock的膳食成分和营养师(TP),基于该物种的Delta C-13和Delta N-13值,Sympaltric占优势鱼和无脊椎动物,以及他们推定的 冬天的食物来源。 广泛的消费者δC-13'(脂质校正的)值反映了底栖和骨质饲养者之间的清晰区别,鉴别底栖脱蛋白途径。 中间δC-13'和Pollock的δn-15值落在底栖和骨盆饲养者之间,表明它们通过两个途径的营养链接。 随着身体长度的增加,它们同位素值增加表明,通过胃含量分析证实,从脑膜猎物的骨质饲料中培养饮食中的植入变化。 它们在资源利用中的植入模式可能与尺寸的更深的迁移范围相关,在肿瘤期间增加TP。

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