Viola M N Paso, Riccialdelli L, Jaureguizar A, Panarello H O, Cappozzo H L
Laboratorio de Ecología, Comportamiento y Mamíferos Marinos, Museo Argentino de Ciencias Naturales "Bernardino Rivadavia", Ciudad Autónoma de Buenos Aires, Argentina.
Centro Austral de Investigaciones Científicas, Ushuaia, Tierra del Fuego, Argentina.
Braz J Biol. 2018 May;78(2):202-210. doi: 10.1590/1519-6984.01416. Epub 2017 Aug 17.
The aim of this study was to analyze the isotopic composition in muscle of striped weakfish Cynoscion guatucupa from Southwest Atlantic Ocean in order to evaluate a possible variation in δ13C and δ15N in response to dietary shifts that occur as animals grow. We also explored for isotopic evidence of differences between sample locations. The results showed an agreement between isotope analysis and previous conventional studies. Differences in the isotope composition between sampling location were not observed. A positive relation exists between isotope values and total body length of the animals. The Cluster analysis defined three groups of size classes, validated by the MDS. Differences in the relative consumption of prey species in each size class were also observed performing isotope mixing models (SIAR). Variation in δ15N among size classes would be associated with the consumption of a different type of prey as animals grow. Small striped weakfish feed on small crustaceans and progressively increase their consumption of fish (anchovy, Engraulis anchoita), increasing by this way their isotope values. On the other hand, differences in δ13C values seemed to be related to age-class specific spatial distribution patterns. Therefore, large and small striped weakfish remain specialized but feeding on different prey at different trophic levels. These results contribute to the study of the diet of striped weakfish, improve the isotopic ecology models and highlight on the importance of accounting for variation in the isotopic composition in response to dietary shifts with the size of one of the most important fishery resources in the region.
本研究的目的是分析西南大西洋条纹弱鱼(Cynoscion guatucupa)肌肉中的同位素组成,以评估随着动物生长饮食变化时δ13C和δ15N可能出现的变化。我们还探索了样本位置之间差异的同位素证据。结果表明同位素分析与先前的传统研究结果一致。未观察到采样位置之间同位素组成的差异。同位素值与动物的总体长之间存在正相关关系。聚类分析定义了三组大小等级,并通过多维尺度分析(MDS)进行了验证。在进行同位素混合模型(SIAR)分析时,还观察到每个大小等级中猎物种类相对消耗量的差异。随着动物生长,不同大小等级之间δ15N的变化与不同类型猎物的消耗有关。小型条纹弱鱼以小型甲壳类动物为食,并逐渐增加对鱼类(鳀鱼,Engraulis anchoita)的消耗,从而提高其同位素值。另一方面,δ13C值的差异似乎与特定年龄组的空间分布模式有关。因此,大型和小型条纹弱鱼仍然具有食性专一性,但处于不同营养级,以不同的猎物为食。这些结果有助于对条纹弱鱼饮食的研究,改进同位素生态学模型,并突出了考虑该地区最重要渔业资源之一的同位素组成随饮食变化而变化的重要性。