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Organic contaminants as an ecological tool to explore niche partitioning: a case study using three pelagic shark species

机译:有机污染物作为探索利基分区的生态工具:使用三种骨质鲨鱼种的案例研究

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Chemical contaminant profiles are linked to an animal's niche, providing a potential tool by which to assess resource partitioning in pelagic species. As proof of concept, we examined contaminant signatures in three species of sharks (Isurus oxyrinchus, Prionace glauca, and Alopias vulpinus) known to overlap in both space and time. Since these sharks comprise a predatory guild within the Southern California Bight (SCB), we predicted that species may partition spatial and dietary resources to limit the extent of competitive exclusion. Indeed, species were distinguishable by both total contaminant loads and their contaminant fingerprint, as random forest analysis found that species could be correctly classified 96% of the time. Our results demonstrate the utility of chemical analyses for ecological studies, and how contaminant tracers can be used in combination with traditional methods to elucidate how species may undergo niche partitioning to reduce competition for overlapping resources within predatory guilds.
机译:化学污染物型材与动物的利基相连,提供了一种潜在的工具,通过该工具来评估骨质物种中的资源分区。作为概念证明,我们在众所周知的三种鲨鱼(Isurus oxyrinchus,朊病毒葡萄糖和alopiasVulpinus)中检查了污染物签名,以便在两个空间和时间内重叠。由于这些鲨鱼在南加州奇(SCB)内包括掠夺性会议,因此我们预测物种可以分配空间和饮食资源以限制竞争排斥的程度。实际上,由于随机森林分析发现,各种污染物载荷和它们的污染指纹,物种可区分物种。发现物种可以正确分类96%的时间。我们的结果表明了化学分析对生态学研究的效用,以及污染的示踪剂如何与传统方法结合使用,以阐明物种如何经过利基分区以减少掠夺性公会内的重叠资源竞争。

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