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Connecting laboratory behavior to field function through stable isotope analysis

机译:通过稳定的同位素分析将实验室行为与现场功能联系起来

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摘要

Inherent difficulties of tracking and observing organisms in the field often leave researchers with no choice but to conduct behavioral experiments under laboratory settings. However, results of laboratory experiments do not always translate accurately to natural conditions. A fundamental challenge in ecology is therefore to scale up from small area and short-duration laboratory experiments to large areas and long durations over which ecological processes generally operate. In this study, we propose that stable isotope analysis may be a tool that can link laboratory behavioral observations to past field interactions or function of individual organisms. We conducted laboratory behavioral assays to measure dominance of invasive rusty crayfish, Orconectes rusticus, and used stable isotope analysis to hindcast trophic positions of these crayfish under preceding natural conditions. We hypothesized that more dominant crayfish in our assays would have higher trophic positions if dominance were related to competitive ability or willingness to pursue high-risk, high-reward prey. We did not find a relationship between crayfish dominance and trophic position, and therefore infer that laboratory dominance of crayfish may not necessarily relate to their ecology in the field. However, this is to our knowledge the first attempt to directly relate laboratory behavior to field performance via stable isotope analysis. We encourage future studies to continue to explore a possible link between laboratory and field behavior via stable isotope analysis, and propose several avenues to do so.
机译:在野外追踪和观察生物的内在困难通常使研究人员别无选择,只能在实验室环境下进行行为实验。但是,实验室实验的结果并不总是能准确地转化为自然条件。因此,生态学的一项基本挑战是从小面积和短期实验室实验扩大到大面积和长期持续进行生态过程的过程。在这项研究中,我们建议稳定同位素分析可能是将实验室行为观察结果与过去田间相互作用或单个生物体功能联系起来的一种工具。我们进行了实验室行为分析,以测量侵入性生锈小龙虾(Orconectes Rustus)的优势,并使用稳定同位素分析对这些小龙虾在先前的自然条件下的营养位置进行了预测。我们假设如果优势与竞争能力或追求高风险,高回报猎物的意愿有关,则在我们的分析中,更具优势的小龙虾将具有更高的营养位置。我们没有发现小龙虾的优势与营养位置之间的关系,因此推断小龙虾的实验室优势可能不一定与其田间生态有关。然而,据我们所知,这是通过稳定同位素分析将实验室行为与现场性能直接联系起来的首次尝试。我们鼓励未来的研究通过稳定的同位素分析继续探索实验室行为与现场行为之间的可能联系,并提出几种途径。

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