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An Introduced Competitor Elevates Corticosterone Responses of a Native Lizard (Varanus varius)

机译:引入的竞争对手升高了天然蜥蜴的皮质酮反应(varanus varius)

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摘要

Glucocorticoid hormone profiles are increasingly used as physiological markers to infer the strength of species interactions that can influence fitness and ensuing population dynamics of animals. Here we investigated two aims. First, we measured the effect of a 90-min capture stress protocol on the plasma corticosterone responses of a large native Australian lizard, the lace monitor (Varanus varius). Second, we compared the basal and postcapture stress corticosterone responses of lace monitors in habitats where they were exposed to high or low densities of the European red fox (Vulpes vulpes), an introduced competitor. Lace monitors responded to the capture stress protocol by significantly increasing plasma levels of corticosterone above basal at 45- and 90-min-postcapture blood-sampling intervals. In habitats with high fox densities, lace monitors produced a significantly greater basal and capture-stress-induced corticosterone response compared to individuals in low-fox density habitat. A significant interaction among fox density, time postcapture, and body condition was also found to influence plasma corticosterone values. These results suggest competition with red fox, perhaps via nutritional stress and increased hypersensitivity of the adrenocortical axis in lizards. At present, without further research, we do not understand whether such responses mediate lizard fitness or whether they have adaptive or maladaptive consequences for lizard populations in response to red fox competition. Nevertheless, our results help broaden understanding of the physiological implications arising from species interactions and specifically how introduced competitors could mediate diverse impacts on native biodiversity.
机译:糖皮质激素激素谱越来越多地用作生理标志物,以推断物种相互作用的强度,这些相互作用可能影响动物的种群动态。在这里,我们调查了两个目标。首先,我们测量了90分钟的捕获应力协同对大型天然澳大利亚蜥蜴的血浆皮质酮响应的影响,蕾丝监测器(Varanus varius)。其次,我们比较了基础和后染力胁迫Corticosterone反应鞋带监测器的栖息地,其中他们被引入的竞争对手暴露于欧洲红狐狸(狐狸狐狸)的高或低密度。鞋带监测器通过显着增加在45-和90分钟的基础上以上的皮质酮的血浆水平以45-和90分钟的血液采样间隔显着增加捕获应力协议。在具有高狐狸密度的栖息地,与低狐狸密度栖息地的个体相比,花边监测器产生了显着更大的基础和捕获应激诱导的皮质酮反应。还发现狐狸密度,时间染成和体状况之间的显着相互作用来影响血浆皮质酮值。这些结果表明,通过营养应激,可能通过营养应激和肾上腺皮质轴的超敏反应竞争。目前,无需进一步研究,我们不明白这种反应是否调解蜥蜴健身或是否对蜥蜴人群进行适应性或适应性或不良后果,以应对红狐狸竞争。尽管如此,我们的结果有助于扩大对物种互动产生的生理影响的理解,具体而言,引入的竞争对手如何对原生生物多样性介绍不同的影响。

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