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小型食虫蜥蜴体内稳定碳、氮同位素的分馏与周转

Stable carbon and nitrogen isotope discrimination and turnover in a small-bodied insectivorous lizard.

作者信息

Lattanzio Matthew, Miles Donald

机构信息

a Organismal and Environmental Biology , Christopher Newport University , Newport News , VA , USA.

b Biological Sciences , Ohio University , Athens , OH , USA.

出版信息

Isotopes Environ Health Stud. 2016 Dec;52(6):673-81. doi: 10.1080/10256016.2016.1154854. Epub 2016 Mar 21.

Abstract

Laboratory experiments are useful for estimating the carbon and nitrogen isotope discrimination factors and turnover rates that are critical for drawing field-based inferences on consumer diets using stable isotopes. Although the utility of these discrimination factors is widely recognized, work in terrestrial systems has largely been limited to studies involving mammals and birds. In contrast, scant attention has been paid to the application of isotopic techniques to reptiles, despite their broad diversity in terms of numbers of species as well as their trophic roles. Here we estimate carbon and nitrogen isotope discrimination factors and turnover for the tree lizard (Urosaurus ornatus) using a diet-switch experiment. Lizards were collected from a C4-dominated grassland and then switched to C3-based diet (crickets) in the laboratory. We estimated discrimination by lizard claw tissue as Δ(13)C = 1.2 ± 0.1 ‰ for carbon and Δ(15)N = 0.7 ± 0.1 ‰ (mean ± 1 SE) for nitrogen, with 95 % turnover occurring after ∼15.5 days. These estimates should be appropriate for use in trophic studies of U. ornatus, and possibly other related small-bodied insectivorous lizards.

摘要

实验室实验对于估算碳和氮同位素分馏系数以及周转率很有用,这些对于利用稳定同位素推断野外消费者的饮食至关重要。尽管这些分馏系数的实用性已得到广泛认可,但陆地系统的研究主要局限于涉及哺乳动物和鸟类的研究。相比之下,尽管爬行动物在物种数量及其营养作用方面具有广泛的多样性,但同位素技术在爬行动物中的应用却很少受到关注。在此,我们通过饮食转换实验估算了树蜥(饰纹强棱蜥)的碳和氮同位素分馏系数以及周转率。蜥蜴从以C4为主的草原采集,然后在实验室中转换为以C3为主的饮食(蟋蟀)。我们估计蜥蜴爪组织的分馏为:碳的Δ(13)C = 1.2 ± 0.1‰,氮的Δ(15)N = 0.7 ± 0.1‰(平均值±1个标准误差),约15.5天后95%的周转率发生。这些估计值应适用于饰纹强棱蜥以及可能其他相关小型食虫蜥蜴的营养研究。

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