首页> 外文期刊>Ecology and Evolution >Dual-tracer-based isotope turnover rates in a highly invasive mysid Limnomysis benedeni from Lake Constance
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Dual-tracer-based isotope turnover rates in a highly invasive mysid Limnomysis benedeni from Lake Constance

机译:康斯坦茨湖高度侵入性的Mysid Limnomysis benedeni中基于双示踪剂的同位素转换率

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Abstract Understanding the ecological patterns of invasive species and their habitats require an understanding of the species?¢???? foraging ecology. Stable carbon (???′ 13 C) and nitrogen (???′ 15 N) isotope values provide useful information into the study of animal ecology and evolution, since the isotope ratios of consumers reflect consumer's dietary patterns. Nevertheless, the lack of species- and element-specific laboratory-derived turnover rates could limit their application. Using a laboratory-based dual stable isotope tracer approach (Na 15 NO 3 and NaH 13 CO 3 ), we evaluated the ???′ 15 N and ???′ 13 C isotope turnover rates in full-grown adult invasive Limnomysis benedeni from Lake Constance. We provide ???′ 15 N and ???′ 13 C turnover rates based on nonlinear least-squares regression and posterior linear regression models. Model precisions and fit were evaluated using Akaike's information criterion. Within a couple of days, the ???′ 15 N and ???′ 13 C of mysids began to change. Nevertheless, after about 14 days, L. benedeni did not reach equilibrium with their new isotope values. Since the experiment was conducted on adult subjects, it is evident that turnover was mainly influenced by metabolism (in contrast to growth). Unlike traditional dietary shifts, our laboratory-based dual stable isotope tracer approach does not shift the experimental organisms into a new diet and avoids dietary effects on isotope values. Results confirm the application of isotopic tracers to label mysid subpopulations and could be used to reflect assimilation and turnover from the labeled dietary sources. Field-based stable isotope studies often use isotopic mixing models commonly assuming diet-tissue steady state. Unfortunately, in cases where the isotopic composition of the animal is not in equilibrium with its diet, this can lead to highly misleading conclusions. Thus, our laboratory-based isotopic incorporation rates assist interpretation of the isotopic values from the field and provide a foundation for future research into using isotopic tracers to investigate invasion ecology.
机译:摘要了解入侵物种及其栖息地的生态模式需要了解该物种。觅食生态。稳定的碳(???'13 C)和氮(???'15 N)同位素值为动物生态学和进化的研究提供了有用的信息,因为消费者的同位素比反映了消费者的饮食习惯。但是,缺乏实验室特定物种和元素的周转率可能会限制其应用。使用实验室为基础的双重稳定同位素示踪剂方法(Na 15 NO 3和NaH 13 CO 3),我们评估了成年成年入侵性线虫病Benedeni中的15 N和13 C同位素转换率博登湖。我们基于非线性最小二乘回归和后线性回归模型提供15 N和13 13 C转换率。使用Akaike的信息标准评估模型的精度和拟合度。几天之内,my的15 N和13 C开始发生变化。然而,大约14天后,本尼德乳杆菌仍未达到其新同位素值的平衡。由于该实验是针对成年受试者进行的,因此很明显营业额主要受新陈代谢的影响(与生长相反)。与传统的饮食转变不同,我们基于实验室的双重稳定同位素示踪剂方法不会将实验生物转变为新的饮食,并且避免了饮食对同位素值的影响。结果证实了同位素示踪剂在标记肌醇亚群中的应用,可用于反映来自标记饮食来源的同化和更新。基于场的稳定同位素研究通常使用同位素混合模型,通常假设饮食组织处于稳态。不幸的是,在动物的同位素组成与其饮食不平衡的情况下,这可能导致极具误导性的结论。因此,我们基于实验室的同位素掺入率有助于从现场解释同位素值,并为将来使用同位素示踪剂研究入侵生态学提供基础。

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