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可调谐二极管激光吸收光谱法用于快速测量动物呼出气体的δ¹³C以进行生理和生态研究。

The use of tunable diode laser absorption spectroscopy for rapid measurements of the delta13C of animal breath for physiological and ecological studies.

作者信息

Engel Sophia, Lease Hilary M, McDowell Nate G, Corbett Alyssa H, Wolf Blair O

机构信息

Department of Biology, University of New Mexico, Albuquerque, NM 87131, USA.

出版信息

Rapid Commun Mass Spectrom. 2009 May;23(9):1281-6. doi: 10.1002/rcm.4004.

Abstract

In this study we introduce the use of tunable diode laser absorption spectroscopy (TDLAS) as a technique for making measurements of the delta13C of animal 'breath' in near real time. The carbon isotope ratios (delta13C) of breath CO2 trace the carbon source of the materials being metabolized, which can provide insight into the use of specific food resources, e.g. those derived from plants using C3 versus C4 or CAM photosynthetic pathways. For physiological studies, labeled substrates and breath analyses provide direct evidence of specific physiological (e.g. fermentative digestion) or enzymatic (e.g. sucrase activity) processes. Although potentially very informative, this approach has rarely been taken in animal physiological or ecological research. In this study we quantify the utilization of different plant resources (photosynthetic types--C3 or C4) in arthropod herbivores by measuring the delta13C of their 'breath' and comparing it with bulk tissue values. We show that breath delta13C values are highly correlated with bulk tissues and for insect herbivores reflect their dietary guild, in our case C3-specialists, C4-specialists, or generalists. TDLAS has a number of advantages that will make it an important tool for physiologists, ecologists and behaviorists: it is non-invasive, fast, very sensitive, accurate, works on animals of a wide range of body sizes, per-sample costs are small, and it is potentially field-deployable.

摘要

在本研究中,我们介绍了使用可调谐二极管激光吸收光谱技术(TDLAS)近乎实时地测量动物“呼吸”中δ13C的方法。呼出二氧化碳的碳同位素比率(δ13C)追踪正在被代谢的物质的碳源,这能够为了解特定食物资源的利用情况提供线索,例如那些来自采用C3、C4或景天酸代谢光合途径的植物的食物资源。对于生理学研究而言,标记底物和呼吸分析为特定生理过程(如发酵性消化)或酶促过程(如蔗糖酶活性)提供了直接证据。尽管这种方法可能非常有信息量,但在动物生理学或生态学研究中很少被采用。在本研究中,我们通过测量节肢动物食草动物“呼吸”的δ13C并将其与整体组织值进行比较,来量化它们对不同植物资源(光合类型——C3或C4)的利用情况。我们发现,呼吸δ13C值与整体组织高度相关,对于昆虫食草动物而言,反映了它们的食性类别,在我们的研究中为C3植物专一性、C4植物专一性或广食性。TDLAS具有诸多优势,这将使其成为生理学家、生态学家和行为学家的重要工具:它是非侵入性的、快速、非常灵敏、准确,适用于各种体型的动物,每个样本成本低,并且有可能在野外部署。

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