An experimental study of carbon-isotope fractionation between diet, hair, and feces of mammalian herbivores

生物 粪便 食草动物 分馏 碳同位素 植物 同位素分析 动物科学 生态学 化学 总有机碳 有机化学
作者
Matt Sponheimer,Todd J. Robinson,Linda K. Ayliffe,Benjamin H. Passey,Beverly L. Roeder,Lisa A. Shipley,Elvia Lopez,Thure E. Cerling,M. Denise Dearing,J. R. Ehleringer
出处
期刊:Canadian Journal of Zoology [Canadian Science Publishing]
卷期号:81 (5): 871-876 被引量:285
标识
DOI:10.1139/z03-066
摘要

The carbon-isotope composition of hair and feces offers a glimpse into the diets of mammalian herbivores. It is particularly useful for determining the relative consumption of browse and graze in tropical environments, as these foods have strongly divergent carbon-isotope compositions. Fecal δ 13 C values reflect the last few days consumption, whereas hair provides longer term dietary information. Previous studies have shown, however, that some fractionation occurs between dietary δ 13 C values and those of hair and feces. Accurate dietary reconstruction requires an understanding of these fractionations, but few controlled-feeding studies have been undertaken to investigate these fractionations in any mammalian taxa, fewer still in large mammalian herbivores. Here, we present data from the first study of carbon-isotope fractionation between diet, hair, and feces in multiple herbivore taxa. All taxa were fed pure alfalfa (Medicago sativa) diets for a minimum period of 6 months, at which point recently grown hair was shaved and analyzed for carbon isotopes. The mean observed diet–hair fractionation was +3.2‰, with a range of +2.7 to +3.5‰. We also examined diet–feces fractionation for herbivores on alfalfa and bermudagrass (Cynodon dactylon) feeds. The mean diet–feces fractionation for both diets was –0.8‰, with less fractionation for alfalfa (–0.6‰) than bermudagrass (–1.0‰). Fecal carbon turnover also varies greatly between taxa. When diets were switched, horse (Equus caballus) feces reflected the new diet within 60 h, but alpaca (Lama pacos) feces did not equilibrate with the new diet for nearly 200 h. Thus, fecal carbon isotopes provide far greater dietary resolution for hindgut-fermenting horses than foregut-fermenting alpacas.
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