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海鸟卫星追踪验证了利用纬度同位素景观来描绘南大洋捕食者觅食区的方法。

Seabird satellite tracking validates the use of latitudinal isoscapes to depict predators' foraging areas in the Southern Ocean.

机构信息

Centre d'Etudes Biologiques de Chizé, UPR 1934 du CNRS, 79360 Villiers-en-Bois, France.

出版信息

Rapid Commun Mass Spectrom. 2010 Dec 15;24(23):3456-60. doi: 10.1002/rcm.4792.

DOI:10.1002/rcm.4792
PMID:21072802
Abstract

Stable isotopes are increasingly being used to trace wildlife movements. A fundamental prerequisite of animal isotopic tracking is a good knowledge of spatial isotopic variations in the environment. Few accessible reference maps of the isotopic landscape ("isoscapes") are available for marine predators. Here, we validate for the first time an isotopic gradient for higher trophic levels by using a unique combination of a large number of satellite-tracks and subsequent blood plasma isotopic signatures from a wide-ranging oceanic predator. The plasma δ(13)C and δ(15)N values of wandering albatrosses (n = 45) were highly and positively correlated to the Southern Ocean latitudes at which the satellite-tracked individuals foraged. The well-defined latitudinal baseline carbon isoscapes in the Southern Ocean is thus reflected in the tissue of consumers, but with a positive shift due to the cumulative effect of a slight (13)C-enrichment at each trophic level. The data allowed us to estimate the carbon isotopic position of the main oceanic fronts in the area, and thus to delineate robust isoscapes of the main foraging zones for top predators. The plasma δ(13)C and δ(15)N values were positively and linearly correlated, thus suggesting that latitudinal isoscapes also occur for δ(15)N at the base of the food web in oceanic waters of the Southern Ocean. The combination of device deployments with sampling of relevant tissues for isotopic analysis appears to be a powerful tool for investigating consumers' isoscapes at various spatio-temporal scales.

摘要

稳定同位素越来越多地被用于追踪野生动物的活动。动物同位素追踪的一个基本前提是对环境中稳定同位素空间变化有很好的了解。对于海洋捕食者来说,很少有可用的同位素景观(“同位素景观”)参考地图。在这里,我们首次通过使用大量卫星跟踪数据和随后来自广泛分布的海洋捕食者的血液等离子体同位素特征的独特组合,验证了更高营养级别的同位素梯度。漂泊信天翁(n = 45)的血浆 δ(13)C 和 δ(15)N 值与卫星跟踪个体觅食的南大洋纬度高度正相关。因此,南大洋中定义明确的纬度基线碳同位素景观反映在消费者的组织中,但由于每个营养级别的轻微(13)C 富集的累积效应,出现了正偏移。这些数据使我们能够估计该地区主要海洋锋面的碳同位素位置,并因此描绘出主要捕食区顶级捕食者的稳健同位素景观。血浆 δ(13)C 和 δ(15)N 值呈正线性相关,因此表明在南大洋海洋水域的食物网底部,也存在 δ(15)N 的纬度同位素景观。设备部署与相关组织的采样进行同位素分析的组合似乎是一种强大的工具,可用于在各种时空尺度上研究消费者的同位素景观。

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