García-Vernet Raquel, Sant Pol, Víkingsson Gísli, Borrell Asunción, Aguilar Alex
Institute of Biodiversity Research (IRBio) and Department of Evolutionary Biology, Ecology and Environmental Sciences, Faculty of Biology, University of Barcelona, 08028, Barcelona, Spain.
Marine and Freshwater Research Institute, PO Box 1390, Skúlagata 4, 121, Reykjavík, Iceland.
Rapid Commun Mass Spectrom. 2018 Aug 15;32(15):1257-1262. doi: 10.1002/rcm.8169.
Baleen plates are anatomical structures composed of inert tissue that hang from the upper jaw in mysticetes. Baleen plates may differ in size and in coloration between different segments of the filtering row or between sides of the mouth. Concern has been raised that variation in baleen plate characteristics may reflect dissimilar structural composition and growth rates liable to affect stable isotope ratios and their oscillation patterns.
We measured stable carbon (δ C values) and nitrogen (δ N values) isotope ratios at intervals of 1 cm along the longitudinal axis of six baleen plates collected from different positions along the mouth of a fin whale. All samples were analysed using a continuous flow isotope ratio mass spectrometer. Generalized additive models were fitted to the data from each baleen plate and the results of the models were compared visually.
A total of 206 samples were analysed. Visually, all baleen plates presented nearly identical oscillations, independent of the position or the coloration of the baleen plate. However, the variation in δ C and δ N values occurring between the different baleen plates was higher in the segments of oscillations exhibiting steeper slopes.
Differences in size between plates in an individual are due to differential erosion rates according to their position in the mouth. Therefore, the position of sampling along the baleen plate row should not be a reason for concern when conducting stable isotope studies.
须鲸板是由惰性组织构成的解剖结构,悬挂在须鲸的上颌。须鲸板在滤食列的不同节段之间或口腔两侧,其大小和颜色可能会有所不同。有人担心须鲸板特征的变化可能反映出不同的结构组成和生长速率,这可能会影响稳定同位素比率及其振荡模式。
我们沿着一头长须鲸口腔不同位置采集的六块须鲸板的纵轴,以1厘米的间隔测量了稳定碳(δC值)和氮(δN值)同位素比率。所有样本均使用连续流同位素比率质谱仪进行分析。对每块须鲸板的数据拟合广义相加模型,并直观比较模型结果。
共分析了206个样本。直观来看,所有须鲸板呈现出几乎相同的振荡,与须鲸板的位置或颜色无关。然而,在振荡斜率较陡的节段中,不同须鲸板之间的δC和δN值变化更大。
个体中须鲸板之间的大小差异是由于其在口腔中位置不同导致的侵蚀速率差异。因此,在进行稳定同位素研究时,沿须鲸板列的采样位置不应成为担忧的原因。