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Fine-scale whisker growth measurements can reveal temporal foraging patterns from stable isotope signatures

机译:细晶须生长测量可以揭示稳定同位素特征的时空觅食模式

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摘要

Stable isotope analysis of slow-growing, metabolically inert tissues is a common method for investigating foraging ecology in migratory animals, as direct observations of feeding are often not possible. Using tissue growth dynamics to interpret foraging timelines can maximize the utility of foraging data; however, applying inappropriate growth models is problematic, and high-resolution growth measurements are seldom made. We used photogrammetry to repeatedly measure the length of whiskers in 93 follicles over 670 d in a trained, captive northern elephant seal Mirounga angustirostris. We developed and optimized a follicle-specific growth model to describe the 18 000 whisker length measurements. Whiskers from the captive seal exhibited asymptotic growth that was described by the von Bertalanffy growth function. Applying the growth model to serially sampled whiskers from 4 free-ranging adult female northern elephant seals resulted in alignment of peaks in delta N-15 along the length of whiskers with the breeding haulout period, when seals are not feeding. Our study provides a high-resolution whisker growth model and is the first to use whisker growth dynamics to improve temporal interpretation of isotopic ratios.
机译:对缓慢生长的,代谢惰性的组织进行稳定的同位素分析是调查迁徙动物觅食生态的一种常用方法,因为通常无法直接观察喂养情况。使用组织生长动力学解释觅食时间表可以最大程度地利用觅食数据。但是,使用不合适的增长模型是有问题的,并且很少进行高分辨率增长测量。我们使用摄影测量法,在经过训练的圈养北象海豹Mirounga angustirostris中,重复测量了670 d以上的93个卵泡中的晶须长度。我们开发并优化了特定于卵泡的生长模型,以描述18 000晶须长度的测量。圈养海豹的胡须表现出渐近生长,这由冯·贝塔朗菲的生长功能描述。将生长模型应用于从4个自由放养的成年雌性北象海豹的连续采样的胡须中,结果导致当胡须不觅食时,沿着胡须长度的N-15峰的峰值与繁殖期相一致。我们的研究提供了高分辨率的晶须生长模型,并且是第一个使用晶须生长动力学来改善同位素比值的时间解释的研究。

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