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测量羽毛中的皮质酮:优势、局限及未来建议。

Measuring corticosterone in feathers: Strengths, limitations, and suggestions for the future.

作者信息

Romero L Michael, Fairhurst Graham D

机构信息

Department of Biology, Tufts University, Medford, MA 02155, USA.

Department of Veterinary Biomedical Sciences, University of Saskatchewan, Saskatoon, SK S7N 5B4, Canada.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2016 Dec;202:112-122. doi: 10.1016/j.cbpa.2016.05.002. Epub 2016 May 4.

Abstract

The recently introduced technique of measuring corticosterone in feathers currently provides the longest-term measure of corticosterone in birds. This review examines the strengths, weaknesses, and unresolved technical issues of the feather corticosterone technique. Feather corticosterone's major strengths are that it provides: a retrospective assessment of corticosterone physiology, including information from absent (unseen) or dead (e.g. museum specimens) individuals; a long-term measure of corticosterone exposure over the period of feather growth (days-weeks), integrating both baseline and responses to stressors; and flexible, minimally-invasive, sampling. However, researchers considering this technique should be aware of its limitations. Feather corticosterone only reflects hormone exposure during feather growth and, when sampling during molt, corticosterone titers and ecological conditions may not be representative of the majority of the annual cycle. Synchronization of molt is often unknown for a population, requiring assumptions when making inter-individual comparisons. Additionally, unresolved technical issues include: assessing whether corticosterone is the only hormone measured by assays; determining deposition dynamics to fully understand connections between feather and plasma corticosterone titers; studying the longevity and stability of corticosterone in the feather; establishing the impact of feather size and color on corticosterone deposition; and understanding the causes and implications of corticosterone variation along the length of the feather. Notwithstanding the above limitations and technical challenges, determining corticosterone titers in feathers is proving to be a useful technique for exploring some ecological and physiological correlates in individual birds. Given the unique perspective that feather corticosterone offers, we suggest that this measure complement, not replace, plasma measurements.

摘要

最近引入的通过羽毛测量皮质酮的技术,目前提供了鸟类皮质酮的最长时间测量方法。本综述探讨了羽毛皮质酮技术的优点、缺点及尚未解决的技术问题。羽毛皮质酮的主要优点在于:它能对皮质酮生理进行回顾性评估,包括来自未出现(未被观察到)或已死亡(如博物馆标本)个体的信息;能对羽毛生长期间(数天至数周)的皮质酮暴露进行长期测量,整合了基线水平及对应激源的反应;且采样灵活、微创。然而,考虑使用该技术的研究人员应意识到其局限性。羽毛皮质酮仅反映羽毛生长期间的激素暴露情况,在换羽期间采样时,皮质酮水平和生态条件可能不代表年度周期的大部分时间。一个种群的换羽同步情况通常未知,在进行个体间比较时需要进行假设。此外,尚未解决的技术问题包括:评估皮质酮是否是检测中唯一测量的激素;确定沉积动态以充分理解羽毛与血浆皮质酮水平之间的联系;研究皮质酮在羽毛中的寿命和稳定性;确定羽毛大小和颜色对皮质酮沉积的影响;以及了解沿羽毛长度皮质酮变化的原因和影响。尽管存在上述局限性和技术挑战,但事实证明,测定羽毛中的皮质酮水平是探索个体鸟类某些生态和生理相关性的有用技术。鉴于羽毛皮质酮提供的独特视角,我们建议这种测量方法应补充而非取代血浆测量。

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