Estimating fat content in barred owls (Strix varia) with predictive models developed from direct measures of proximate body composition.

IF 2.6 3区 环境科学与生态学 Q2 BIODIVERSITY CONSERVATION
Conservation Physiology Pub Date : 2023-08-30 eCollection Date: 2023-01-01 DOI:10.1093/conphys/coad069
Ryan C Baumbusch, Katie M Dugger, J David Wiens
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Abstract

Body condition indices and related metrics can help assess habitat quality and other ecological processes, and ideally, these metrics are based on measures of lipids directly extracted from the species of interest. In recent decades, barred owls (Strix varia) have become a species of conservation concern as they invaded older forests of the US Pacific Northwest, and caused population declines of the closely related and federally threatened northern spotted owl (Strix occidentalis caurina). A simple and effective measure of barred owl body condition could help to understand how habitat quality varies within their new range, which in turn can inform their management and other aspects of their ecology. Using 77 barred owl carcasses collected during experimental removals in Washington and Oregon, USA, we measured the amount of lipid in each specimen with proximate body composition analysis. We then fit and compared (with adjusted R2 values) alternative linear regression models to estimate the percent lipids in dry mass of the owls based on morphometric body condition indices, a qualitative fat score of subcutaneous breast fat, sex and the time of year females were collected (relative to egg production). Adjusted R2 values for all models ranged from 0.49 to 0.87, with the best model including mass divided by foot-pad length, fat score, sex and the time of year a female was collected. Most models generated comparable estimates of percent lipids at a population level and we provided correction factors to apply these models when used with live barred owls, allowing for site-specific comparisons of body condition among individuals inhabiting a diversity of environmental conditions.

Abstract Image

通过直接测量近似身体成分建立的预测模型估算红鸮(Strix varia)的脂肪含量。
身体状况指数和相关指标有助于评估栖息地质量和其他生态过程,理想情况下,这些指标是基于从相关物种体内直接提取的脂质测量值。近几十年来,条斑鸮(Strix varia)入侵了美国西北太平洋地区的老龄森林,并导致与之密切相关的、受联邦威胁的北方斑鸮(Strix occidentalis caurina)数量下降,因而成为一种受保护的物种。对斑鸮身体状况进行简单有效的测量有助于了解其新分布区内栖息地质量的变化情况,进而为斑鸮的管理及其生态学的其他方面提供信息。我们利用在美国华盛顿州和俄勒冈州实验性迁移过程中收集到的 77 只条鸮尸体,通过近似身体成分分析测量了每只标本的脂质含量。然后,我们根据形态学身体状况指数、胸部皮下脂肪的定性脂肪评分、性别和雌性采集时间(相对于产卵时间),拟合并比较了其他线性回归模型(调整后的 R2 值),以估计鸮类干重中的脂质百分比。所有模型的调整 R2 值从 0.49 到 0.87 不等,最佳模型包括体重除以脚垫长度、脂肪评分、性别和雌鸮的采集时间。大多数模型都能在种群水平上得出相似的脂质百分比估计值,我们还提供了校正因子,以便在将这些模型用于活体条纹鸮时,可以对栖息在不同环境条件下的个体的身体状况进行特定地点比较。
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来源期刊
Conservation Physiology
Conservation Physiology Environmental Science-Management, Monitoring, Policy and Law
CiteScore
5.10
自引率
3.70%
发文量
71
审稿时长
11 weeks
期刊介绍: Conservation Physiology is an online only, fully open access journal published on behalf of the Society for Experimental Biology. Biodiversity across the globe faces a growing number of threats associated with human activities. Conservation Physiology will publish research on all taxa (microbes, plants and animals) focused on understanding and predicting how organisms, populations, ecosystems and natural resources respond to environmental change and stressors. Physiology is considered in the broadest possible terms to include functional and mechanistic responses at all scales. We also welcome research towards developing and refining strategies to rebuild populations, restore ecosystems, inform conservation policy, and manage living resources. We define conservation physiology broadly and encourage potential authors to contact the editorial team if they have any questions regarding the remit of the journal.
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