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海獭生物能量学建模的数据需求。

Data needs for sea otter bioenergetics modeling.

作者信息

Griffen Blaine D, Klimes Lexanne, Fletcher Laura S, Thometz Nicole M

机构信息

Department of Biology, Brigham Young University, Provo, UT 84602, USA.

Department of Biology, University of San Francisco, 2130 Fulton Street, San Francisco, CA 94117, USA.

出版信息

Conserv Physiol. 2024 Oct 8;12(1):coae067. doi: 10.1093/conphys/coae067. eCollection 2024.

Abstract

Sea otters are keystone predators whose recovery and expansion from historical exploitation throughout their range can serve to enhance local biodiversity, promote community stability, and buffer against habitat loss in nearshore marine systems. Bioenergetics models have become a useful tool in conservation and management efforts of marine mammals generally, yet no bioenergetics model exists for sea otters. Previous research provides abundant data that can be used to develop bioenergetics models for this species, yet important data gaps remain. Here we review the available data that could inform a bioenergetics model, and point to specific open questions that could be answered to more fully inform such an effort. These data gaps include quantifying energy intake through foraging by females with different aged pups in different quality habitats, the influence of body size on energy intake through foraging, and determining the level of fat storage that is possible in sea otters of different body sizes. The more completely we fill these data gaps, the more confidence we can have in the results and predictions produced by future bioenergetics modeling efforts for this species.

摘要

海獭是关键捕食者,它们从历史上的过度捕猎中恢复并在其整个分布范围内扩张,有助于增强当地生物多样性、促进群落稳定性,并缓冲近岸海洋系统中的栖息地丧失。生物能量学模型总体上已成为海洋哺乳动物保护和管理工作中的有用工具,但目前还没有海獭的生物能量学模型。先前的研究提供了大量可用于为该物种开发生物能量学模型的数据,但重要的数据空白仍然存在。在这里,我们回顾了可用于构建生物能量学模型的现有数据,并指出了一些具体的开放性问题,若能得到解答,将能更全面地为这一工作提供信息。这些数据空白包括量化不同质量栖息地中携带不同年龄幼崽的雌性海獭通过觅食获取的能量摄入、体型对觅食能量摄入的影响,以及确定不同体型海獭可能的脂肪储存水平。我们填补这些数据空白越完整,就越能对未来针对该物种的生物能量学建模工作所产生的结果和预测充满信心。

相似文献

1
Data needs for sea otter bioenergetics modeling.海獭生物能量学建模的数据需求。
Conserv Physiol. 2024 Oct 8;12(1):coae067. doi: 10.1093/conphys/coae067. eCollection 2024.

本文引用的文献

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Estimating energetic intake for marine mammal bioenergetic models.估算海洋哺乳动物生物能量学模型的能量摄入量。
Conserv Physiol. 2023 Feb 4;11(1):coac083. doi: 10.1093/conphys/coac083. eCollection 2023.

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