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估算海洋哺乳动物生物能量学模型的能量摄入量。

Estimating energetic intake for marine mammal bioenergetic models.

作者信息

Booth Cormac G, Guilpin Marie, Darias-O'Hara Aimee-Kate, Ransijn Janneke M, Ryder Megan, Rosen Dave, Pirotta Enrico, Smout Sophie, McHuron Elizabeth A, Nabe-Nielsen Jacob, Costa Daniel P

机构信息

SMRU Consulting, Scottish Oceans Institute, University of St Andrews, East Sands, St Andrews, KY16 8LB, UK.

Department of Coastal Systems, NIOZ Royal Netherlands Institute for Sea Research, 1790 AB, Den Burg, Texel, the Netherlands.

出版信息

Conserv Physiol. 2023 Feb 4;11(1):coac083. doi: 10.1093/conphys/coac083. eCollection 2023.

Abstract

Bioenergetics is the study of how animals achieve energetic balance. Energetic balance results from the energetic expenditure of an individual and the energy they extract from their environment. Ingested energy depends on several extrinsic (e.g prey species, nutritional value and composition, prey density and availability) and intrinsic factors (e.g. foraging effort, success at catching prey, digestive processes and associated energy losses, and digestive capacity). While the focus in bioenergetic modelling is often on the energetic costs an animal incurs, the robust estimation of an individual's energy intake is equally critical for producing meaningful predictions. Here, we review the components and processes that affect energy intake from ingested gross energy to biologically useful net energy (NE). The current state of knowledge of each parameter is reviewed, shedding light on research gaps to advance this field. The review highlighted that the foraging behaviour of many marine mammals is relatively well studied via biologging tags, with estimates of success rate typically assumed for most species. However, actual prey capture success rates are often only assumed, although we note studies that provide approaches for its estimation using current techniques. A comprehensive collation of the nutritional content of marine mammal prey species revealed a robust foundation from which prey quality (comprising prey species, size and energy density) can be assessed, though data remain unavailable for many prey species. Empirical information on various energy losses following ingestion of prey was unbalanced among marine mammal species, with considerably more literature available for pinnipeds. An increased understanding and accurate estimate of each of the components that comprise a species NE intake are an integral part of bioenergetics. Such models provide a key tool to investigate the effects of disturbance on marine mammals at an individual and population level and to support effective conservation and management.

摘要

生物能量学是研究动物如何实现能量平衡的学科。能量平衡源于个体的能量消耗以及从环境中获取的能量。摄入的能量取决于几个外在因素(如猎物种类、营养价值和组成、猎物密度和可获得性)和内在因素(如觅食努力程度、捕获猎物的成功率、消化过程及相关能量损失,以及消化能力)。虽然生物能量学建模通常关注动物产生的能量成本,但准确估计个体的能量摄入对于做出有意义的预测同样至关重要。在此,我们综述了从摄入的总能到具有生物学利用价值的净能量(NE)这一过程中影响能量摄入的组成部分和过程。对每个参数的当前知识状态进行了综述,揭示了该领域有待进一步研究的空白。该综述强调,通过生物记录标签对许多海洋哺乳动物的觅食行为已有相对充分的研究,大多数物种的成功率估计通常是假设的。然而,实际的猎物捕获成功率往往只是假设的,尽管我们注意到有研究提供了使用当前技术进行估计的方法。对海洋哺乳动物猎物种类营养成分的全面整理揭示了一个坚实的基础,据此可以评估猎物质量(包括猎物种类、大小和能量密度),不过许多猎物种类的数据仍然缺乏。关于猎物摄入后各种能量损失的实证信息在海洋哺乳动物物种之间并不均衡,关于鳍足类动物的文献要多得多。深入了解和准确估计构成一个物种净能量摄入的各个组成部分是生物能量学不可或缺的一部分。此类模型提供了一个关键工具,可用于在个体和种群层面研究干扰对海洋哺乳动物的影响,并支持有效的保护和管理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4bed/9900471/546ca511bcf2/coac083f1.jpg

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