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利用通用代谢理论从现有数据推断蠵龟(Caretta caretta)的生理能量学。

Inferring physiological energetics of loggerhead turtle (Caretta caretta) from existing data using a general metabolic theory.

作者信息

Marn Nina, Kooijman S A L M, Jusup Marko, Legović Tarzan, Klanjšček Tin

机构信息

Ruđer Bošković Institute, Bijenička cesta 54, HR-10002 Zagreb, Croatia.

Vrije Universiteit Amsterdam, De Boelelaan 1105, 1081 HV Amsterdam, The Netherlands.

出版信息

Mar Environ Res. 2017 May;126:14-25. doi: 10.1016/j.marenvres.2017.01.003. Epub 2017 Feb 3.

Abstract

Loggerhead turtle is an endangered sea turtle species with a migratory lifestyle and worldwide distribution, experiencing markedly different habitats throughout its lifetime. Environmental conditions, especially food availability and temperature, constrain the acquisition and the use of available energy, thus affecting physiological processes such as growth, maturation, and reproduction. These physiological processes at the population level determine survival, fecundity, and ultimately the population growth rate-a key indicator of the success of conservation efforts. As a first step towards the comprehensive understanding of how environment shapes the physiology and the life cycle of a loggerhead turtle, we constructed a full life cycle model based on the principles of energy acquisition and utilization embedded in the Dynamic Energy Budget (DEB) theory. We adapted the standard DEB model using data from published and unpublished sources to obtain parameter estimates and model predictions that could be compared with data. The outcome was a successful mathematical description of ontogeny and life history traits of the loggerhead turtle. Some deviations between the model and the data existed (such as an earlier age at sexual maturity and faster growth of the post-hatchlings), yet probable causes for these deviations were found informative and discussed in great detail. Physiological traits such as the capacity to withstand starvation, trade-offs between reproduction and growth, and changes in the energy budget throughout the ontogeny were inferred from the model. The results offer new insights into physiology and ecology of loggerhead turtle with the potential to lead to novel approaches in conservation of this endangered species.

摘要

蠵龟是一种濒危海龟物种,具有洄游习性,分布于世界各地,其一生会经历截然不同的栖息地。环境条件,尤其是食物供应和温度,会限制能量的获取和利用,从而影响生长、成熟和繁殖等生理过程。在种群层面,这些生理过程决定了存活率、繁殖力,最终决定了种群增长率——这是保护工作成效的关键指标。作为全面了解环境如何塑造蠵龟生理特征和生命周期的第一步,我们基于动态能量平衡(DEB)理论中蕴含的能量获取和利用原理构建了一个完整的生命周期模型。我们利用已发表和未发表资料中的数据对标准DEB模型进行了调整,以获得可与数据进行比较的参数估计值和模型预测结果。结果成功地对蠵龟的个体发育和生活史特征进行了数学描述。模型与数据之间存在一些偏差(如性成熟年龄较早以及孵化后幼龟生长较快),不过这些偏差的可能原因具有启发性并得到了详细讨论。从模型中推断出了诸如耐饥饿能力、繁殖与生长之间的权衡以及个体发育过程中能量平衡变化等生理特征。这些结果为蠵龟的生理学和生态学提供了新的见解,有可能为保护这种濒危物种带来新方法。

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