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Examination of the State-Dependency and Consequences of Foraging in a Low-Energy System, the Gila Monster, Heloderma Suspectum.

机译:低能量系统中觅食的国家依存性和后果,吉拉怪兽,Heloderma Suspectum。

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摘要

Foraging has complex effects on whole-organism homeostasis, and there is considerable evidence that foraging behavior is influenced by both environmental factors (e.g., food availability, predation risk) and the physiological condition of an organism. The optimization of foraging behavior to balance costs and benefits is termed state-dependent foraging (SDF) while behavior that seeks to protect assets of fitness is termed the asset protection principle (APP). A majority of studies examining SDF have focused on the role that energy balance has on the foraging of organisms with high metabolism and high energy demands ("high-energy systems" such as endotherms). In contrast, limited work has examined whether species with low energy use ("low-energy systems" such as vertebrate ectotherms) use an SDF strategy. Additionally, there is a paucity of evidence demonstrating how physiological and environmental factors other than energy balance influence foraging behavior (e.g. hydration state and free-standing water availability). Given these gaps in our understanding of SDF behavior and the APP, I examined the state-dependency and consequences of foraging in a low-energy system occupying a resource-limited environment - the Gila monster (Heloderma suspectum, Cope 1869).;In contrast to what has been observed in a wide variety of taxa, I found that Gila monsters do not use a SDF strategy to manage their energy reserves and that Gila monsters do not defend their energetic assets. However, hydration state and free-standing water availability do affect foraging behavior of Gila monsters. Additionally, as Gila monsters become increasingly dehydrated, they reduce activity to defend hydration state. The SDF behavior of Gila monsters appears to be largely driven by the fact that Gila monsters must separately satisfy energy and water demands with food and free-standing water, respectively, in conjunction with the timescale within which Gila monsters balance their energy and water budgets (supra-annually versus annually, respectively). Given these findings, the impact of anticipated changes in temperature and rainfall patterns in the Sonoran Desert are most likely going to pose their greatest risks to Gila monsters through the direct and indirect effects on water balance.
机译:觅食对整个生物体内的平衡具有复杂的影响,并且有相当多的证据表明,觅食行为受到环境因素(例如食物供应,捕食风险)和生物体生理状况的影响。优化觅食行为以平衡成本和收益的过程称为状态依赖觅食(SDF),而旨在保护适应性资产的行为被称为资产保护原则(APP)。检查SDF的大多数研究都集中在能量平衡对具有高新陈代谢和高能量需求的生物体(“高能系统”,例如吸热)的觅食上的作用。相反,有限的工作研究了低能耗物种(例如脊椎动物等温线)是否使用SDF策略。此外,几乎没有证据表明除能量平衡以外的生理和环境因素如何影响觅食行为(例如水合状态和独立的水供应)。考虑到我们对SDF行为和APP的理解存在这些差距,我研究了在资源有限的环境-吉拉怪兽(Heloderma believeum,Cope 1869)中低能量系统中觅食的状态依赖性和后果。根据在各种分类单元中观察到的情况,我发现吉拉怪兽没有使用SDF策略来管理其能量储备,并且吉拉怪兽没有捍卫其充满活力的资产。但是,水合状态和独立的水供应确实会影响吉拉怪兽的觅食行为。另外,随着吉拉怪物变得越来越脱水,它们会减少防御水合作用的活动。吉拉怪兽的自卫队行为似乎在很大程度上受到以下事实的驱使:吉拉怪兽必须分别通过食物和自来水分别满足能量和水的需求,以及吉拉怪兽平衡能量和水预算的时间范围(每年一次与每年一次)。鉴于这些发现,预计索诺兰沙漠中温度和降雨模式变化的影响很可能会通过对水平衡的直接和间接影响,对吉拉怪物造成最大的风险。

著录项

  • 作者

    Wright, Christian.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Biology Zoology.;Psychology Behavioral Sciences.;Biology Physiology.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:42

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