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Reconsideration of the determinants of clutch size, asynchronous incubation, and nest building in birds using computer simulations.

机译:使用计算机模拟重新考虑离合器尺寸,异步孵化和鸟类筑巢的决定因素。

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摘要

Adaptations for breeding in birds have long been an important area of study in evolutionary ecology. Because the breeding season is the most dangerous period to not only offspring but also parent birds, predators and anti-predator responses of bird play a crucial role in avian reproduction. Despite much effort, predators as a determinant of some breeding traits often remain unclear due to too many ways in which predators might affect reproduction. Computer simulations allow one to control many factors and to look into the effect of each factor on breeding adaptations even under complex situations. In this study, I examined the determinants of avian breeding adaptations under the risk of predation with computer simulations. The first portion of my research focused on why birds invest or do not invest time in the construction of a safe nest. When parent birds build a safe nest in a short time, then an investment in nest building will be favored. However, even when a nest provides a great increase in survival rate, nest construction is often not favored if it requires a substantial investment of time.;Secondly, I used computer simulations to examine and expand the Nest Failure Hypothesis for hatching asynchrony, in which the distribution of the risk of nest predation across the nesting cycle determines the optimal onset of incubation. Long-standing theory on this matter assumes only a single nesting attempt per season. However, allowing for multiple nesting attempts per season greatly changes the expectations of previous theoretical/empirical studies focused on the Nest Failure hypothesis. The most important insight here is that the daily probabilities of survival across the entire nesting cycle will influence the optimal onset of incubation, not just a few key probabilities as argued in classic theoretical papers on this topic.;Lastly, to address how egg viability influences clutch size in birds, I used computer simulations to determine optimal clutch sizes under various scenarios. As many birds begin incubation after the clutch has been completed, eggs laid early go a long time un-incubated and are less likely to hatch (i.e., they are less viable). Current conceptual theory suggest implies that these drops in egg viability could be a strong determinant of optimal clutch size in birds. However, my simulations show that a drop in egg viability alone cannot determine the optimal clutch sizes. A drop in viability will be a strong determinant of clutch size, but only in conjunction with factor as other factors like multiple nesting attempts per season, limitation in the total eggs produced per season, and the risk of nest predation.
机译:长期以来,适应鸟类繁殖一直是进化生态学的重要研究领域。由于繁殖季节不仅是后代的最危险时期,也是亲鸟的最危险时期,因此鸟类的捕食者和反捕食者反应在禽类繁殖中起着至关重要的作用。尽管付出了很大的努力,但由于掠食者可能影响繁殖的方式太多,因此掠食者作为某些繁殖性状的决定因素通常仍然不清楚。通过计算机模拟,即使在复杂的情况下,也可以控制许多因素,并研究每种因素对育种适应的影响。在这项研究中,我使用计算机模拟研究了在捕食风险下鸟类繁殖适应的决定因素。我的研究的第一部分侧重于鸟类为什么要投资或不投资时间来建造安全的巢穴。当亲禽在短时间内建立安全的巢穴时,对巢穴建设的投资将受到青睐。但是,即使巢可以大大提高成活率,但是如果需要大量的时间,巢构建通常也不受欢迎。其次,我使用计算机模拟来检查和扩展巢失败假说以孵化异步,其中整个筑巢周期中巢捕食风险的分布决定了最佳的孵化开始时间。关于这个问题的长期理论假设每个季节仅进行一次嵌套尝试。但是,每个季节允许多次筑巢尝试极大地改变了以前针对巢失效假设的理论/经验研究的期望。这里最重要的见解是,整个筑巢周期中每日生存的概率将影响孵化的最佳开始,而不仅仅是关于这一主题的经典理论论文所论证的几个关键概率。鸟的离合器尺寸,我使用计算机模拟来确定各种情况下的最佳离合器尺寸。由于许多鸟在离合器完成后才开始孵化,早产的卵很长时间没有孵化,孵化的可能性也较小(即它们的生存能力较差)。当前的概念理论表明,这些卵生存力的下降可能是决定家禽最佳离体大小的重要决定因素。但是,我的模拟表明,仅鸡蛋生存力的下降无法确定最佳离合器尺寸。存活力的下降将是离合器尺寸的重要决定因素,但仅与其他因素相关联,例如每个季节多次筑巢尝试,每个季节生产的总卵数受到限制以及巢被捕食的风险。

著录项

  • 作者

    Lee, Jongkoo.;

  • 作者单位

    Indiana State University.;

  • 授予单位 Indiana State University.;
  • 学科 Ecology.;Zoology.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 104 p.
  • 总页数 104
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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