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首页> 外文期刊>Behavioral Ecology and Sociobiology >Self-organization in the dynamics of huddling behavior in Octodon degus in two contrasting seasons
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Self-organization in the dynamics of huddling behavior in Octodon degus in two contrasting seasons

机译:两个对比季节中八爪鱼天牛挤缩行为动力学的自组织

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摘要

In small mammals, huddling appears as an efficient response to low temperature with important consequences in energy saving, which in turn affect individual fitness. It has been proposed that this behavior is a self-organized process. However, to prove self-organization, it is necessary to study the dynamics of huddling, ruling out the presence of leaders. The objectives of this study were to determine the dynamics of huddling at different temperatures in Octodon degus, documenting the presence or absence of leaders, and to study the consistency of this behavior in two contrasting seasons. We found that huddling dynamics did not indicate the presence of leader initiators of the clustering at lower temperatures. There was no deterministic pattern in huddling dynamics, in any period or at any temperature, suggesting a behavior triggered spontaneously without any order, hierarchy, or recipes. The effect of temperature on huddling behavior was marked and similar in both seasons. The variability of the huddled groups was greater at higher temperatures, which is explained by a greater movement of individuals and more frequent variations in the number and size of the groups at higher temperatures. The results describe huddling as a self-organized behavior, more economical than other physiological processes and therefore preserved by natural selection. This increases its importance for survival and fitness given the significant reduction in energy expenditure achieved under conditions of low temperatures and reduced availability of food, such as during the breeding season of O. degus.
机译:在小型哺乳动物中,拥挤表现为对低温的有效反应,在节能方面具有重要意义,继而影响个体适应性。已经提出,这种行为是自组织的过程。但是,为了证明自己的组织能力,有必要研究缩的动力,排除领导者的存在。这项研究的目的是确定八爪鱼在不同温度下的缩动态,记录前导者的存在与否,并研究两个相反季节中这种行为的一致性。我们发现,拥挤的动力学并不表明在较低温度下存在簇的前导引发剂。在任何时期或任何温度下,拥挤动力学都没有确定性模式,这表明行为是在没有任何顺序,层次或配方的情况下自发触发的。在两个季节中,温度对拥挤行为的影响是明显且相似的。拥挤的群体的变异性在更高的温度下更大,这可以解释为个体的运动更大,在更高的温度下,群体的数量和大小的变化更频繁。结果表明,拥挤是一种自组织行为,比其他生理过程更经济,因此可以自然选择保留。鉴于在低温和食物供应减少的情况下(例如在德古斯豆的繁殖季节)实现的能量消耗显着减少,这对于生存和适应性的重要性日益提高。

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