鳞鹑和山齿鹑的关键生殖行为受温度变化和平均温度的影响。

IF 2.9 2区 生物学 Q2 BIOLOGY Journal of thermal biology Pub Date : 2025-01-16 DOI:10.1016/j.jtherbio.2025.104054
William Kirkpatrick, Erin Sauer, Rachel Carroll, Jeremy Cohen, Craig Davis, Samuel Fuhlendorf, Sarah DuRant
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引用次数: 0

摘要

动物对变化的热变率和热平均的反应不同,两者都是由于气候变暖而变化的。这些热变量如何影响亲代抚育行为可以揭示父母改变行为以满足后代热需求和自我维持的竞争需求的能力,这在次优热条件下变得至关重要。此外,用于检查温度与行为变化之间相互作用的时间框架(例如,护理的季节性模式与个体护理决策的驱动因素)可以提供有关亲代护理行为可塑性的不同信息。研究了鹌鹑和北山齿鹑在多个时间尺度上的热均值、热变异性和孵化行为之间的关系。这两个物种在高热变异性时期都减少了回合长度,这是鸟类亲代行为研究中的一个新发现。热终点(平均与变化)与行为之间的进一步关系取决于时间尺度。例如,总日离巢时间不受日平均温度的影响,但在离巢前2小时,个体离巢时间随着平均温度的升高而增加。这些结果提供了证据,表明不同尺度的热行为关系不同,可能代表了鸟类调整孵化策略以快速响应即时热环境的能力(根据温度改变个体的离巢时间),以满足自我维持的需要,同时也为鸟巢带来了类似的结果(每天总离巢时间)。然而,在高温事件中,较长的非回合持续时间可能会带来繁殖成本,有时会导致卵子或小鸡在经历致命温度时急性死亡。
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Critical reproductive behaviors in Scaled Quail and Northern Bobwhite are affected by thermal variability and mean temperature.

Animals can respond differently to shifting thermal variability versus thermal averages, both of which are changing due to climate warming. How these thermal variables affect parental care behaviors can reveal the ability of parents to modify their behaviors to meet the competing demands of their offspring's thermal needs and self-maintenance, which becomes critical in suboptimal thermal conditions. Further, the time frame used to examine the interplay between temperature and behavioral shifts (e.g., seasonal patterns in care vs. drivers of individual care decisions) can provide different information about the plasticity of parental care behavior. We investigated the relationship between thermal means, thermal variability, and incubation behaviors across multiple timescales in Scaled Quail and Northern Bobwhite. Both species decreased off-bout length during periods of high thermal variability, a novel finding among studies of avian parental behavior. Further relationships between thermal endpoints (mean vs. variation) and behavior differed depending on the temporal scale. For instance, total daily time spent off the nest was not influenced by daily average temperature, yet individual off-bout duration increased with increasing average temperature in the 2 h prior to the off-bout. These results provide evidence that thermal-behavioral relationships differ across scales and likely represent a bird's ability to modify their incubation strategy to rapidly respond to the immediate thermal environment (altering individual off-bout length based on temperature) to meet self-maintenance needs while resulting in a similar outcome for their nest (total daily off-bout time). However, longer off-bout durations during high temperature events can come with reproductive costs, sometimes resulting in acute offspring mortality when eggs or chicks experience lethal temperatures.

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来源期刊
Journal of thermal biology
Journal of thermal biology 生物-动物学
CiteScore
5.30
自引率
7.40%
发文量
196
审稿时长
14.5 weeks
期刊介绍: The Journal of Thermal Biology publishes articles that advance our knowledge on the ways and mechanisms through which temperature affects man and animals. This includes studies of their responses to these effects and on the ecological consequences. Directly relevant to this theme are: • The mechanisms of thermal limitation, heat and cold injury, and the resistance of organisms to extremes of temperature • The mechanisms involved in acclimation, acclimatization and evolutionary adaptation to temperature • Mechanisms underlying the patterns of hibernation, torpor, dormancy, aestivation and diapause • Effects of temperature on reproduction and development, growth, ageing and life-span • Studies on modelling heat transfer between organisms and their environment • The contributions of temperature to effects of climate change on animal species and man • Studies of conservation biology and physiology related to temperature • Behavioural and physiological regulation of body temperature including its pathophysiology and fever • Medical applications of hypo- and hyperthermia Article types: • Original articles • Review articles
期刊最新文献
Single and combined effects of environmental heat stress and physical exercise on thermoregulation, executive function, and cerebral oxygenation. Supercooling tolerance in the Mexican lizard Barisia imbricata (Squamata: Anguidae). Critical reproductive behaviors in Scaled Quail and Northern Bobwhite are affected by thermal variability and mean temperature. Acclimation, thermal tolerance and aerobic metabolism of narrow-clawed crayfish, Pontastacus leptodactylus (Eschscholtz, 1823). Repeatability of critical thermal maximum (CTmax) in two freshwater ectotherms across contexts.
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