Radar revelations: insect availability influences parental provisioning in breeding tree swallows Tachycineta bicolor

IF 1.5 3区 生物学 Q1 ORNITHOLOGY
Victoria F. Simons, Carrie Ann Adams, Eli Bridge, Miguel F. Jimenez, Annika L. Abbott, Marissa E. Drake, Kyle G. Horton
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Abstract

Airspace habitat is essential foraging space for tree swallows Tachycineta bicolor, which rely on flying insects as their main source of food. Insect availability can change quickly from hour-to-hour or day-to-day, however, it is unclear whether insectivores primarily respond to changing atmospheric dynamics, resource dynamics, or a combination. Rapidly changing conditions are common in high-elevation areas – an understudied portion of the tree swallow's breeding range. To explore the relationship between food availability and high-elevation weather conditions as related to female provisioning, we deployed a mobile radar unit to collect insect abundance data during the 2022 and 2023 summer breeding seasons at a high-elevation site in Colorado's Rocky Mountains. We monitored 41 active nest boxes using radio-frequency identification (RFID) technology to track female provisioning behavior. We deployed three models to assess 1) how strongly swallow provisioning rates correlated with insect traffic rates, 2) how well swallow provisioning rates were explained by insect traffic rates and weather conditions, and 3) how insect traffic rates were related to weather conditions. Although there remains substantial unexplained variation in tree swallow provisioning rates, we found a significant positive relationship with insect traffic rate, a negative relationship with precipitation, and curvilinear relationships with temperature and wind speed. Weather variables and time of day explained nearly 80% of the variation in insect traffic rate, and the strength of these relationships suggests weather conditions serve as a good proxy of airborne insect activity. This research presents a link between our vast airspace habitat and animal ecology, advancing our understanding of how flying organisms respond to rapidly changing conditions in aerial environments and how multiple factors contribute to variation in provisioning rates in an aerial insectivore.

Abstract Image

雷达启示:昆虫的可得性影响繁殖树燕 Tachycineta bicolor 的亲代供给
对于以飞虫为主要食物来源的飞燕来说,空域栖息地是必不可少的觅食空间。昆虫的可用性可以每小时或每天快速变化,然而,不清楚食虫动物是否主要对不断变化的大气动态、资源动态或两者的结合做出反应。快速变化的环境在高海拔地区很常见,而高海拔地区是树燕繁殖范围的一个未被充分研究的部分。为了探索食物供应与高海拔天气条件与雌性供应的关系,我们在科罗拉多州落基山脉的一个高海拔地点部署了一个移动雷达单元,收集了2022年和2023年夏季繁殖期的昆虫丰度数据。我们使用射频识别(RFID)技术监测了41个活跃的巢箱,以跟踪雌性的供应行为。我们部署了三个模型来评估:1)食物供给率与昆虫运输率的相关性有多强;2)昆虫运输率和天气条件对食物供给率的解释有多好;3)昆虫运输率与天气条件的关系。尽管树燕供给率仍存在大量无法解释的变化,但我们发现树燕供给率与昆虫运输率呈显著正相关,与降水量呈负相关,与温度和风速呈曲线关系。天气变量和时间解释了近80%的昆虫交通率变化,这些关系的强度表明天气条件可以很好地代表空气中昆虫的活动。这项研究提出了我们广阔的空域栖息地和动物生态之间的联系,促进了我们对飞行生物如何应对空中环境中快速变化的条件以及多种因素如何导致空中食虫动物供应率变化的理解。
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来源期刊
Journal of Avian Biology
Journal of Avian Biology 生物-鸟类学
CiteScore
3.70
自引率
0.00%
发文量
56
审稿时长
3 months
期刊介绍: Journal of Avian Biology publishes empirical and theoretical research in all areas of ornithology, with an emphasis on behavioural ecology, evolution and conservation.
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