How and why avian reproductive success varies in response to precipitation: A global meta-analysis
成果类型:
Article
署名作者:
Silber, Katy M.; Boyle, W. Alice
署名单位:
Kansas State University; Western University (University of Western Ontario)
刊物名称:
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
ISSN/ISSBN:
0027-8424; 1091-6490
DOI:
10.1073/pnas.2511125123
发表日期:
2026-03-10
页码:
e2511125123
关键词:
birds
life history
nest success
PRODUCTIVITY
rain
CLIMATE-CHANGE
breeding success
NEST SURVIVAL
temperature
population
weather
seasonality
songbirds
patterns
impacts
摘要:
Precipitation influences animal physiology, behavior, and ecological interactions, therefore affecting demography. However, the nature and strength of those effects vary widely, have been attributed to mechanisms operating over different time scales, and may depend on species-level attributes. We conducted a global meta-analysis accounting for shared evolutionary history to a) understand the nature of relationships between precipitation and avian reproductive success and b) test alternative hypotheses explaining where and why precipitation affects some bird species more than others based on species-level attributes or environment. The nature and magnitude of responses to precipitation were unrelated to species attributes but were dependent upon the timing of precipitation and geographic context. Birds responded negatively to precipitation that fell during the nesting period, while birds responded positively to precipitation that fell prior the breeding season. Responses to precipitation varied with elevation and latitude; high elevations at high latitudes, birds experienced lower reproductive success following precipitation, while at high elevations at low latitudes (i.e., in the tropics), the responses were opposite, though sample sizes at high elevations in the tropics were small. Negative responses in colder regions likely reflect direct thermogenic consequences of wetting. In warmer regions, because positive responses to precipitation were unrelated to diet predation risk, responses to precipitation were likely indirect and mediated by vegetation. Ultimately, this study implicates both direct and indirect responses to precipitation that depend on the timing of precipitation and biogeographic context with large implications for avian populations under changing climate regimes.
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