Ecological and anthropogenic drivers of waterfowl productivity are synchronous across species, space, and time

IF 4.3 2区 环境科学与生态学 Q1 ECOLOGY
Mitch D. Weegman, James H. Devries, Robert G. Clark, David W. Howerter, Daniel Gibson, J. Patrick Donnelly, Todd W. Arnold
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引用次数: 0

Abstract

Knowledge of interspecific and spatiotemporal variation in demography–environment relationships is key for understanding the population dynamics of sympatric species and developing multispecies conservation strategies. We used hierarchical random-effects models to examine interspecific and spatial variation in annual productivity in six migratory ducks (i.e., American wigeon [Mareca americana], blue-winged teal [Spatula discors], gadwall [Mareca strepera], green-winged teal [Anas crecca], mallard [Anas platyrhynchos] and northern pintail [Anas acuta]) across six distinct ecostrata in the Prairie Pothole Region of North America. We tested whether breeding habitat conditions (seasonal pond counts, agricultural intensification, and grassland acreage) or cross-seasonal effects (indexed by flooded rice acreage in primary wintering areas) better explained variation in the proportion of juveniles captured during late summer banding. The proportion of juveniles (i.e., productivity) was highly variable within species and ecostrata throughout 1961–2019 and generally declined through time in blue-winged teal, gadwall, mallard, pintail, and wigeon, but there was no support for a trend in green-winged teal. Productivity in Canadian ecostrata declined with increasing agricultural intensification and increased with increasing pond counts. We also found a strong cross-seasonal effect, whereby more flooded rice hectares during winter resulted in higher subsequent productivity. Our results suggest highly consistent environmental and anthropogenic effects on waterfowl productivity across species and space. Our study advances our understanding of current year and cross-seasonal effects on duck productivity across a suite of species and at finer spatial scales, which could help managers better target working-lands conservation programs on both breeding and wintering areas. We encourage other researchers to evaluate environmental drivers of population dynamics among species in a single modeling framework for a deeper understanding of whether conservation plans should be generalized or customized given limited financial resources.

水禽生产力的生态和人为驱动因素在物种、空间和时间上是同步的。
了解人口-环境关系中的种间和时空变异是理解同域物种种群动态和制定多物种保护策略的关键。我们使用分层随机效应模型研究了北美草原洼地地区六种不同生态区域中六种候鸟(即美洲鸽、蓝翅茶隼、绿翅茶隼、野鸭和北部凤尾鸭)年生产力的种间和空间变化。我们测试了繁殖栖息地条件(季节性池塘数量、农业集约化程度和草地面积)或跨季节效应(以主要越冬区的水稻种植面积为指标)是否能更好地解释夏末带环期间捕获的幼鸟比例的变化。1961-2019年期间,不同物种和生态区域的幼鸟比例(即生产力)变化很大,蓝翅水鸭、凫、野鸭、松尾鸭和鸽子的幼鸟比例普遍下降,但不支持绿翅水鸭的趋势。加拿大生态区的生产力随着农业集约化程度的提高而下降,但随着池塘数量的增加而提高。我们还发现了一种强烈的跨季节效应,即冬季水稻淹没面积越大,随后的生产力越高。我们的研究结果表明,环境和人为因素对不同物种和不同空间的水禽生产力的影响是高度一致的。我们的研究加深了我们对当年和跨季节效应对一系列物种和更精细空间尺度上鸭类生产力的影响的理解,这有助于管理者更好地针对繁殖区和越冬区开展工作地保护计划。我们鼓励其他研究人员在单一建模框架内评估物种间种群动态的环境驱动因素,以便更深入地了解在有限的财政资源条件下,保护计划是应该普遍化还是定制化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Ecological Applications
Ecological Applications 环境科学-环境科学
CiteScore
9.50
自引率
2.00%
发文量
268
审稿时长
6 months
期刊介绍: The pages of Ecological Applications are open to research and discussion papers that integrate ecological science and concepts with their application and implications. Of special interest are papers that develop the basic scientific principles on which environmental decision-making should rest, and those that discuss the application of ecological concepts to environmental problem solving, policy, and management. Papers that deal explicitly with policy matters are welcome. Interdisciplinary approaches are encouraged, as are short communications on emerging environmental challenges.
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