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Spatio-Temporal Variation in Age Structure and Abundance of the Endangered Snail Kite: Pooling across Regions Masks a Declining and Aging Population

机译:时空变化的年龄结构和濒危蜗牛风筝的丰度:跨区域的汇总掩盖了人口的下降和老龄化。

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摘要

While variation in age structure over time and space has long been considered important for population dynamics and conservation, reliable estimates of such spatio-temporal variation in age structure have been elusive for wild vertebrate populations. This limitation has arisen because of problems of imperfect detection, the potential for temporary emigration impacting assessments of age structure, and limited information on age. However, identifying patterns in age structure is important for making reliable predictions of both short- and long-term dynamics of populations of conservation concern. Using a multistate superpopulation estimator, we estimated region-specific abundance and age structure (the proportion of individuals within each age class) of a highly endangered population of snail kites for two separate regions in Florida over 17 years (1997–2013). We find that in the southern region of the snail kite—a region known to be critical for the long-term persistence of the species—the population has declined significantly since 1997, and during this time, it has increasingly become dominated by older snail kites (> 12 years old). In contrast, in the northern region—a region historically thought to serve primarily as drought refugia—the population has increased significantly since 2007 and age structure is more evenly distributed among age classes. Given that snail kites show senescence at approximately 13 years of age, where individuals suffer higher mortality rates and lower breeding rates, these results reveal an alarming trend for the southern region. Our work illustrates the importance of accounting for spatial structure when assessing changes in abundance and age distribution and the need for monitoring of age structure in imperiled species.
机译:人们长期以来认为年龄结构随时间和空间的变化对于种群动态和保护很重要,但对于野生脊椎动物种群而言,这种年龄结构时空变化的可靠估计难以捉摸。由于检测不完善,临时移民可能影响年龄结构评估以及年龄信息有限等问题,出现了这种限制。但是,确定年龄结构的模式对于可靠地预测受保护种群的短期和长期动态非常重要。我们使用多州人口过剩估算器,对佛罗里达州两个不同地区(1997-2013年)高度濒危的蜗牛风筝种群的特定地区丰度和年龄结构(每个年龄段内个体的比例)进行了估算。我们发现,在蜗牛风筝的南部地区-一个对物种的长期存续至关重要的地区-种群自1997年以来已经显着减少,在此期间,它已逐渐被年龄较大的蜗牛风筝所控制(> 12岁)。相反,在北部地区(历史上一直被认为主要用作干旱避难所),自2007年以来,人口显着增加,并且年龄结构在各个年龄段之间的分布更加平均。考虑到蜗牛风筝在大约13岁时会衰老,个体的死亡率更高,繁殖率更低,这些结果揭示了南部地区的惊人趋势。我们的工作说明了在评估丰度和年龄分布的变化时考虑空间结构的重要性以及监测受威胁物种的年龄结构的必要性。

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