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Ecophysiological constraints shape autumn migratory response to climate change in the North American field sparrow

机译:生态生理限制塑造了北美野麻雀对气候变化的秋季迁徙反应

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摘要

Our ability to accurately forecast species' geographical responses to climate change requires knowledge of the proximate and ultimate drivers of their distribution. Here, we consider the ecophysiological and demographic determinants of the distribution of a partial migrant, the North American field sparrow, Spizella pusilla. From 1940 to 1963, the field sparrow extended its winter northern range margin 222 km polewards. Such expansion was coincident with not only a geographical expansion into suitable breeding habitats, but also a decrease in mean abundance across sites occupied during the winter surveys. Combined, these trends suggest that declining populations along the expansion front either stopped migrating or altered their autumn migration. The poleward expansion was not coincident with climatically induced decreases in peak metabolic energy demand, but it did track increases in ecosystem net primary productivity. After 1963, the species' lower lethal temperature prevented further poleward movement. These findings show how different ecophysiological constraints can interact to change migration and distribution in a demographically declining species.
机译:我们准确预测物种对气候变化的地理响应的能力要求了解其分布的近因和最终驱动因素。在这里,我们考虑部分迁徙者北美野麻雀Spizella pusilla的分布的生态生理和人口统计学决定因素。从1940年到1963年,野麻雀向冬季向北扩展了222 km。这种扩展不仅与地理区域扩展到合适的繁殖栖息地相吻合,而且与冬季调查期间所占据的站点之间的平均丰度降低有关。总的来说,这些趋势表明,扩张前线的人口减少要么停止了迁移,要么改变了他们的秋季迁移。极地扩张与气候引起的峰值代谢能需求量减少并不吻合,但它确实追踪了生态系统净初级生产力的增加。 1963年以后,该物种的较低致死温度阻止了其进一步向极运动。这些发现表明,不同的生态生理限制因素如何相互作用,以改变人口减少的物种中的迁移和分布。

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