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首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Ecological Causes and Consequences of Intratropical Migration in Temperate-Breeding Migratory Birds
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Ecological Causes and Consequences of Intratropical Migration in Temperate-Breeding Migratory Birds

机译:温带候鸟的热带迁徙的生态原因和后果

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New discoveries from direct tracking of temperate-breeding passerines show that intratropical migration (ITM) occurs in a growing number of species, which has important implications for understanding their evolution of migration, population dynamics, and conservation needs. Our large sample size (N = 191) for purple martins (Progne subis subis) tracked with geolocators to winter sites in Brazil, combined with geolocator deployments at breeding colonies across North America, allowed us to test hypotheses for ITM, something which has not yet been possible to do for other species. ITM in purple martins was not obligate; only 44% of individuals exhibited ITM, and movements were not coordinated in time or space. We found no evidence to support the resource hypothesis; rainfall and temperature experienced by individual birds during their last 2 weeks at their first roost site were similar to conditions at their second roost site after ITM. Birds generally migrated away from the heavily forested northwestern Amazon to less forested regions to the south and east. ITM in this aerial insectivore appears to support the competition-avoidance hypothesis and may be triggered by increasing local density in the core wintering region. Full life cycle models and migratory networks will need to incorporate ITM to properly address seasonal carryover effects and identify which wintering regions are most important for conservation.
机译:直接跟踪温带雀形目的新发现表明,热带内迁徙(ITM)发生在越来越多的物种中,这对于理解其迁徙的演变,种群动态和保护需求具有重要意义。我们使用地理定位器追踪到巴西冬季地点的紫色马丁(Progne subis subis)的大样本量(N = 191),再加上在北美繁殖地的地理定位器部署,使我们能够检验ITM的假设,而这还没有有可能为其他物种做。紫色马丁马丁的ITM并不是必须的。只有44%的人表现出ITM,而且动作在时间或空间上都不协调。我们发现没有证据支持资源假设。在ITM之后的第二个栖息地,单个鸟类在最近两个星期内在其第一个栖息地经历的降雨和温度与它们相似。鸟类通常从茂密的西北亚马逊地区迁移到南部和东部的茂密森林地区。这种空中食虫动物的ITM似乎支持避免竞争的假设,并可能由核心越冬地区局部密度的增加触发。完整的生命周期模型和迁徙网络将需要纳入ITM,以正确解决季节性结转影响,并确定哪些越冬地区对于保护最为重要。

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