首页> 外文期刊>Oikos: A Journal of Ecology >Partial migration to seasonally-unstable habitat facilitates biological invasions in a predator-dominated system
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Partial migration to seasonally-unstable habitat facilitates biological invasions in a predator-dominated system

机译:部分迁移到季节性不稳定的栖息地有助于捕食者为主的系统中的生物入侵

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摘要

Although partial migration, a phenomenon in which some individuals in a population conduct seasonal migrations while others remain resident, is common among animals, its importance in facilitating biological invasions has not been demonstrated. To illustrate how partial migration might facilitate invasions in spatially complex habitats, we developed an individual-based model of common carp Cyprinus carpio in systems of lakes and winterkill-prone marshes in the Upper Mississippi River Basin (UMRB). Our model predicted that common carp are unable to become invasive in lakes of the UMRB unless they conduct partial migrations into winterkill-prone marshes in which recruitment rates are high in the absence of native predators that forage on carp eggs and larvae. Despite low dispersal rates of juveniles and higher mortality rates of migrants, partial migration was adaptive across a wide range of migration rates and winterkill frequencies. Partial migration rates as low as 10% and winterkill occurrence as infrequent as once in 20 years were sufficient to cause invasiveness because of carp's reproductive potential and longevity. Consistent with the results of our model, empirical data showed that lake connectivity to winterkill-prone marshes was an important driver of carp abundance within the study region. Our results demonstrate that biological invasions may be driven by a small, migratory contingent of a population that exploits more beneficial reproductive habitats.
机译:尽管部分迁徙是动物中普遍存在的一种现象,即人口中的某些人进行季节性迁徙而另一些人仍在居住,但这种现象在动物中很普遍,但在促进生物入侵方面却没有得到证明。为了说明部分迁徙如何促进空间复杂的栖息地的入侵,我们在密西西比河上游流域(UMRB)的湖泊和易发生冬季杀伤性沼泽的系统中建立了基于个体的鲤鱼鲤鱼模型。我们的模型预测,除非在不存在以鲤鱼卵和幼虫觅食的天然食肉动物的情况下,除非它们进行部分迁移到易发生冬季杀伤力的沼泽中,否则它们的招募率很高,否则它们不会在UMRB的湖泊中入侵。尽管少年的散布率低和移民的死亡率高,但部分移民在广泛的移民率和冬杀频率上具有适应性。由于鲤鱼的繁殖潜力和寿命长,部分迁移率低至10%,很少发生20年一次的冬杀现象,足以引起入侵。与我们的模型结果一致,经验数据表明,湖泊与易发生冬季杀灭性沼泽的连通性是研究区域内鲤鱼丰度的重要驱动力。我们的研究结果表明,生物入侵可能是由开发更有利的生殖栖息地的人口的少量迁徙带动的。

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