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生态学杂志 ›› 2026, Vol. 45 ›› Issue (9): 3128-3135.doi: 10.13292/j.1000-4890.202609.022

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鸟类迁徙行为与血孢子虫相互作用关系及协同演化

陈泽林,黄希*   

  1. (北京师范大学生命科学学院, 生物多样性与生态工程教育部重点实验室, 北京 100875)

  • 出版日期:2026-09-10 发布日期:2026-09-08

The interaction and coevolution between avian migration behavior and haemosporidian parasites.

CHEN Zeling, HUANG Xi*   

  1. (College of Life Sciences, Beijing Normal University, Key Laboratory for Biodiversity Science and Ecological Engineering, Ministry of Education, Beijing 100875, China).

  • Online:2026-09-10 Published:2026-09-08

摘要: 迁徙是一种重要的生态现象,近年来,寄生虫感染被认为可能是其驱动因素之一,并逐渐成为研究热点。本文以血孢子虫(Haemosporida)及其鸟类宿主为例,展示寄生虫感染与野生迁徙行为之间复杂的互作机制及协同演化关系。一方面,迁徙鸟类由于利用多样栖息地、高密度聚集和免疫抑制而增加接触和感染血孢子虫的机会,这会促进血孢子虫的跨物种传播和地理扩散;另一方面,鸟类迁徙过程中严重感染个体可能死亡,慢性感染个体则在无寄生虫区恢复健康,即鸟类可通过迁徙逃离感染高发区以降低感染风险。此外,血孢子虫感染可通过干扰能量投入影响迁徙鸟类物候,包括迁徙出发和抵达时间等。从演化角度看,血孢子虫感染作为选择压力影响鸟类迁徙策略演化的同时,鸟类迁徙也通过扩大寄生虫传播范围、提供更多宿主转移机会、施加周期性选择压力显著驱动了血孢子虫的物种形成及生态适应。当前研究仍面临着野外长期追踪与机制验证的挑战,未来可整合组学分析、新型监测技术和控制实验以深入理解全球变化下的鸟类迁徙-寄生虫的相互作用及协同演化。


关键词: 寄生虫, 迁徙暴露, 迁徙逃避, 免疫权衡, 宿主转移

Abstract: Migration is an ecological phenomenon driven by multiple factors, among which parasite infection has recently gained increasing attention and is becoming a research hotspot. Using Haemosporidia and their avian hosts as a model system, we examined the complex interaction mechanisms and coevolutionary relationships between parasite infection and migration. On one hand, migratory birds are exposed to higher infection risk from haemosporidian parasites, due to their utilization of diverse habitats, high-density aggregations, and immune suppression, which facilitates transmission and geographical spread of the parasites. On the other hand, severely infected individuals may die during migration, and chronically infected individuals can recover in parasite-free areas. Birds can therefore mitigate infection risk by migrating away from high-prevalence areas. Furthermore, haemosporidian infection can influence the phenology of migratory birds, including departure and arrival times, by interfering with energy allocation. From an evolutionary perspective, haemosporidian infection acts as a selection pressure which shapes the evolution of avian migration strategies. Conversely, bird migration drives speciation and local adaptation of Haemosporida by expanding their geographical ranges, providing opportunities for host switching, and imposing periodic selective pressure. Current research still faces challenges regarding long-term field tracking and mechanistic verification. Future studies may integrate omics analyses, novel monitoring technologies, and manipulative experiments to gain an in-depth understanding of bird migration-parasite interactions and coevolution under global change.


Key words: parasite, migratory exposure, migratory escape, immune trade-off, host switching