4.2 Article

Dispersal in an extensive continuous forest habitat: Marsh Tit Poecile palustris in the Bialowieza National Park

期刊

JOURNAL OF ORNITHOLOGY
卷 156, 期 2, 页码 349-361

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s10336-014-1109-x

关键词

Poecile palustris; Natal dispersal; Breeding dispersal; Primeval forest; Incest avoidance

资金

  1. ALA, Schweizerische Vogelwarte
  2. Ministry of Environmental Protection & Natural Resources
  3. National Fund For Environmental Protection and Water Management
  4. Faculty of Biological Science of Wroclaw University

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Dispersal is one of the least understood features in the life-history of organisms. Theoretical work concentrates on explaining dispersal of organisms in patchy and heterogeneous landscapes, but there are few predictions of dispersal patterns in stable, spatially extensive and largely homogenous landscapes, such as large forests. It is expected that we should observe short-distance dispersal in such places, that, to avoid competition with parents and siblings and incestuous mating, offspring should leave natal patches (natal dispersal), disperse independently in different directions, and move over distances that efficiently minimise the probability of meeting a sibling. Breeding dispersal should be very limited, site tenacity should prevail. To explore these ideas, I use observations of Marsh Tits Poecile palustris (a small passerine specialist of mature forests) made in the strictly protected part of the Bialowieza National Park (Poland) over 21 years. The birds largely followed expectations: all fledglings left their natal territories and dispersed in different directions, and males moved shorter distances than females (median = 570 vs. 1,720 m). Apart from this difference, no influence of population density, fledgling time or family size was observed. No parent-offspring pairing occurred, with just one case of sibling-sibling pairing. After first breeding, individuals remained site-tenacious, as breeding dispersal distances were very short (median ca. 100 m). Such behaviour renders Marsh Tit poorly adapted to cross barriers and undertake long-distance movements, and this is actually observed in fragmented landscapes. Understanding dispersal patterns of organisms from extensive environments would be thus of value for basic and conservation science alike.

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