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  4. Climate change is associated with asynchrony in arrival between two sympatric cuckoos and both host arrival and prey emergence
 
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Climate change is associated with asynchrony in arrival between two sympatric cuckoos and both host arrival and prey emergence

Type
Journal article
Language
English
Date issued
2024
Author
Mikula, Peter
Askeyev, Oleg V.
Askeyev, Arthur O.
Askeyev, Igor V.
Morelli, Federico
Menzel, Annette
Tryjanowski, Piotr 
Faculty
Wydział Medycyny Weterynaryjnej i Nauk o Zwierzętach
PBN discipline
biological sciences
Journal
Royal Society Open Science
ISSN
2054-5703
DOI
10.1098/rsos.231691
Web address
https://royalsocietypublishing.org/doi/full/10.1098/rsos.231691
Volume
11
Number
1
Pages from-to
art. 231691
Abstract (EN)
Matching the timing of spring arrival to the breeding grounds with hosts and prey is crucial for migratory brood parasites such as cuckoos. Previous studies have focused mostly on phenological mismatch between a single cuckoo species and its hosts but information regarding climate-driven mismatch between multiple sympatric cuckoo species and their hosts and invertebrate prey is still lacking. Here, we analysed long-term data (1988–2023) on the first arrival date of two declining migratory cuckoo species and their 14 migratory host species breeding in sympatry and prey emergence date in Tatarstan (southeast Russia). We found that the common cuckoo (Cuculus canorus; wintering in Africa) generally arrived on breeding grounds earlier than the oriental cuckoo (Cuculus optatus; wintering in southeast Asia and Australia). Both cuckoos have advanced their arrival dates over 36 years but less than their hosts, potentially resulting in an increasing arrival mismatch between cuckoos and their hosts. Moreover, cuckoo arrival advanced less than the emergence date of their prey over time. These observations indicate that climate change may disrupt co-fluctuation in the phenology of important life stages between multiple sympatric brood parasites, their hosts and prey with potential cascading consequences for population dynamics of involved species.
Keywords (EN)
  • brood parasite

  • cucko

  • phenological mismatch

  • phenology

  • temperature

  • temporal trends

License
cc-bycc-by CC-BY - Attribution
Open access date
January 17, 2024
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