Literature DB >> 27670638

Quantifying full phenological event distributions reveals simultaneous advances, temporal stability and delays in spring and autumn migration timing in long-distance migratory birds.

Will T S Miles1,2, Mark Bolton3, Peter Davis4, Roy Dennis5, Roger Broad2, Iain Robertson2, Nick J Riddiford2, Paul V Harvey6, Roger Riddington7, Deryk N Shaw2, David Parnaby2, Jane M Reid1,2.   

Abstract

Phenological changes in key seasonally expressed life-history traits occurring across periods of climatic and environmental change can cause temporal mismatches between interacting species, and thereby impact population and community dynamics. However, studies quantifying long-term phenological changes have commonly only measured variation occurring in spring, measured as the first or mean dates on which focal traits or events were observed. Few studies have considered seasonally paired events spanning spring and autumn or tested the key assumption that single convenient metrics accurately capture entire event distributions. We used 60 years (1955-2014) of daily bird migration census data from Fair Isle, Scotland, to comprehensively quantify the degree to which the full distributions of spring and autumn migration timing of 13 species of long-distance migratory bird changed across a period of substantial climatic and environmental change. In most species, mean spring and autumn migration dates changed little. However, the early migration phase (≤10th percentile date) commonly got earlier, while the late migration phase (≥90th percentile date) commonly got later. Consequently, species' total migration durations typically lengthened across years. Spring and autumn migration phenologies were not consistently correlated within or between years within species and hence were not tightly coupled. Furthermore, different metrics quantifying different aspects of migration phenology within seasons were not strongly cross-correlated, meaning that no single metric adequately described the full pattern of phenological change. These analyses therefore reveal complex patterns of simultaneous advancement, temporal stability and delay in spring and autumn migration phenologies, altering species' life-history structures. Additionally, they demonstrate that this complexity is only revealed if multiple metrics encompassing entire seasonal event distributions, rather than single metrics, are used to quantify phenological change. Existing evidence of long-term phenological changes detected using only one or two metrics should consequently be interpreted cautiously because divergent changes occurring simultaneously could potentially have remained undetected.
© 2016 John Wiley & Sons Ltd.

Keywords:  Fair Isle; life-history events; long-distance migration; passerine; phenology; seasonal linking

Mesh:

Year:  2016        PMID: 27670638     DOI: 10.1111/gcb.13486

Source DB:  PubMed          Journal:  Glob Chang Biol        ISSN: 1354-1013            Impact factor:   10.863


  6 in total

Review 1.  Large-Scale Climatic Patterns Have Stronger Carry-Over Effects than Local Temperatures on Spring Phenology of Long-Distance Passerine Migrants between Europe and Africa.

Authors:  Magdalena Remisiewicz; Les G Underhill
Journal:  Animals (Basel)       Date:  2022-07-05       Impact factor: 3.231

2.  The start of migration correlates with arrival timing, and the total speed of migration increases with migration distance in migratory songbirds: a cross-continental analysis.

Authors:  Heiko Schmaljohann
Journal:  Mov Ecol       Date:  2019-08-12       Impact factor: 3.600

3.  Adaptive responses of animals to climate change are most likely insufficient.

Authors:  Viktoriia Radchuk; Thomas Reed; Céline Teplitsky; Martijn van de Pol; Anne Charmantier; Christopher Hassall; Peter Adamík; Frank Adriaensen; Markus P Ahola; Peter Arcese; Jesús Miguel Avilés; Javier Balbontin; Karl S Berg; Antoni Borras; Sarah Burthe; Jean Clobert; Nina Dehnhard; Florentino de Lope; André A Dhondt; Niels J Dingemanse; Hideyuki Doi; Tapio Eeva; Joerns Fickel; Iolanda Filella; Frode Fossøy; Anne E Goodenough; Stephen J G Hall; Bengt Hansson; Michael Harris; Dennis Hasselquist; Thomas Hickler; Jasmin Joshi; Heather Kharouba; Juan Gabriel Martínez; Jean-Baptiste Mihoub; James A Mills; Mercedes Molina-Morales; Arne Moksnes; Arpat Ozgul; Deseada Parejo; Philippe Pilard; Maud Poisbleau; Francois Rousset; Mark-Oliver Rödel; David Scott; Juan Carlos Senar; Constanti Stefanescu; Bård G Stokke; Tamotsu Kusano; Maja Tarka; Corey E Tarwater; Kirsten Thonicke; Jack Thorley; Andreas Wilting; Piotr Tryjanowski; Juha Merilä; Ben C Sheldon; Anders Pape Møller; Erik Matthysen; Fredric Janzen; F Stephen Dobson; Marcel E Visser; Steven R Beissinger; Alexandre Courtiol; Stephanie Kramer-Schadt
Journal:  Nat Commun       Date:  2019-07-23       Impact factor: 14.919

4.  Limited flexibility in departure timing of migratory passerines at the East-Mediterranean flyway.

Authors:  Yaara Aharon-Rotman; Gidon Perlman; Yosef Kiat; Tal Raz; Amir Balaban; Takuya Iwamura
Journal:  Sci Rep       Date:  2021-03-04       Impact factor: 4.379

5.  Climate in Africa sequentially shapes spring passage of Willow Warbler Phylloscopus trochilus across the Baltic coast.

Authors:  Magdalena Remisiewicz; Les G Underhill
Journal:  PeerJ       Date:  2022-02-18       Impact factor: 2.984

6.  Climatic variation in Africa and Europe has combined effects on timing of spring migration in a long-distance migrant Willow Warbler Phylloscopus trochilus.

Authors:  Magdalena Remisiewicz; Les G Underhill
Journal:  PeerJ       Date:  2020-03-17       Impact factor: 2.984

  6 in total

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