0000000000353168

AUTHOR

ÇAğan H. ŞEkercioğlu

0000-0003-3193-0377

showing 2 related works from this author

The worldwide variation in avian clutch size across species and space.

2008

Traits such as clutch size vary markedly across species and environmental gradients but have usually been investigated from either a comparative or a geographic perspective, respectively. We analyzed the global variation in clutch size across 5,290 bird species, excluding brood parasites and pelagic species. We integrated intrinsic (morphological, behavioural), extrinsic (environmental), and phylogenetic effects in a combined model that predicts up to 68% of the interspecific variation in clutch size. We then applied the same species-level model to predict mean clutch size across 2,521 assemblages worldwide and found that it explains the observed eco-geographic pattern very well. Clutches a…

0106 biological sciencesAvian clutch sizeQH301-705.5BiogeographyClimateComparative biologyBiologyEnvironment010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular Biology010605 ornithologyNesting BehaviorBirdsAnimalsClutchBiology (General)Macroecologyreproductive and urinary physiologyBrood parasiteEvolutionary BiologyGeneral Immunology and MicrobiologyEcologyGeographyEcologyGeneral NeuroscienceInterspecific competitionClutch SizePhylogeographyFemaleSeasonsGeneral Agricultural and Biological SciencesResearch ArticlePLoS biology
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Differential survival throughout the full annual cycle of a migratory bird presents a life‐history trade‐off

2021

1. Long‐distance migrations are among the most physically demanding feats animals perform. Understanding the potential costs and benefits of such behaviour is a fundamental question in ecology and evolution. A hypothetical cost of migration should be outweighed by higher productivity and/or higher annual survival, but few studies on migratory species have been able to directly quantify patterns of survival throughout the full annual cycle and across the majority of a species’ range. 2. Here, we use telemetry data from 220 migratory Egyptian vultures Neophron percnopterus, tracked for 3,186 bird months and across approximately 70% of the species’ global distribution, to test for differences …

0106 biological sciencesSurvivalRange (biology)Migration costTrade-offEvolutionary ecology010603 evolutionary biology01 natural sciencesLife history theoryLatitudeBirdsMovement ecologyMediterranean seaAfrica NorthernZoologiaNeophron percnopterusMediterranean SeaEgyptian vultureAnimalsZoologíaEcology Evolution Behavior and SystematicsEcology010604 marine biology & hydrobiologyLife-history theoryBayes TheoremAnnual cycleEuropeGeographyProductivity (ecology)Satellite telemetryOrnitologiaAnimal Science and ZoologyEvolutionary ecologyAnimal MigrationSeasons
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