Manipulating parental condition affects brood sex ratio, immunocompetence, and early chick mortality in two gull species differing in sexual size dimorphism

Sex allocation theory predicts that parents should adjust their brood sex ratio to maximize fitness returns in relation to parental investment. Adaptive adjustment of sex ratio may be driven by differential costs of rearing sons and daughters or differential benefits of investing limited resources i...

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Published in:Ornithology
Main Authors: Dariusz Bukaciński, Monika Bukacińska, Przemysław Chylarecki
Format: Text
Language:English
Published: American Ornithological Society 2021
Subjects:
Online Access:https://doi.org/10.1093/ornithology/ukab007
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spelling ftbioone:10.1093/ornithology/ukab007 2024-06-02T08:10:03+00:00 Manipulating parental condition affects brood sex ratio, immunocompetence, and early chick mortality in two gull species differing in sexual size dimorphism Dariusz Bukaciński Monika Bukacińska Przemysław Chylarecki Dariusz Bukaciński Monika Bukacińska Przemysław Chylarecki world 2021-04-12 text/HTML https://doi.org/10.1093/ornithology/ukab007 en eng American Ornithological Society doi:10.1093/ornithology/ukab007 All rights reserved. https://doi.org/10.1093/ornithology/ukab007 Text 2021 ftbioone https://doi.org/10.1093/ornithology/ukab007 2024-05-07T00:56:38Z Sex allocation theory predicts that parents should adjust their brood sex ratio to maximize fitness returns in relation to parental investment. Adaptive adjustment of sex ratio may be driven by differential costs of rearing sons and daughters or differential benefits of investing limited resources into offspring of different sex. In both cases, possible sex ratio bias should depend on parental condition. For sexually dimorphic birds with males larger than females, sons may be less likely to fledge since they are more vulnerable to food shortages or because they have impaired immunocompetence due to higher testosterone levels. Poor condition females should thus overproduce daughters to minimize possible reproductive failure. We manipulated the number of eggs laid and the amount of food available to laying females to induce differences in the condition in 2 gull species differing in sexual size dimorphism. In the Black-headed Gull (Chroicocephalus ridibundus), sexual size differences are marginal; but in the Mew Gull (Larus canus), males are 11% larger. In both species, females forced to lay an additional egg (presumed in worse condition) overproduced daughters, whereas females receiving supplemental food before laying (presumed improved condition) overproduced sons. This sex ratio skew was larger in Mew Gull, a species with larger size dimorphism. Chick immunocompetence at hatching was unrelated to sex, being higher in broods of fed mothers and lower for chicks hatched from last-laid eggs. Chick survival between hatching and day 5 post-hatch was positively related to their immunocompetence, but chicks from last-laid eggs and males of Mew Gull, the more dimorphic species, survived less well. Results indicate that costs of raising larger sex offspring coupled with parental condition shape brood sex ratio in populations studied. Adaptive brood sex ratio adjustment occurs mostly before egg laying and includes differential sex allocation in eggs depending on the probability of producing a fledged chick.LAY SUMMARYWe ... Text Larus canus Black-headed Gull Chroicocephalus ridibundus BioOne Online Journals Ornithology 138 2
institution Open Polar
collection BioOne Online Journals
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language English
description Sex allocation theory predicts that parents should adjust their brood sex ratio to maximize fitness returns in relation to parental investment. Adaptive adjustment of sex ratio may be driven by differential costs of rearing sons and daughters or differential benefits of investing limited resources into offspring of different sex. In both cases, possible sex ratio bias should depend on parental condition. For sexually dimorphic birds with males larger than females, sons may be less likely to fledge since they are more vulnerable to food shortages or because they have impaired immunocompetence due to higher testosterone levels. Poor condition females should thus overproduce daughters to minimize possible reproductive failure. We manipulated the number of eggs laid and the amount of food available to laying females to induce differences in the condition in 2 gull species differing in sexual size dimorphism. In the Black-headed Gull (Chroicocephalus ridibundus), sexual size differences are marginal; but in the Mew Gull (Larus canus), males are 11% larger. In both species, females forced to lay an additional egg (presumed in worse condition) overproduced daughters, whereas females receiving supplemental food before laying (presumed improved condition) overproduced sons. This sex ratio skew was larger in Mew Gull, a species with larger size dimorphism. Chick immunocompetence at hatching was unrelated to sex, being higher in broods of fed mothers and lower for chicks hatched from last-laid eggs. Chick survival between hatching and day 5 post-hatch was positively related to their immunocompetence, but chicks from last-laid eggs and males of Mew Gull, the more dimorphic species, survived less well. Results indicate that costs of raising larger sex offspring coupled with parental condition shape brood sex ratio in populations studied. Adaptive brood sex ratio adjustment occurs mostly before egg laying and includes differential sex allocation in eggs depending on the probability of producing a fledged chick.LAY SUMMARYWe ...
author2 Dariusz Bukaciński
Monika Bukacińska
Przemysław Chylarecki
format Text
author Dariusz Bukaciński
Monika Bukacińska
Przemysław Chylarecki
spellingShingle Dariusz Bukaciński
Monika Bukacińska
Przemysław Chylarecki
Manipulating parental condition affects brood sex ratio, immunocompetence, and early chick mortality in two gull species differing in sexual size dimorphism
author_facet Dariusz Bukaciński
Monika Bukacińska
Przemysław Chylarecki
author_sort Dariusz Bukaciński
title Manipulating parental condition affects brood sex ratio, immunocompetence, and early chick mortality in two gull species differing in sexual size dimorphism
title_short Manipulating parental condition affects brood sex ratio, immunocompetence, and early chick mortality in two gull species differing in sexual size dimorphism
title_full Manipulating parental condition affects brood sex ratio, immunocompetence, and early chick mortality in two gull species differing in sexual size dimorphism
title_fullStr Manipulating parental condition affects brood sex ratio, immunocompetence, and early chick mortality in two gull species differing in sexual size dimorphism
title_full_unstemmed Manipulating parental condition affects brood sex ratio, immunocompetence, and early chick mortality in two gull species differing in sexual size dimorphism
title_sort manipulating parental condition affects brood sex ratio, immunocompetence, and early chick mortality in two gull species differing in sexual size dimorphism
publisher American Ornithological Society
publishDate 2021
url https://doi.org/10.1093/ornithology/ukab007
op_coverage world
genre Larus canus
Black-headed Gull
Chroicocephalus ridibundus
genre_facet Larus canus
Black-headed Gull
Chroicocephalus ridibundus
op_source https://doi.org/10.1093/ornithology/ukab007
op_relation doi:10.1093/ornithology/ukab007
op_rights All rights reserved.
op_doi https://doi.org/10.1093/ornithology/ukab007
container_title Ornithology
container_volume 138
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