Male antennae of Armadillidium vulgare discriminate Wolbachia-infected females

In natural populations of A. vulgare , the endosymbiont Wolbachia feminizes genetic males. When confronted with genetic females and feminized males, males prefer genetic females. We tested whether the ability of males to discriminate both females involved the detection of chemical compounds by extra...

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Vydané v:Comptes rendus. Chimie Ročník 26; číslo S2; s. 155 - 164
Hlavní autori: Mouret, Nicolas, Tolassy, Vincent, Richard, Freddie-Jeanne
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: Académie des sciences (Paris) 01.01.2023
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ISSN:1631-0748, 1878-1543
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Abstract In natural populations of A. vulgare , the endosymbiont Wolbachia feminizes genetic males. When confronted with genetic females and feminized males, males prefer genetic females. We tested whether the ability of males to discriminate both females involved the detection of chemical compounds by extracting female cuticular compounds through various solvent baths and presenting them to male antennae. We also tested female antennae responses to evaluate the potential impact of Wolbachia on individual detection. Our results showed that only the ethyl acetate extracts triggered a significantly different response of male antennae between the two types of females. No difference between female antennal detection was recorded. Further experiments are required to identify the involved molecule explaining the sexual preference of males towards Wolbachia -free females.
AbstractList In natural populations of A. vulgare, the endosymbiont Wolbachia feminizes genetic males. When confronted with genetic females and feminized males, males prefer genetic females. We tested whether the ability of males to discriminate both females involved the detection of chemical compounds by extracting female cuticular compounds through various solvent baths and presenting them to male antennae. We also tested female antennae responses to evaluate the potential impact of Wolbachia on individual detection. Our results showed that only the ethyl acetate extracts triggered a significantly different response of male antennae between the two types of females. No difference between female antennal detection was recorded. Further experiments are required to identify the involved molecule explaining the sexual preference of males towards Wolbachia-free females. Dans les populations naturelles d’A. vulgare, l’endosymbiote Wolbachia féminise les mâles génétiques. Lorsqu’ils sont confrontés à une femelle génétique ou à un mâle féminisé, les mâles préfèrent la femelle génétique. Nous avons testé si la capacité des mâles à discriminer les deux femelles implique la détection de composés chimiques en extrayant les composés cuticulaires des femelles à travers différents bains de solvants et en les présentant aux antennes des mâles. Nous avons également testé les antennes des femelles pour évaluer l’impact potentiel de Wolbachia dans la détection des individus. Nos résultats montrent que seuls les extraits d’acétate d’éthyle ont déclenché une réponse statistiquement différente des antennes des mâles entre les deux types de femelles. Aucune différence entre les capacités de détection antennaire des femelles n’a été enregistrée. D’autres expériences sont nécessaires pour identifier la molécule en question, expliquant la préférence sexuelle des mâles envers les femelles exemptes de Wolbachia.
In natural populations of A. vulgare , the endosymbiont Wolbachia feminizes genetic males. When confronted with genetic females and feminized males, males prefer genetic females. We tested whether the ability of males to discriminate both females involved the detection of chemical compounds by extracting female cuticular compounds through various solvent baths and presenting them to male antennae. We also tested female antennae responses to evaluate the potential impact of Wolbachia on individual detection. Our results showed that only the ethyl acetate extracts triggered a significantly different response of male antennae between the two types of females. No difference between female antennal detection was recorded. Further experiments are required to identify the involved molecule explaining the sexual preference of males towards Wolbachia -free females.
Author Tolassy, Vincent
Mouret, Nicolas
Richard, Freddie-Jeanne
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  fullname: Richard, Freddie-Jeanne
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Issue S2
Keywords Electroantennography
Endoparasites
Scanning electron microscopy
Choix du partenaire
Microscopie électronique à balayage
Isopodes terrestres
Terrestrial isopods
Wolbachia pipientis
Mate choice
Électroantennographie
Language English
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Snippet In natural populations of A. vulgare , the endosymbiont Wolbachia feminizes genetic males. When confronted with genetic females and feminized males, males...
In natural populations of A. vulgare, the endosymbiont Wolbachia feminizes genetic males. When confronted with genetic females and feminized males, males...
In natural populations of A. vulgare, the endosymbiont Wolbachia feminizes genetic males. When confronted with genetic females and feminized males, males...
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SubjectTerms Electroantennography
Endoparasites
Life Sciences
Mate choice
Scanning electron microscopy
Terrestrial isopods
Wolbachia pipientis
Title Male antennae of Armadillidium vulgare discriminate Wolbachia-infected females
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