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Deficiency of the paternally inherited gene Magel2 alters the development of separation-induced vocalization and maternal behavior in mice

Gabriela M. Bosque Ortiz, Gustavo M. Santana, View ORCID ProfileMarcelo O. Dietrich
doi: https://doi.org/10.1101/2021.04.01.438102
Gabriela M. Bosque Ortiz
1Laboratory of Physiology of Behavior, Department of Comparative Medicine, Yale School of Medicine, New Haven, CT, USA
2Interdepartmental Neuroscience Program, Biological and Biomedical Sciences Program, Graduate School in Arts and Sciences, Yale University, New Haven, CT
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Gustavo M. Santana
1Laboratory of Physiology of Behavior, Department of Comparative Medicine, Yale School of Medicine, New Haven, CT, USA
2Interdepartmental Neuroscience Program, Biological and Biomedical Sciences Program, Graduate School in Arts and Sciences, Yale University, New Haven, CT
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Marcelo O. Dietrich
1Laboratory of Physiology of Behavior, Department of Comparative Medicine, Yale School of Medicine, New Haven, CT, USA
2Interdepartmental Neuroscience Program, Biological and Biomedical Sciences Program, Graduate School in Arts and Sciences, Yale University, New Haven, CT
3Program in Integrative Cell Signaling and Neurobiology of Metabolism, Department of Comparative Medicine, Yale School of Medicine, New Haven, CT, USA
4Department of Neuroscience, Yale School of Medicine, New Haven, CT, USA
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  • ORCID record for Marcelo O. Dietrich
  • For correspondence: marcelo.dietrich@yale.edu
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Abstract

The behavior of offspring results from the combined expression of maternal and paternal genes. Genomic imprinting silences some genes in a parent-of-origin specific manner, a process that, among all animals, occurs only in mammals. How genomic imprinting affects the behavior of mammalian offspring, however, remains poorly understood. Here, we studied how the loss of the paternally inherited gene Magel2 in mouse pups affects the emission of separation-induced ultrasonic vocalizations (USV). Using quantitative analysis of more than one hundred thousand USVs, we characterized the rate of vocalizations as well as their spectral features from postnatal days 6 to 12 (P6-P12), a critical phase of mouse development during which pups fully depend on the mother for survival. Our analyses show that Magel2 deficient offspring emit separation-induced vocalizations at lower rates and with altered spectral features. We also show that dams display altered behavior towards their own Magel2 deficient offspring. In a test to compare the retrieval of two pups, dams retrieve wildtype control pups first and faster than Magel2 deficient offspring. These results suggest that the loss of Magel2 impairs the expression of separation-induced vocalization in pups as well as maternal behavior, both of which support the pups’ growth and development.

Competing Interest Statement

The authors have declared no competing interest.

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Posted July 10, 2021.
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Deficiency of the paternally inherited gene Magel2 alters the development of separation-induced vocalization and maternal behavior in mice
Gabriela M. Bosque Ortiz, Gustavo M. Santana, Marcelo O. Dietrich
bioRxiv 2021.04.01.438102; doi: https://doi.org/10.1101/2021.04.01.438102
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Deficiency of the paternally inherited gene Magel2 alters the development of separation-induced vocalization and maternal behavior in mice
Gabriela M. Bosque Ortiz, Gustavo M. Santana, Marcelo O. Dietrich
bioRxiv 2021.04.01.438102; doi: https://doi.org/10.1101/2021.04.01.438102

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