Cargando…

Copy number variation of horse Y chromosome genes in normal equine populations and in horses with abnormal sex development and subfertility: relationship of copy number variations with Y haplogroups

Structural rearrangements like copy number variations in the male-specific Y chromosome have been associated with male fertility phenotypes in human and mouse but have been sparsely studied in other mammalian species. Here, we designed digital droplet PCR assays for 7 horse male-specific Y chromosom...

Descripción completa

Detalles Bibliográficos
Autores principales: Castaneda, Caitlin, Radović, Lara, Felkel, Sabine, Juras, Rytis, Davis, Brian W, Cothran, Ernest Gus, Wallner, Barbara, Raudsepp, Terje
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9713435/
https://www.ncbi.nlm.nih.gov/pubmed/36227030
http://dx.doi.org/10.1093/g3journal/jkac278
_version_ 1784842018696986624
author Castaneda, Caitlin
Radović, Lara
Felkel, Sabine
Juras, Rytis
Davis, Brian W
Cothran, Ernest Gus
Wallner, Barbara
Raudsepp, Terje
author_facet Castaneda, Caitlin
Radović, Lara
Felkel, Sabine
Juras, Rytis
Davis, Brian W
Cothran, Ernest Gus
Wallner, Barbara
Raudsepp, Terje
author_sort Castaneda, Caitlin
collection PubMed
description Structural rearrangements like copy number variations in the male-specific Y chromosome have been associated with male fertility phenotypes in human and mouse but have been sparsely studied in other mammalian species. Here, we designed digital droplet PCR assays for 7 horse male-specific Y chromosome multicopy genes and SRY and evaluated their absolute copy numbers in 209 normal male horses of 22 breeds, 73 XY horses with disorders of sex development and/or infertility, 5 Przewalski’s horses and 2 kulans. This established baseline copy number for these genes in horses. The TSPY gene showed the highest copy number and was the most copy number variable between individuals and breeds. SRY was a single-copy gene in most horses but had 2–3 copies in some indigenous breeds. Since SRY is flanked by 2 copies of RBMY, their copy number variations were interrelated and may lead to SRY-negative XY disorders of sex development. The Przewalski’s horse and kulan had 1 copy of SRY and RBMY. TSPY and ETSTY2 showed significant copy number variations between cryptorchid and normal males (P < 0.05). No significant copy number variations were observed in subfertile/infertile males. Notably, copy number of TSPY and ETSTY5 differed between successive male generations and between cloned horses, indicating germline and somatic mechanisms for copy number variations. We observed no correlation between male-specific Y chromosome gene copy number variations and male-specific Y chromosome haplotypes. We conclude that the ampliconic male-specific Y chromosome reference assembly has deficiencies and further studies with an improved male-specific Y chromosome assembly are needed to determine selective constraints over horse male-specific Y chromosome gene copy number and their relation to stallion reproduction and male biology.
format Online
Article
Text
id pubmed-9713435
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-97134352022-12-02 Copy number variation of horse Y chromosome genes in normal equine populations and in horses with abnormal sex development and subfertility: relationship of copy number variations with Y haplogroups Castaneda, Caitlin Radović, Lara Felkel, Sabine Juras, Rytis Davis, Brian W Cothran, Ernest Gus Wallner, Barbara Raudsepp, Terje G3 (Bethesda) Investigation Structural rearrangements like copy number variations in the male-specific Y chromosome have been associated with male fertility phenotypes in human and mouse but have been sparsely studied in other mammalian species. Here, we designed digital droplet PCR assays for 7 horse male-specific Y chromosome multicopy genes and SRY and evaluated their absolute copy numbers in 209 normal male horses of 22 breeds, 73 XY horses with disorders of sex development and/or infertility, 5 Przewalski’s horses and 2 kulans. This established baseline copy number for these genes in horses. The TSPY gene showed the highest copy number and was the most copy number variable between individuals and breeds. SRY was a single-copy gene in most horses but had 2–3 copies in some indigenous breeds. Since SRY is flanked by 2 copies of RBMY, their copy number variations were interrelated and may lead to SRY-negative XY disorders of sex development. The Przewalski’s horse and kulan had 1 copy of SRY and RBMY. TSPY and ETSTY2 showed significant copy number variations between cryptorchid and normal males (P < 0.05). No significant copy number variations were observed in subfertile/infertile males. Notably, copy number of TSPY and ETSTY5 differed between successive male generations and between cloned horses, indicating germline and somatic mechanisms for copy number variations. We observed no correlation between male-specific Y chromosome gene copy number variations and male-specific Y chromosome haplotypes. We conclude that the ampliconic male-specific Y chromosome reference assembly has deficiencies and further studies with an improved male-specific Y chromosome assembly are needed to determine selective constraints over horse male-specific Y chromosome gene copy number and their relation to stallion reproduction and male biology. Oxford University Press 2022-10-13 /pmc/articles/PMC9713435/ /pubmed/36227030 http://dx.doi.org/10.1093/g3journal/jkac278 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of Genetics Society of America. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Investigation
Castaneda, Caitlin
Radović, Lara
Felkel, Sabine
Juras, Rytis
Davis, Brian W
Cothran, Ernest Gus
Wallner, Barbara
Raudsepp, Terje
Copy number variation of horse Y chromosome genes in normal equine populations and in horses with abnormal sex development and subfertility: relationship of copy number variations with Y haplogroups
title Copy number variation of horse Y chromosome genes in normal equine populations and in horses with abnormal sex development and subfertility: relationship of copy number variations with Y haplogroups
title_full Copy number variation of horse Y chromosome genes in normal equine populations and in horses with abnormal sex development and subfertility: relationship of copy number variations with Y haplogroups
title_fullStr Copy number variation of horse Y chromosome genes in normal equine populations and in horses with abnormal sex development and subfertility: relationship of copy number variations with Y haplogroups
title_full_unstemmed Copy number variation of horse Y chromosome genes in normal equine populations and in horses with abnormal sex development and subfertility: relationship of copy number variations with Y haplogroups
title_short Copy number variation of horse Y chromosome genes in normal equine populations and in horses with abnormal sex development and subfertility: relationship of copy number variations with Y haplogroups
title_sort copy number variation of horse y chromosome genes in normal equine populations and in horses with abnormal sex development and subfertility: relationship of copy number variations with y haplogroups
topic Investigation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9713435/
https://www.ncbi.nlm.nih.gov/pubmed/36227030
http://dx.doi.org/10.1093/g3journal/jkac278
work_keys_str_mv AT castanedacaitlin copynumbervariationofhorseychromosomegenesinnormalequinepopulationsandinhorseswithabnormalsexdevelopmentandsubfertilityrelationshipofcopynumbervariationswithyhaplogroups
AT radoviclara copynumbervariationofhorseychromosomegenesinnormalequinepopulationsandinhorseswithabnormalsexdevelopmentandsubfertilityrelationshipofcopynumbervariationswithyhaplogroups
AT felkelsabine copynumbervariationofhorseychromosomegenesinnormalequinepopulationsandinhorseswithabnormalsexdevelopmentandsubfertilityrelationshipofcopynumbervariationswithyhaplogroups
AT jurasrytis copynumbervariationofhorseychromosomegenesinnormalequinepopulationsandinhorseswithabnormalsexdevelopmentandsubfertilityrelationshipofcopynumbervariationswithyhaplogroups
AT davisbrianw copynumbervariationofhorseychromosomegenesinnormalequinepopulationsandinhorseswithabnormalsexdevelopmentandsubfertilityrelationshipofcopynumbervariationswithyhaplogroups
AT cothranernestgus copynumbervariationofhorseychromosomegenesinnormalequinepopulationsandinhorseswithabnormalsexdevelopmentandsubfertilityrelationshipofcopynumbervariationswithyhaplogroups
AT wallnerbarbara copynumbervariationofhorseychromosomegenesinnormalequinepopulationsandinhorseswithabnormalsexdevelopmentandsubfertilityrelationshipofcopynumbervariationswithyhaplogroups
AT raudseppterje copynumbervariationofhorseychromosomegenesinnormalequinepopulationsandinhorseswithabnormalsexdevelopmentandsubfertilityrelationshipofcopynumbervariationswithyhaplogroups