Skip to main page content
U.S. flag

An official website of the United States government

Dot gov

The .gov means it’s official.
Federal government websites often end in .gov or .mil. Before sharing sensitive information, make sure you’re on a federal government site.

Https

The site is secure.
The https:// ensures that you are connecting to the official website and that any information you provide is encrypted and transmitted securely.

Access keys NCBI Homepage MyNCBI Homepage Main Content Main Navigation
Review
. 2016 Jul;9(7):783-91.
doi: 10.14202/vetworld.2016.783-791. Epub 2016 Jul 30.

Y-chromosomal genes affecting male fertility: A review

Affiliations
Review

Y-chromosomal genes affecting male fertility: A review

Jasdeep Kaur Dhanoa et al. Vet World. 2016 Jul.

Abstract

The mammalian sex-chromosomes (X and Y) have evolved from autosomes and are involved in sex determination and reproductive traits. The Y-chromosome is the smallest chromosome that consists of 2-3% of the haploid genome and may contain between 70 and 200 genes. The Y-chromosome plays major role in male fertility and is suitable to study the evolutionary relics, speciation, and male infertility and/or subfertility due to its unique features such as long non-recombining region, abundance of repetitive sequences, and holandric inheritance pattern. During evolution, many holandric genes were deleted. The current review discusses the mammalian holandric genes and their functions. The commonly encountered infertility and/or subfertility problems due to point or gross mutation (deletion) of the Y-chromosomal genes have also been discussed. For example, loss or microdeletion of sex-determining region, Y-linked gene results in XY males that exhibit female characteristics, deletion of RNA binding motif, Y-encoded in azoospermic factor b region results in the arrest of spermatogenesis at meiosis. The holandric genes have been covered for associating the mutations with male factor infertility.

Keywords: holandric genes; male fertility; microdeletion sex-chromosome; spermatogenesis.

PubMed Disclaimer

References

    1. Mukhopadhyay C.S, Gupta A.K, Yadav B.R, Khate K, Raina V.S, Mohanty T.K, Dubey P.P. Subfertility in males:An important cause of bull disposal in bovines. Asian Aust. J. Anim. Sci. 2010;23:450–455.
    1. Morgan T.H. The scientific work of miss N. M. Stevens. Science. 1912;36:468–470. - PubMed
    1. Bainbridge D. The X in Sex:How the X Chromosome Controls Our Lives. Vol. 13. Cambridge, MA: Harvard University Press; 2003. pp. 3–5.
    1. Haseltine P.F, Michael E, McClure M.E, Goldberg E.H. Genetic markers of sex differentiation. Psychology. 2013;3:107.
    1. Bichile D.L, Kharkar A.R, Menon P, Potnis-Lele M, Bankar M, Shroff G.A. Y chromosome:Structure and biological functions. Indian J.Basic Appl. Med. Res. 2014;3:152–160.

LinkOut - more resources