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Chromosome Abnormalities and Fertility in Domestic Bovids: A Review

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Journal Animals (Basel)
Date 2021 Apr 3
PMID 33809390
Citations 18
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Abstract

After discovering the Robertsonian translocation rob(1;29) in Swedish red cattle and demonstrating its harmful effect on fertility, the cytogenetics applied to domestic animals have been widely expanded in many laboratories in order to find relationships between chromosome abnormalities and their phenotypic effects on animal production. Numerical abnormalities involving autosomes have been rarely reported, as they present abnormal animal phenotypes quickly eliminated by breeders. In contrast, numerical sex chromosome abnormalities and structural chromosome anomalies have been more frequently detected in domestic bovids because they are often not phenotypically visible to breeders. For this reason, these chromosome abnormalities, without a cytogenetic control, escape selection, with subsequent harmful effects on fertility, especially in female carriers. Chromosome abnormalities can also be easily spread through the offspring, especially when using artificial insemination. The advent of chromosome banding and FISH-mapping techniques with specific molecular markers (or chromosome-painting probes) has led to the development of powerful tools for cytogeneticists in their daily work. With these tools, they can identify the chromosomes involved in abnormalities, even when the banding pattern resolution is low (as has been the case in many published papers, especially in the past). Indeed, clinical cytogenetics remains an essential step in the genetic improvement of livestock.

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References
1.
DUNN H, McEntee K, Hall C, Johnson Jr R, Stone W . Cytogenetic and reproductive studies of bulls born co-twin with freemartins. J Reprod Fertil. 1979; 57(1):21-30. DOI: 10.1530/jrf.0.0570021. View

2.
Bouvet A, Popescu C, Colombo G, Molteni L . Synaptonemal complexes analysis in a bull carrying a 4;8 Robertsonian translocation. Ann Genet. 1989; 32(4):193-9. View

3.
SULIMOVICI S, WEISSENBERG R, Lunenfeld B, PADEH B, Soller M . Testicular testosterone biosynthesis in male Saanen goats with XX sex chromosomes. Clin Genet. 1978; 13(5):397-403. DOI: 10.1111/j.1399-0004.1978.tb04137.x. View

4.
Iannuzzi L, Di Meo G, Perucatti A, Zicarelli L . Sex chromosome monosomy (2n=49,X) in a river buffalo (Bubalus bubalis). Vet Rec. 2001; 147(24):690-1. View

5.
Prakash B, Balain D, Lathwal S, Malik R . Trisomy-X in a sterile river buffalo. Vet Rec. 1994; 134(10):241-2. DOI: 10.1136/vr.134.10.241. View