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Topic:Chromosomes

Chromosomes in horses are structures composed of DNA and proteins that carry genetic information crucial for the development, functioning, and reproduction of equine species. Horses typically have 64 chromosomes, organized into 32 pairs, which include one pair of sex chromosomes that determine the genetic sex of the individual. Chromosomal analysis in horses is used to study genetic disorders, inheritance patterns, and species evolution. Variations or abnormalities in chromosome number or structure can lead to developmental issues and impact fertility. This page compiles peer-reviewed research studies and scholarly articles that explore the structure, function, and implications of chromosomal variations in equine genetics and breeding.
High-resolution gene maps of horse chromosomes 14 and 21: additional insights into evolution and rearrangements of HSA5 homologs in mammals.
Genomics    August 17, 2006   Volume 89, Issue 1 89-112 doi: 10.1016/j.ygeno.2006.06.012
Goh G, Raudsepp T, Durkin K, Wagner ML, Schäffer AA, Agarwala R, Tozaki T, Mickelson JR, Chowdhary BP.High-resolution physically ordered gene maps for equine homologs of human chromosome 5 (HSA5), viz., horse chromosomes 14 and 21 (ECA14 and ECA21), were generated by adding 179 new loci (131 gene-specific and 48 microsatellites) to the existing maps of the two chromosomes. The loci were mapped primarily by genotyping on a 5000-rad horse x hamster radiation hybrid panel, of which 28 were mapped by fluorescence in situ hybridization. The approximately fivefold increase in the number of mapped markers on the two chromosomes improves the average resolution of the map to 1 marker/0.9 Mb. The improv...
Long-term outcome in acquired aplastic anemia treated with an intensified dose schedule of horse antilymphocyte globulin in combination with androgens.
Annals of hematology    July 8, 2006   Volume 85, Issue 10 711-716 doi: 10.1007/s00277-006-0152-y
Leleu X, Terriou L, Duhamel A, Moreau AS, Andrieux J, Dupire S, Coiteux V, Berthon C, Micol JB, Guieze R, Facon T, Bauters F.Aplastic anemia (AA) is a rare hematopoietic stem cell disease, which can be treated with horse antilymphocyte globulin (ALG) for patients not eligible for bone marrow transplantation. ALG gives about 60% overall survival rate (OS) after 5 years, a 30% of persistent complete remission and a 20% early death rate related to failure. ALG has been incriminated in the emergence of 10 to 20% therapy-related AML/MDS (t-AML/MDS) with the usual doses. Questions remain whether higher doses of ALG could improve the response and OS rates and whether the combination with androgens is able to protect patien...
Chromosomal assignments for the equine AMPK family genes.
Animal genetics    June 1, 2006   Volume 37, Issue 3 293-294 doi: 10.1111/j.1365-2052.2006.01431.x
Dranchak PK, Ekenstedt KJ, Valberg SJ, Chowdhary BP, Raudsepp T, Mickelson JR.No abstract available
Comparative mapping of oculocutaneous albinism type II (OCA2), transient receptor potential cation channel, subfamily M member 1 (TRPM1) and two equine microsatellites, ASB08 and 1CA43, among four equid species by fluorescence in situ hybridization.
Cytogenetic and genome research    May 24, 2006   Volume 114, Issue 1 93A doi: 10.1159/000091935
Bellone R, Lear T, Adelson DL, Bailey E.No abstract available
Sequence analysis of a 212 kb defensin gene cluster on ECA 27q17.
Gene    April 5, 2006   Volume 376, Issue 2 192-198 doi: 10.1016/j.gene.2006.03.006
Looft C, Paul S, Philipp U, Regenhard P, Kuiper H, Distl O, Chowdhary BP, Leeb T.Defensins are a family of evolutionary ancient antimicrobial peptides consisting of three sub-families: alpha-, beta- and theta-defensins. This investigation was focused on the genomic characterization of equine beta-defensins and the investigation of the potential clustering of beta-defensin genes in the equine genome. Six genomic BAC clones were isolated from the CHORI-241 library and one of these was mapped by FISH to ECA 27q17. This location was confirmed by RH-mapping. The contiguous 212 kb sequence of this clone was determined. Sequence analysis revealed the identification of ten pseudog...
Construction of a medium-density horse gene map.
Animal genetics    April 1, 2006   Volume 37, Issue 2 145-155 doi: 10.1111/j.1365-2052.2005.01401.x
Perrocheau M, Boutreux V, Chadi S, Mata X, Decaunes P, Raudsepp T, Durkin K, Incarnato D, Iannuzzi L, Lear TL, Hirota K, Hasegawa T, Zhu B, de Jong P....A medium-density map of the horse genome (Equus caballus) was constructed using genes evenly distributed over the human genome. Three hundred and twenty-three exonic primer pairs were used to screen the INRA and the CHORI-241 equine BAC libraries by polymerase chain reaction and by filter hybridization respectively. Two hundred and thirty-seven BACs containing equine gene orthologues, confirmed by sequencing, were isolated. The BACs were localized to horse chromosomes by fluorescent in situ hybridization (FISH). Overall, 165 genes were assigned to the equine genomic map by radiation hybrid (RH...
A 1.3-Mb interval map of equine homologs of HSA2.
Cytogenetic and genome research    February 18, 2006   Volume 112, Issue 3-4 227-234 doi: 10.1159/000089875
Wagner ML, Raudsepp T, Goh G, Agarwala R, Schaffer AA, Dranchak PK, Brinkmeyer-Langford C, Skow LC, Chowdhary BP, Mickelson JR.A comparative approach that utilizes information from more densely mapped or sequenced genomes is a proven and efficient means to increase our knowledge of the structure of the horse genome. Human chromosome 2 (HSA2), the second largest human chromosome, comprising 243 Mb, and containing 1246 known genes, corresponds to all or parts of three equine chromosomes. This report describes the assignment of 140 new markers (78 genes and 62 microsatellites) to the equine radiation hybrid (RH) map, and the anchoring of 24 of these markers to horse chromosomes by FISH. The updated equine RH maps for ECA...
Evolutionary movement of centromeres in horse, donkey, and zebra.
Genomics    January 18, 2006   Volume 87, Issue 6 777-782 doi: 10.1016/j.ygeno.2005.11.012
Carbone L, Nergadze SG, Magnani E, Misceo D, Francesca Cardone M, Roberto R, Bertoni L, Attolini C, Francesca Piras M, de Jong P, Raudsepp T....Centromere repositioning (CR) is a recently discovered biological phenomenon consisting of the emergence of a new centromere along a chromosome and the inactivation of the old one. After a CR, the primary constriction and the centromeric function are localized in a new position while the order of physical markers on the chromosome remains unchanged. These events profoundly affect chromosomal architecture. Since horses, asses, and zebras, whose evolutionary divergence is relatively recent, show remarkable morphological similarity and capacity to interbreed despite their chromosomes differing co...
SRY negative 64,XX intersex phenotype in an American saddlebred horse.
Veterinary journal (London, England : 1997)    December 28, 2005   Volume 173, Issue 2 437-439 doi: 10.1016/j.tvjl.2005.11.008
Bannasch D, Rinaldo C, Millon L, Latson K, Spangler T, Hubberty S, Galuppo L, Lowenstine L.A female American saddlebred horse was presented for surgical correction of a possible pseudohermaphrodite condition. The horse had abnormal external genitalia and exhibited stallion-like behaviour. No evidence of uterine or ovarian tissue was identified on laparoscopic examination, but hypoplastic testicular-like tissue was removed, although this was found to contain no spermatogonia upon histopathological examination. A karyotype was performed and showed the normal chromosomal complement for a female horse (64,XX). Polymerase chain reaction to detect the SRY gene was negative in peripheral b...
Single linkage group per chromosome genetic linkage map for the horse, based on two three-generation, full-sibling, crossbred horse reference families.
Genomics    November 28, 2005   Volume 87, Issue 1 1-29 doi: 10.1016/j.ygeno.2005.09.001
Swinburne JE, Boursnell M, Hill G, Pettitt L, Allen T, Chowdhary B, Hasegawa T, Kurosawa M, Leeb T, Mashima S, Mickelson JR, Raudsepp T, Tozaki T....A genetic linkage map of the horse consisting of 742 markers, which comprises a single linkage group for each of the autosomes and the X chromosome, is presented. The map has been generated from two three-generation full-sibling reference families, sired by the same stallion, in which there are 61 individuals in the F2 generation. Each linkage group has been assigned to a chromosome and oriented with reference to markers mapped by fluorescence in situ hybridization. The average interval between markers is 3.7 cM and the linkage groups collectively span 2772 cM. The 742 markers comprise 734 mic...
The B-cell CLL lymphoma 2 (BCL2) gene maps to equine chromosome 8q22.
Animal genetics    November 19, 2005   Volume 36, Issue 6 517-519 doi: 10.1111/j.1365-2052.2005.01359.x
Klukowska-Rötzler J, Bugno M, Slota E, Robinson NE, Piumi F, Guérin G, Dolf G, Gerber V.No abstract available
Cytogenetic mapping of immunity-related genes in the domestic horse.
Animal genetics    November 19, 2005   Volume 36, Issue 6 507-510 doi: 10.1111/j.1365-2052.2005.01348.x
Musilova P, Kubickova S, Vychodilova-Krenkova L, Kralik P, Matiasovic J, Hubertova D, Rubes J, Horin P.Chromosomal locations of 19 horse immunity-related loci (CASP1, CD14, EIF5A, FCER1A, IFNG, IL12A, IL12B, IL12RB2, IL1A, IL23A, IL4, IL6, MMP7, MS4A2, MYD88, NOS2A, PTGS2, TFRC and TLR2) were determined by fluorescence in situ hybridization. For IFNG and PTGS2, this study is a confirmation of their previously reported position. In addition, microsatellite (HMBr1) was localized in the same region as IFNG. All genes were assigned to regions of conserved synteny and the data obtained in this study enhance the comparative human-horse map. Cytogenetic localization of IL6 to ECA4q14-q21.1 suggested a...
Assignment of BGLAP, BMP2, CHST4, SLC1A3, SLC4A1, SLC9A5 and SLC20A1 to equine chromosomes by FISH and confirmation by RH mapping.
Animal genetics    September 20, 2005   Volume 36, Issue 5 457-461 doi: 10.1111/j.1365-2052.2005.01347.x
Müller D, Kuiper H, Böneker C, Mömke S, Drögemüller C, Chowdhary BP, Distl O.No abstract available
Comparative linkage mapping of the Grey coat colour gene in horses.
Animal genetics    September 20, 2005   Volume 36, Issue 5 390-395 doi: 10.1111/j.1365-2052.2005.01334.x
Pielberg G, Mikko S, Sandberg K, Andersson L.Grey horses are born coloured, turn progressively grey and often develop melanomas late in life. Grey shows an autosomal dominant inheritance and the locus has previously been mapped to horse chromosome 25 (ECA25), around the TXN gene. We have now developed eight new single nucleotide polymorphisms (SNPs) associated with genes on ECA25 using information on the linear order of genes on human chromosome 9q, as well as the human and mouse coding sequences. These SNPs were mapped in relation to the Grey locus using more than 300 progeny from matings between two Swedish Warmblood grey stallions and...
A high-resolution physical map of equine homologs of HSA19 shows divergent evolution compared with other mammals.
Mammalian genome : official journal of the International Mammalian Genome Society    September 14, 2005   Volume 16, Issue 8 631-649 doi: 10.1007/s00335-005-0023-1
Brinkmeyer-Langford C, Raudsepp T, Lee EJ, Goh G, Schäffer AA, Agarwala R, Wagner ML, Tozaki T, Skow LC, Womack JE, Mickelson JR, Chowdhary BP.A high-resolution (1 marker/700 kb) physically ordered radiation hybrid (RH) and comparative map of 122 loci on equine homologs of human Chromosome 19 (HSA19) shows a variant evolution of these segments in equids/Perissodactyls compared with other mammals. The segments include parts of both the long and the short arm of horse Chromosome 7 (ECA7), the proximal part of ECA21, and the entire short arm of ECA10. The map includes 93 new markers, of which 89 (64 gene-specific and 25 microsatellite) were genotyped on a 5000-rad horse x hamster RH panel, and 4 were mapped exclusively by FISH. The orie...
Sex reversal syndrome (64,XY; SRY-positive) in a mare demonstrating masculine behaviour.
Journal of animal breeding and genetics = Zeitschrift fur Tierzuchtung und Zuchtungsbiologie    September 1, 2005   Volume 122 Suppl 1 60-63 doi: 10.1111/j.1439-0388.2005.00510.x
Switonski M, Chmurzynska A, Szczerbal I, Lipczynski A, Yang F, Nowicka-Posłuszna A.A 5-year-old Thoroughbred mare was subjected to cytogenetic and molecular analysis because of infertility and masculine behaviour. Chromosome studies, including painting with the whole X chromosome specific probe, revealed a male chromosome complement (64,XY). The PCR amplification of the SRY and ZFY genes showed the presence of both those genes, while the endocrinological study demonstrated a high level of testosterone (9.7 nmol/l). Sequencing of the SRY gene (1121 bp), comprising also 5'- and 3'-UTRs, did not reveal any differences when compared with the sequence of normal stallions. It was ...
Comparative chromosomal studies of E. caballus (ECA) and E. przewalskii (EPR) in a female F1 hybrid.
Journal of animal breeding and genetics = Zeitschrift fur Tierzuchtung und Zuchtungsbiologie    September 1, 2005   Volume 122 Suppl 1 97-102 doi: 10.1111/j.1439-0388.2005.00494.x
Ahrens E, Stranzinger G.Previous research revealed that the karyotypes of Equus przewalskii (2n = 66) and Equus caballus (2n = 64) differ by one pair of metacentric chromosomes, present in ECA but not in EPR, and two pairs of acrocentric chromosomes found only in the EPR karyotype. The formation of a trivalent during meiosis in a male F1 hybrid and the homologies in G-banding patterns suggest that ECA 5 corresponds to two acrocentric EPR chromosomes resulting from a Robertsonian fusion or fission event. Chromosomal investigations of a female interspecies F1 hybrid including banded karyograms and fluorescence in situ ...
Equine FISH mapping of 36 genes known to locate on human chromosome ends.
Cytogenetic and genome research    August 12, 2005   Volume 111, Issue 1 46-50 doi: 10.1159/000085669
Perrocheau M, Boutreux V, Chadi-Taourit S, Di Meo GP, Perucatti A, Incarnato D, Cribiu EP, Guérin G, Iannuzzi L.The INRA and the CHORI-241 horse BAC libraries were screened by hybridization with DNA probes and/or directly by PCR with primers designed in consensus sequences of genes localized at the end of each human chromosome. BAC clones were retrieved and 36 could be FISH mapped after the expected gene was confirmed in each BAC by sequencing. Our results show that 16 BACs can be considered to be at telomeric or centromeric positions in the horse and 15 were found at the boundary of actually defined conserved segments even-though often located within conserved syntenic fragments between horse and human...
International Equine Gene Mapping Workshop Report: a comprehensive linkage map constructed with data from new markers and by merging four mapping resources.
Cytogenetic and genome research    August 12, 2005   Volume 111, Issue 1 5-15 doi: 10.1159/000085664
Penedo MC, Millon LV, Bernoco D, Bailey E, Binns M, Cholewinski G, Ellis N, Flynn J, Gralak B, Guthrie A, Hasegawa T, Lindgren G, Lyons LA, Røed KH....A comprehensive male linkage map was generated by adding 359 new, informative microsatellites to the International Equine Gene Map half-sibling reference families and by combining genotype data from three independent mapping resources: a full sibling family created at the Animal Health Trust in Newmarket, United Kingdom, eight half-sibling families from Sweden and two half-sibling families from the University of California, Davis. Because the combined data were derived primarily from half-sibling families, only autosomal markers were analyzed. The map was constructed from a total of 766 marker...
Structure of equine 2′-5’oligoadenylate synthetase (OAS) gene family and FISH mapping of OAS genes to ECA8p15–>p14 and BTA17q24–>q25.
Cytogenetic and genome research    August 12, 2005   Volume 111, Issue 1 51-56 doi: 10.1159/000085670
Perelygin AA, Lear TL, Zharkikh AA, Brinton MA.Mammalian 2'-5' oligoadenylate (2-5A) synthetases are important mediators of the antiviral activity of interferons. Both human and mouse 2-5A synthetase gene families encode four forms of enzymes: small, medium, large and ubiquitin-like. In this study, the structures of four equine OAS genes were determined using DNA sequences derived from fifteen cDNA and four BAC clones. Composition of the equine OAS gene family is more similar to that of the human OAS family than the mouse Oas family. Two OAS-containing bovine BAC clones were identified in GenBank. Both equine and bovine BAC clones were phy...
Numerical chromosomal abnormalities in equine embryos produced in vivo and in vitro.
Molecular reproduction and development    June 11, 2005   Volume 72, Issue 1 77-87 doi: 10.1002/mrd.20302
Rambags BP, Krijtenburg PJ, Drie HF, Lazzari G, Galli C, Pearson PL, Colenbrander B, Stout TA.Chromosomal aberrations are often listed as a significant cause of early embryonic death in the mare, despite the absence of any concrete evidence for their involvement. The current study aimed to validate fluorescent in situ hybridization (FISH) probes to label specific equine chromosomes (ECA2 and ECA4) in interphase nuclei and thereby determine whether numerical chromosome abnormalities occur in horse embryos produced either in vivo (n = 22) or in vitro (IVP: n = 20). Overall, 75% of 36,720 and 88% of 2,978 nuclei in the in vivo developed and IVP embryos were analyzable. Using a scoring sys...
Assignment of the COL16A1 gene to equine chromosome 2p15.1-p15.3 by FISH and confirmation by RH mapping.
Animal genetics    June 4, 2005   Volume 36, Issue 3 262-263 doi: 10.1111/j.1365-2052.2005.01273.x
Böneker C, Kuiper H, Wöhlke A, Drögemüller C, Chowdhary BP, Distl O.No abstract available
Assignment of the COMP gene to equine chromosome 21q12-q14 by FISH and confirmation by RH mapping.
Animal genetics    June 4, 2005   Volume 36, Issue 3 277-279 doi: 10.1111/j.1365-2052.2005.01294.x
Müller D, Kuiper H, Mömke S, Böneker C, Drögemüller C, Chowdhary BP, Distl O.No abstract available
Assignment of the equine colony stimulating factor 1 receptor gene (CSF1R) to equine chromosome 14q15–>q16 (ECA14q15–>q16) by in situ hybridization and radiation hybrid panel mapping.
Cytogenetic and genome research    May 24, 2005   Volume 109, Issue 4 533 doi: 10.1159/000084221
Beck J, Chowdhary BP, Brenig B.No abstract available
Genetic diagnosis of sex chromosome aberrations in horses based on parentage test by microsatellite DNA and analysis of X- and Y-linked markers.
Equine veterinary journal    March 23, 2005   Volume 37, Issue 2 143-147 doi: 10.2746/0425164054223787
Kakoi H, Hirota K, Gawahara H, Kurosawa M, Kuwajima M.Sex chromosome aberrations are often associated with clinical signs that affect equine health and reproduction. However, abnormal manifestation with sex chromosome aberration usually appears at maturity and potential disorders may be suspected infrequently. A reliable survey at an early stage is therefore required. Objective: To detect and characterise sex chromosome aberrations in newborn foals by the parentage test and analysis using X- and Y-linked markers. Methods: We conducted a genetic diagnosis combined with a parentage test by microsatellite DNA and analysis of X- and Y-linked genetic ...
High-resolution RH map of horse chromosome 22 reveals a putative ancestral vertebrate chromosome.
Genomics    January 29, 2005   Volume 85, Issue 2 188-200 doi: 10.1016/j.ygeno.2004.10.012
Gustafson-Seabury A, Raudsepp T, Goh G, Kata SR, Wagner ML, Tozaki T, Mickelson JR, Womack JE, Skow LC, Chowdhary BP.High-resolution gene maps of individual equine chromosomes are essential to identify genes governing traits of economic importance in the horse. In pursuit of this goal we herein report the generation of a dense map of horse chromosome 22 (ECA22) comprising 83 markers, of which 52 represent specific genes and 31 are microsatellites. The map spans 831 cR over an estimated 64 Mb of physical length of the chromosome, thus providing markers at approximately 770 kb or 10 cR intervals. Overall, the resolution of the map is to date the densest in the horse and is the highest for any of the domesticat...
Prospects for whole genome linkage disequilibrium mapping in thoroughbreds.
Gene    January 22, 2005   Volume 346 127-132 doi: 10.1016/j.gene.2004.10.011
Tozaki T, Hirota K, Hasegawa T, Tomita M, Kurosawa M.Linkage disequilibrium (LD) mapping is often used in searches for genes governing economically significant traits and diseases. The D' coefficient is a commonly used measure of the extent of LD between all possible pairs of alleles at two markers. This study aimed to test the utility of the D' coefficient for LD mapping of a trait in a thoroughbred population. Microsatellite genotype data and grey coat colour as a trait model in a thoroughbred population were used to assess the extent of LD. We demonstrated that LD mapping was a reasonable approach for initial genome-wide scans in a thoroughbr...
Isolation, characterization and chromosome assignment of 341 newly isolated equine TKY microsatellite markers.
Animal genetics    November 30, 2004   Volume 35, Issue 6 487-496 doi: 10.1111/j.1365-2052.2004.01208.x
Tozaki T, Penedo MC, Oliveira RP, Katz JP, Millon LV, Ward T, Pettigrew DC, Brault LS, Tomita M, Kurosawa M, Hasegawa T, Hirota K.No abstract available
Sixty-seven new equine microsatellite loci assigned to the equine radiation hybrid map.
Animal genetics    November 30, 2004   Volume 35, Issue 6 484-486 doi: 10.1111/j.1365-2052.2004.01205.x
Wagner ML, Goh G, Wu JT, Morrison LY, Alexander LJ, Raudsepp T, Skow LC, Chowdhary BP, Mickelson JR.No abstract available
Thirty-five new equine microsatellite loci assigned to genetic linkage and radiation hybrid maps.
Animal genetics    November 30, 2004   Volume 35, Issue 6 481-484 doi: 10.1111/j.1365-2052.2004.01206.x
Mickelson JR, Wagner ML, Goh G, Wu JT, Morrison LY, Alexander LJ, Raudsepp T, Skow LC, Chowdhary BP, Swinburne JE, Binns MM.No abstract available
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