Analyze Diet

Animal genetics.

Periodical
Genetics
Zoology
Animals
Publisher:
Published by Blackwell Scientific Publications for the International Society for Animal Blood Group Research,. Oxford, England : Wiley-Blackwell
Frequency: Bimonthly,
Country: England
Language: English
Author(s):
International Society for Animal Blood Group Research., International Society for Animal Genetics.
Start Year:1986 -
ISSN:
0268-9146 (Print)
1365-2052 (Electronic)
0268-9146 (Linking)
Impact Factor
2.4
2022
NLM ID:8605704
(DNLM):SR0056566(s)
(OCoLC):13459823
Coden:ANGEE3
LCCN:sf 93095318
Classification:W1 AN228P
Equine microsatellites associated with the COMP, LRP5 and COL1A1 genes.
Animal genetics    June 4, 2005   Volume 36, Issue 3 261-262 doi: 10.1111/j.1365-2052.2005.01272.x
Hillyer LL, Pettitt LA, Debenham SL, Swinburne JE, Binns MM, Price JS.No abstract available
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
The Lusitano horse maternal lineage based on mitochondrial D-loop sequence variation.
Animal genetics    June 4, 2005   Volume 36, Issue 3 196-202 doi: 10.1111/j.1365-2052.2005.01279.x
Lopes MS, Mendonça D, Cymbron T, Valera M, da Costa-Ferreira J, Machado Ada C.The analysis of mitochondrial D-loop sequences (408 bp) from 145 Lusitano founder mares yielded a total of 27 different haplotypes. The distribution of these mtDNA sequences was quite unequal, with the three most frequent ones representing 56.5% of all the Lusitano founder mares and 14 haplotypes (51.9%) being rare variants found only once in the sampling. Four main haplotype clusters were present in the Lusitano breed. The comparison of these sequences with other equine haplotypes shows that they fall in groups shared with other horse breeds. These data support the hypothesis of multiple dome...
Mitochondrial DNA analysis of horses recovered from a frozen tomb (Berel site, Kazakhstan, 3rd Century BC).
Animal genetics    June 4, 2005   Volume 36, Issue 3 203-209 doi: 10.1111/j.1365-2052.2005.01316.x
Keyser-Tracqui C, Blandin-Frappin P, Francfort HP, Ricaut FX, Lepetz S, Crubézy E, Samashev Z, Ludes B.Sequence polymorphism of the mitochondrial DNA D-loop was used to determine the genetic diversity of horses recovered from a Scythian princely tomb dating from the beginning of the 3rd century BC. Eight haplotypes were found among the 13 ancient horse samples tested. Phylogenetical analysis showed that these ancient horse's sequences, along with two Yakut ones, were distributed throughout the tree defined by modern horses' sequences and are closely related to them. No clear geographical affiliation of the specimens studied was thus determined. Our work, among others, supports the very ancient ...
Radiation hybrid and linkage mapping of six new type I markers in the horse.
Animal genetics    March 18, 2005   Volume 36, Issue 2 182-184 doi: 10.1111/j.1365-2052.2005.01257.x
Bricker SJ, Brault LS, DelValle A, Millon LV, Murray JD, Penedo MC.No abstract available
Sequence, detection of polymorphisms and radiation hybrid mapping of the equine catechol-o-methyltransferase gene.
Animal genetics    March 18, 2005   Volume 36, Issue 2 190 doi: 10.1111/j.1365-2052.2005.01265.x
Momozawa Y, Takeuchi Y, Tozaki T, Kikusui T, Hasegawa T, Raudsepp T, Chowdhary BP, Kusunose R, Mori Y.No abstract available
Characterization and localization of 17 microsatellites derived from BACs in the horse.
Animal genetics    March 18, 2005   Volume 36, Issue 2 164-166 doi: 10.1111/j.1365-2052.2004.01235.x
Milenkovic D, Mariat D, Swinburne J, Chadi-Taourit S, Binns M, Guérin G.No abstract available
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
Microsatellite diversity, population subdivision and gene flow in the Lipizzan horse.
Animal genetics    July 22, 2004   Volume 35, Issue 4 285-292 doi: 10.1111/j.1365-2052.2004.01157.x
Achmann R, Curik I, Dovc P, Kavar T, Bodo I, Habe F, Marti E, Sölkner J, Brem G.Blood samples of 561 Lipizzan horses from subpopulations (studs) of seven European countries representing a large fraction of the breed's population were used to examine the genetic diversity, population subdivision and gene flow in the breed. DNA analysis based on 18 microsatellite loci revealed that genetic diversity (observed heterozygosity = 0.663, gene diversity = 0.675 and the mean number of alleles = 7.056) in the Lipizzan horse is similar to other horse breeds as well as to other domestic animal species. The genetic differentiation between Lipizzan horses from different studs, although...
Genetic diversity in German draught horse breeds compared with a group of primitive, riding and wild horses by means of microsatellite DNA markers.
Animal genetics    July 22, 2004   Volume 35, Issue 4 270-277 doi: 10.1111/j.1365-2052.2004.01166.x
Aberle KS, Hamann H, Drögemüller C, Distl O.We compared the genetic diversity and distance among six German draught horse breeds to wild (Przewalski's Horse), primitive (Icelandic Horse, Sorraia Horse, Exmoor Pony) or riding horse breeds (Hanoverian Warmblood, Arabian) by means of genotypic information from 30 microsatellite loci. The draught horse breeds included the South German Coldblood, Rhenish German Draught Horse, Mecklenburg Coldblood, Saxon Thuringa Coldblood, Black Forest Horse and Schleswig Draught Horse. Despite large differences in population sizes, the average observed heterozygosity (H(o)) differed little among the heavy ...
Assignment of the appaloosa coat colour gene (LP) to equine chromosome 1.
Animal genetics    March 18, 2004   Volume 35, Issue 2 134-137 doi: 10.1111/j.1365-2052.2004.01113.x
Terry RB, Archer S, Brooks S, Bernoco D, Bailey E.A single autosomal dominant locus, leopard complex (LP) controls the presence of appaloosa pigmentation patterns in the horse. The causative gene for LP is unknown. This study was undertaken to map LP in the horse. Two paternal half sib families segregating for the LP locus and including a total of 47 offspring were used to perform a genome scan which localized LP to horse chromosome 1 (ECA1). LP was linked to ASB08 (LOD = 9.99 at Theta = 0.02) and AHT21 (LOD = 5.03 at Theta = 0.14). To refine the map position of LP, eight microsatellite markers on ECA1 (UM041, LEX77, 1CA41, TKY374, COR046, 1C...
Radiation hybrid mapping of 63 previously unreported equine microsatellite loci.
Animal genetics    March 18, 2004   Volume 35, Issue 2 159-162 doi: 10.1111/j.1365-2052.2004.01109.x
Wagner ML, Goh G, Wu JT, Raudsepp T, Morrison LY, Alexander LJ, Skow LC, Chowdhary BP, Mickelson JR.No abstract available
Identification of putative homology between horse microsatellite flanking sequences and cross-species ESTs, mRNAs and genomic sequences.
Animal genetics    January 21, 2004   Volume 35, Issue 1 28-33 doi: 10.1111/j.1365-2052.2003.01077.x
Farber CR, Medrano JF.In this study the flanking sequences of 1534 horse microsatellites were used in a BLAST search to identify putative human-horse homologies. BLAST searches revealed 129 flanking sequences with significant blastn matches [alignment scores (S) > or = 60 and sum probability values (E) < or = 3.0E-6], also, 25 of these produced significant blastx matches. To provide a reference point in the human genome the flanking sequences with matches were subjected to a BLAT search of the University of California Santa Cruz (UCSC) human genome assembly (July 2003 freeze). Eighty-three of the flanking seq...
Fixed nucleotide differences on the Y chromosome indicate clear divergence between Equus przewalskii and Equus caballus.
Animal genetics    December 23, 2003   Volume 34, Issue 6 453-456 doi: 10.1046/j.0268-9146.2003.01044.x
Wallner B, Brem G, Müller M, Achmann R.The phylogenetic relationship between Equus przewalskii and E. caballus is often a matter of debate. Although these taxa have different chromosome numbers, they do not form monophyletic clades in a phylogenetic tree based on mtDNA sequences. Here we report sequence variation from five newly identified Y chromosome regions of the horse. Two fixed nucleotide differences on the Y chromosome clearly display Przewalski's horse and domestic horse as sister taxa. At both positions the Przewalski's horse haplotype shows the ancestral state, in common with the members of the zebra/ass lineage. We discu...
The second generation of the International Equine Gene Mapping Workshop half-sibling linkage map.
Animal genetics    May 21, 2003   Volume 34, Issue 3 161-168 doi: 10.1046/j.1365-2052.2003.00973.x
Guérin G, Bailey E, Bernoco D, Anderson I, Antczak DF, Bell K, Biros I, Bjørnstad G, Bowling AT, Brandon R, Caetano AR, Cholewinski G, Colling D....A low-density, male-based linkage map was constructed as one of the objectives of the International Equine Gene Mapping Workshop. Here we report the second generation map based on testing 503 half-sibling offspring from 13 sire families for 344 informative markers using the CRIMAP program. The multipoint linkage analysis localized 310 markers (90%) with 257 markers being linearly ordered. The map included 34 linkage groups representing all 31 autosomes and spanning 2262 cM with an average interval between loci of 10.1 cM. This map is a milestone in that it is the first map with linkage groups ...
Polymorphisms in the equine WNT1 gene allow linkage mapping to ECA6q.
Animal genetics    March 22, 2003   Volume 34, Issue 2 148-149 doi: 10.1046/j.1365-2052.2003.00965_2.x
Mau C, Stranzinger G, Rieder S.No abstract available
Characterization and linkage map assignments for 61 new horse microsatellite loci (AHT49-109).
Animal genetics    February 13, 2003   Volume 34, Issue 1 65-68 doi: 10.1046/j.1365-2052.2003.00951_1.x
Swinburne JE, Turner A, Alexander LJ, Mickleson JR, Binns MM.No abstract available
Eighty-three previously unreported equine microsatellite loci.
Animal genetics    February 13, 2003   Volume 34, Issue 1 71-74 doi: 10.1046/j.1365-2052.2003.00951_4.x
Mickelson JR, Wu JT, Morrison LY, Swinburne JE, Binns MM, Reed KM, Alexander LJ.No abstract available
Genetic relationship between Mongolian and Norwegian horses?
Animal genetics    February 13, 2003   Volume 34, Issue 1 55-58 doi: 10.1046/j.1365-2052.2003.00922.x
Bjørnstad G, Nilsen NØ, Røed KH.Human populations of Central Asian origin have contributed genetic material to northern European populations. It is likely that migrating humans carried livestock to ensure food and ease transportation. Thus, eastern genes could also have dispersed to northern European livestock populations. Using microsatellite data, we here report that the essentially different genetic distances DA and (deltamu)2 and their corresponding phylogenetic trees show close associations between the Mongolian native horse and northern European horse breeds. The genetic distances between the northern European breeds a...
Mapping of equine potassium chloride co-transporter (SLC12A4) and amino acid transporter (SLC7A10) and preliminary studies on associations between SNPs from SLC12A4, SLC7A10 and SLC7A9 and osmotic fragility of erythrocytes.
Animal genetics    December 5, 2002   Volume 33, Issue 6 455-459 doi: 10.1046/j.1365-2052.2002.00907.x
Hanzawa K, Lear TL, Piumi F, Bailey E.Consensus DNA sequences from human, mouse and/or rat were used to design oligonucleotide primers for equine homologues of exons 16, 17 and 20-23 of potassium chloride co-transporter (SLC12A4) and exons 10, 11 and 3, 4, respectively, for two amino acid transporters (SLC7A10 and SLC7A9). DNA sequences of the PCR products showed high sequence identity to these regions. Equine BAC clones were obtained for SLC12A4 and SLC7A10 and mapped to equine chromosomes ECA3p13 and ECA10p15, respectively, by fluorescence in situ hybridization (FISH). Several single nucleotide polymorphisms (SNP) were found. Su...
Linkage of the grey coat colour locus to microsatellites on horse chromosome 25.
Animal genetics    October 2, 2002   Volume 33, Issue 5 329-337 doi: 10.1046/j.1365-2052.2002.00885.x
Locke MM, Penedo MC, Bricker SJ, Millon LV, Murray JD.The progressive loss of colour in the hair of grey horses is controlled by a dominantly inherited allele at the Grey locus (GG). In this study, two paternal Quarter Horse (QH) families segregating for the GG allele were genotyped with a set of 101 microsatellite markers spanning the 31 autosomes and the X chromosome. This genome scan demonstrated linkage of Grey to COR018 (RF=0.02, LOD=12.04) on horse chromosome 25 (ECA25). Further chromosome-specific analysis of seven total QH families confirmed the linkage of Grey to a group of ECA25 markers and the map order of NVHEQ43-(0.24)-UCDEQ405-(0.09...
Phylogenetic relationships of Argentinean Creole horses and other South American and Spanish breeds inferred from mitochondrial DNA sequences.
Animal genetics    October 2, 2002   Volume 33, Issue 5 356-363 doi: 10.1046/j.1365-2052.2002.00884.x
Mirol PM, Peral García P, Vega-Pla JL, Dulout FN.South American horses constitute a direct remnant of the Iberian horses brought to the New World by the Spanish conquerors. The source of the original horses was Spain, and it is generally assumed that the animals belonged to the Andalusian, Spanish Celtic, Barb or Arabian breeds. In order to establish the relationship between Argentinean and Spanish horses, a portion of the mitochondrial D-loop of 104 animals belonging to nine South American and Spanish breeds was analysed using SSCP and DNA sequencing. The variability found both within and between breeds was very high. There were 61 polymorp...
Assignment of the horse grey coat colour gene to ECA25 using whole genome scanning.
Animal genetics    October 2, 2002   Volume 33, Issue 5 338-342 doi: 10.1046/j.1365-2052.2002.00895.x
Swinburne JE, Hopkins A, Binns MM.The dominant grey coat colour gene of horses has been mapped using a whole genome scanning approach. Samples from a large half-sibling pedigree of Thoroughbred horses were utilized in order to map the grey coat colour locus, G. Multiplex groups of microsatellite markers were developed and used to efficiently screen the horse genome at a resolution of approximately 22 cM, based on an estimated map length for the horse genome of 2720 cM. The grey gene was assigned to chromosome 25 (ECA25), one of the smaller acrocentric horse chromosomes. Based on the current state of knowledge of conserved synt...
Evaluation of factors affecting individual assignment precision using microsatellite data from horse breeds and simulated breed crosses.
Animal genetics    July 26, 2002   Volume 33, Issue 4 264-270 doi: 10.1046/j.1365-2052.2002.00868.x
Bjørnstad G, Røed KH.Assignment tests have been utilized to investigate population classification, measure genetic diversity and to solve forensic questions. Using microsatellite data from 26 loci genotyped in eight horse breeds we examined how population differentiation, number of scored loci, number of scored animals per breed and loci variability affected individual assignment precision applying log likelihood methods. We found that both genetic differentiation and number of scored loci were highly important for recognizing the breed of origin. When comparing two and two breeds, a proportion of 95% of the most ...
A PCR-RFLP for KIT associated with tobiano spotting pattern in horses.
Animal genetics    July 26, 2002   Volume 33, Issue 4 301-303 doi: 10.1046/j.1365-2052.2002.00854.x
Brooks SA, Terry RB, Bailey E.An MspI polymorphism was identified in intron 13 of the equine homologue of proto-oncogene c-kit (KIT) by comparing DNA sequences from horses with solid coat colour and horses homozygous for the tobiano spotting (To) gene. The allele associated with solid coat colour was designated KM0, while the allele associated with the tobiano pattern created an additional MspI restriction site and was designated KM1. Polymerase chain reaction-restriction fragment length polymorphism (PCR-RFLP) studies using DNA from hair follicles demonstrated that all 129 of 129 tobiano patterned horses possessed the KM1...
History and integrity of thoroughbred dam lines revealed in equine mtDNA variation.
Animal genetics    July 26, 2002   Volume 33, Issue 4 287-294 doi: 10.1046/j.1365-2052.2002.00870.x
Hill EW, Bradley DG, Al-Barody M, Ertugrul O, Splan RK, Zakharov I, Cunningham EP.Mitochondrial DNA (mtDNA) D-loop sequences (381 bp) from 100 thoroughbreds in 19 of the most common matrilineal female families were used to reconstruct a founder female population for the thoroughbred ( approximately 1650-1750 AD). Seventeen haplotypes were found to have contributed to the 19 female lineages. In order to place the reconstructed founder population in wider historical context, we examined, using both single strand conformation polymorphism and direct sequence analysis, variation in a 343 bp mtDNA fragment in that population and 13 other horse populations of disparate provenance...
A second locus and new alleles in the major histocompatibility complex class II (ELA-DQB) region in the horse.
Animal genetics    May 29, 2002   Volume 33, Issue 3 196-200 doi: 10.1046/j.1365-2052.2002.00839.x
Horín P, Matiasovic J.More than two nucleotide sequences of the second exon of the ELA-DQB region retrieved from a single animal and two different sequences isolated from horses homozygous in the major histocompatibility complex (MHC) region by descent indicated the existence of at least two ELA-DQB loci at the genomic level. New alleles detected by polymerase chain reaction single strand conformation polymorphism (SSCP) and defined by nucleotide sequencing of the second exon of the DQB gene(s) were described. Based on the level of nucleotide sharing, at least two groups of alleles were shown to exist. The newly de...
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