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Topic:Genetic Sequencing

Genetic sequencing in horses involves the analysis of equine DNA to identify the order of nucleotides within the genome. This process provides insights into genetic variations, hereditary traits, and potential predispositions to diseases. By mapping the equine genome, researchers can explore genetic markers associated with specific breeds, performance traits, and health conditions. Genetic sequencing can also aid in understanding evolutionary relationships among horse breeds and contribute to conservation efforts. This page compiles peer-reviewed research studies and scholarly articles that investigate the methodologies, applications, and implications of genetic sequencing in equine science.
Complete genome sequence of a polyomavirus isolated from horses.
Journal of virology    July 31, 2012   Volume 86, Issue 16 8903 doi: 10.1128/JVI.01261-12
Renshaw RW, Wise AG, Maes RK, Dubovi EJ.A polyomavirus was isolated from the eyes of horses, and the sequence was determined. A nearly identical VP1 sequence was amplified from the kidney of another animal. We report the complete genome sequence of the first polyomavirus to be isolated from a horse. Analysis shows it to be most closely related overall to human and nonhuman primate polyomaviruses.
Genetic Diversity of mtDNA D-loop and Maternal Origin of Three Chinese Native Horse Breeds.
Asian-Australasian journal of animal sciences    July 1, 2012   Volume 25, Issue 7 921-926 doi: 10.5713/ajas.2011.11483
Zhang T, Lu H, Chen C, Jiang H, Wu S.In order to protect the genetic resource of native horse breeds, the genetic diversity of mitochondrial DNA (mtDNA) D-loop of three native horse breeds in western China were investigated. Forty-three 600 bp mtDNA D-loop sequences were analyzed by PCR and sequencing techniques, 33 unique haplotypes with 70 polymorphic sites were detected in these horses, which account for 11.67% of 600 bp sequence analyzed, showing the abundant genetic diversity of the three native horse breeds in western China. The Neighbour-Joining (NJ) phylogenetic tree based on 247 bp of 43 D-loop sequences demonstrated the...
Occurrence of Borrelia lusitaniae infection in horses.
Veterinary microbiology    June 27, 2012   Volume 160, Issue 3-4 535-538 doi: 10.1016/j.vetmic.2012.06.029
Veronesi F, Laus F, Passamonti F, Tesei B, Piergili Fioretti D, Genchi C.The aim of the study was to investigate Borrelia burgdorferi sensu lato (s.l.) infection in horses exposed to heavy tick infestations. Blood samples of 98 healthy horses from 5 stud farms were examined by SNAP(®) 4D× and PCR to detect antibodies against B. burgdorferi s.l. and Borrelia DNA, respectively. Ten samples (15.3%) were antibody positive and 5 samples (5.1%) were both antibody and PCR positive. Sequence analysis showed the highest homology with the B. lusitaniae genospecies. No differences were found between sexes and stud farms, while age was significantly related to seropositivity...
Random X inactivation in the mule and horse placenta.
Genome research    May 29, 2012   Volume 22, Issue 10 1855-1863 doi: 10.1101/gr.138487.112
Wang X, Miller DC, Clark AG, Antczak DF.In eutherian mammals, dosage compensation of X-linked genes is achieved by X chromosome inactivation. X inactivation is random in embryonic and adult tissues, but imprinted X inactivation (paternal X silencing) has been identified in the extra-embryonic membranes of the mouse, rat, and cow. Few other species have been studied for this trait, and the data from studies of the human placenta have been discordant or inconclusive. Here, we quantify X inactivation using RNA sequencing of placental tissue from reciprocal hybrids of horse and donkey (mule and hinny). In placental tissue from the equid...
The equine intestinal microbiome.
Animal health research reviews    May 25, 2012   Volume 13, Issue 1 121-128 doi: 10.1017/S1466252312000035
Costa MC, Weese JS.The equine intestinal tract contains a complex microbial population (microbiota) that plays an important role in health and disease. Despite the undeniable importance of a 'normal' microbiota, understanding of the composition and function of this population is currently limited. As methods to characterize the microbiota and its genetic makeup (the microbiome) have evolved, the composition and complexity of this population are starting to be revealed. As is befitting a hindgut fermenter, members of the Firmicutes phylum appear to predominate, yet there are significant populations of numerous ot...
Fell Pony syndrome: characterization of developmental hematopoiesis failure and associated gene expression profiles.
Clinical and vaccine immunology : CVI    May 16, 2012   Volume 19, Issue 7 1054-1064 doi: 10.1128/CVI.00237-12
Tallmadge RL, Stokol T, Gould-Earley MJ, Earley E, Secor EJ, Matychak MB, Felippe MJ.Fell Pony syndrome (FPS) is a fatal immunodeficiency that occurs in foals of the Fell Pony breed. Affected foals present with severe anemia, B cell lymphopenia, and opportunistic infections. Our objective was to conduct a prospective study of potential FPS-affected Fell Pony foals to establish clinical, immunological, and molecular parameters at birth and in the first few weeks of life. Complete blood counts, peripheral blood lymphocyte phenotyping, and serum immunoglobulin concentrations were determined for 3 FPS-affected foals, 49 unaffected foals, and 6 adult horses. In addition, cytology o...
Improving the performance of true single molecule sequencing for ancient DNA.
BMC genomics    May 10, 2012   Volume 13 177 doi: 10.1186/1471-2164-13-177
Ginolhac A, Vilstrup J, Stenderup J, Rasmussen M, Stiller M, Shapiro B, Zazula G, Froese D, Steinmann KE, Thompson JF, Al-Rasheid KA, Gilbert TM....Second-generation sequencing technologies have revolutionized our ability to recover genetic information from the past, allowing the characterization of the first complete genomes from past individuals and extinct species. Recently, third generation Helicos sequencing platforms, which perform true Single-Molecule DNA Sequencing (tSMS), have shown great potential for sequencing DNA molecules from Pleistocene fossils. Here, we aim at improving even further the performance of tSMS for ancient DNA by testing two novel tSMS template preparation methods for Pleistocene bone fossils, namely oligonucl...
Molecular characterisation of the ORF68 region of equine herpesvirus-1 strains isolated from aborted fetuses in Hungary between 1977 and 2008.
Acta veterinaria Hungarica    March 1, 2012   Volume 60, Issue 1 175-187 doi: 10.1556/AVet.2012.015
Malik P, Bálint A, Dán A, Pálfi V.Equine herpesvirus-1 (EHV-1) can be classified into distinct groups by single nucleotide polymorphisms (SNPs) in their genomes. Only a few of these can be associated with a special attribute of the virus. Differences in the ORF30 region can determine the neuropathogenic potential, while by substitutions in the ORF68 region several strain groups can be made. In previous studies no connection was found between the neuropathogenic potential and the SNPs in ORF68, but the occurrence of members of distinct groups in different outbreaks can facilitate epidemiological investigations because the geogr...
Whole-genome sequencing and genetic variant analysis of a Quarter Horse mare.
BMC genomics    February 17, 2012   Volume 13 78 doi: 10.1186/1471-2164-13-78
Doan R, Cohen ND, Sawyer J, Ghaffari N, Johnson CD, Dindot SV.The catalog of genetic variants in the horse genome originates from a few select animals, the majority originating from the Thoroughbred mare used for the equine genome sequencing project. The purpose of this study was to identify genetic variants, including single nucleotide polymorphisms (SNPs), insertion/deletion polymorphisms (INDELs), and copy number variants (CNVs) in the genome of an individual Quarter Horse mare sequenced by next-generation sequencing. Results: Using massively parallel paired-end sequencing, we generated 59.6 Gb of DNA sequence from a Quarter Horse mare resulting in an...
Equine stomachs harbor an abundant and diverse mucosal microbiota.
Applied and environmental microbiology    February 3, 2012   Volume 78, Issue 8 2522-2532 doi: 10.1128/AEM.06252-11
Perkins GA, den Bakker HC, Burton AJ, Erb HN, McDonough SP, McDonough PL, Parker J, Rosenthal RL, Wiedmann M, Dowd SE, Simpson KW.Little is known about the gastric mucosal microbiota in healthy horses, and its role in gastric disease has not been critically examined. The present study used a combination of 16S rRNA bacterial tag-encoded pyrosequencing (bTEFAP) and fluorescence in situ hybridization (FISH) to characterize the composition and spatial distribution of selected gastric mucosal microbiota of healthy horses. Biopsy specimens of the squamous, glandular, antral, and any ulcerated mucosa were obtained from 6 healthy horses by gastroscopy and from 3 horses immediately postmortem. Pyrosequencing was performed on bio...
Whole mitochondrial genome sequencing of domestic horses reveals incorporation of extensive wild horse diversity during domestication.
BMC evolutionary biology    November 14, 2011   Volume 11 328 doi: 10.1186/1471-2148-11-328
Lippold S, Matzke NJ, Reissmann M, Hofreiter M.DNA target enrichment by micro-array capture combined with high throughput sequencing technologies provides the possibility to obtain large amounts of sequence data (e.g. whole mitochondrial DNA genomes) from multiple individuals at relatively low costs. Previously, whole mitochondrial genome data for domestic horses (Equus caballus) were limited to only a few specimens and only short parts of the mtDNA genome (especially the hypervariable region) were investigated for larger sample sets. Results: In this study we investigated whole mitochondrial genomes of 59 domestic horses from 44 breeds an...
Characterization of the fecal bacteria communities of forage-fed horses by pyrosequencing of 16S rRNA V4 gene amplicons.
FEMS microbiology letters    November 2, 2011   Volume 326, Issue 1 62-68 doi: 10.1111/j.1574-6968.2011.02434.x
Shepherd ML, Swecker WS, Jensen RV, Ponder MA.The diversity of the equine fecal bacterial community was evaluated using pyrosequencing of 16S rRNA gene amplicons. Fecal samples were obtained from horses fed cool-season grass hay. Fecal bacteria were characterized by amplifying the V4 region of bacterial 16S rRNA gene. Of 5898 mean unique sequences, a mean of 1510 operational taxonomic units were identified in the four fecal samples. Equine fecal bacterial richness was higher than that reported in humans, but lower than that reported in either cattle feces or soil. Bacterial classified sequences were assigned to 16 phyla, of which 10 were ...
Highlight: a massively parallel sequencing approach uncovers ancient origins and high genetic variability of endangered Przewalski’s horses.
Genome biology and evolution    September 13, 2011   Volume 3 1094-1095 doi: 10.1093/gbe/evr091
Venton D.No abstract available
Discovery of lost diversity of paternal horse lineages using ancient DNA.
Nature communications    August 23, 2011   Volume 2 450 doi: 10.1038/ncomms1447
Lippold S, Knapp M, Kuznetsova T, Leonard JA, Benecke N, Ludwig A, Rasmussen M, Cooper A, Weinstock J, Willerslev E, Shapiro B, Hofreiter M.Modern domestic horses display abundant genetic diversity within female-inherited mitochondrial DNA, but practically no sequence diversity on the male-inherited Y chromosome. Several hypotheses have been proposed to explain this discrepancy, but can only be tested through knowledge of the diversity in both the ancestral (pre-domestication) maternal and paternal lineages. As wild horses are practically extinct, ancient DNA studies offer the only means to assess this ancestral diversity. Here we show considerable ancestral diversity in ancient male horses by sequencing 4 kb of Y chromosomal DNA ...
True single-molecule DNA sequencing of a pleistocene horse bone.
Genome research    July 29, 2011   Volume 21, Issue 10 1705-1719 doi: 10.1101/gr.122747.111
Orlando L, Ginolhac A, Raghavan M, Vilstrup J, Rasmussen M, Magnussen K, Steinmann KE, Kapranov P, Thompson JF, Zazula G, Froese D, Moltke I....Second-generation sequencing platforms have revolutionized the field of ancient DNA, opening access to complete genomes of past individuals and extinct species. However, these platforms are dependent on library construction and amplification steps that may result in sequences that do not reflect the original DNA template composition. This is particularly true for ancient DNA, where templates have undergone extensive damage post-mortem. Here, we report the results of the first "true single molecule sequencing" of ancient DNA. We generated 115.9 Mb and 76.9 Mb of DNA sequences from a permafrost-...
A massively parallel sequencing approach uncovers ancient origins and high genetic variability of endangered Przewalski’s horses.
Genome biology and evolution    July 29, 2011   Volume 3 1096-1106 doi: 10.1093/gbe/evr067
Goto H, Ryder OA, Fisher AR, Schultz B, Kosakovsky Pond SL, Nekrutenko A, Makova KD.The endangered Przewalski's horse is the closest relative of the domestic horse and is the only true wild horse species surviving today. The question of whether Przewalski's horse is the direct progenitor of domestic horse has been hotly debated. Studies of DNA diversity within Przewalski's horses have been sparse but are urgently needed to ensure their successful reintroduction to the wild. In an attempt to resolve the controversy surrounding the phylogenetic position and genetic diversity of Przewalski's horses, we used massively parallel sequencing technology to decipher the complete mitoch...
Application of high-throughput systems for the rapid detection of DNA and RNA viruses during the Australian equine influenza outbreak.
Australian veterinary journal    July 8, 2011   Volume 89 Suppl 1 38-39 doi: 10.1111/j.1751-0813.2011.00744.x
Kirkland PD, Davis RJ, Gu X, Frost M.No abstract available
Lyme neuroborreliosis in 2 horses.
Veterinary pathology    February 1, 2011   Volume 48, Issue 6 1151-1157 doi: 10.1177/0300985811398246
Imai DM, Barr BC, Daft B, Bertone JJ, Feng S, Hodzic E, Johnston JM, Olsen KJ, Barthold SW.Lyme neuroborreliosis--characterized as chronic, necrosuppurative to nonsuppurative, perivascular to diffuse meningoradiculoneuritis--was diagnosed in 2 horses with progressive neurologic disease. In 1 horse, Borrelia burgdorferi sensu stricto was identified by polymerase chain reaction amplification of B burgdorferi sensu stricto-specific gene targets (ospA, ospC, flaB, dbpA, arp). Highest spirochetal burdens were in tissues with inflammation, including spinal cord, muscle, and joint capsule. Sequence analysis of ospA, ospC, and flaB revealed 99.9% sequence identity to the respective genes in...
Brother of CDO (BOC) expression in equine articular cartilage.
Osteoarthritis and cartilage    January 22, 2011   Volume 19, Issue 4 435-438 doi: 10.1016/j.joca.2011.01.011
Vanderman KS, Tremblay M, Zhu W, Shimojo M, Mienaltowski MJ, Coleman SJ, MacLeod JN.Brother of CDO (BOC) is a cell surface receptor that derives its name from the structurally related protein, cell adhesion molecule-related/down-regulated by oncogenes (CDO, sometimes CDON). High levels of BOC mRNA and protein expression have been described in embryonic tissues with active cell proliferation and ongoing cellular differentiation(1,2). A microarray-based screen of RNA isolated from 11 different adult equine tissues unexpectedly identified BOC as having an expression pattern restricted to articular cartilage. The objective of this study was to further investigate BOC expression i...
Mitochondrial DNA insertions in the nuclear horse genome.
Animal genetics    November 26, 2010   Volume 41 Suppl 2 176-185 doi: 10.1111/j.1365-2052.2010.02130.x
Nergadze SG, Lupotto M, Pellanda P, Santagostino M, Vitelli V, Giulotto E.The insertion of mitochondrial DNA in the nuclear genome generates numts, nuclear sequences of mitochondrial origin. In the horse reference genome, we identified 82 numts and showed that the entire horse mitochondrial DNA is represented as numts without gross bias. Numts were inserted in the horse nuclear genome at random sites and were probably generated during the repair of DNA double-strand breaks. We then analysed 12 numt loci in 20 unrelated horses and found that null alleles, lacking the mitochondrial DNA insertion, were present at six of these loci. At some loci, the null allele is prev...
Structural annotation of equine protein-coding genes determined by mRNA sequencing.
Animal genetics    November 26, 2010   Volume 41 Suppl 2 121-130 doi: 10.1111/j.1365-2052.2010.02118.x
Coleman SJ, Zeng Z, Wang K, Luo S, Khrebtukova I, Mienaltowski MJ, Schroth GP, Liu J, MacLeod JN.The horse, like the majority of animal species, has a limited amount of species-specific expressed sequence data available in public databases. As a result, structural models for the majority of genes defined in the equine genome are predictions based on ab initio sequence analysis or the projection of gene structures from other mammalian species. The current study used Illumina-based sequencing of messenger RNA (RNA-seq) to help refine structural annotation of equine protein-coding genes and for a preliminary assessment of gene expression patterns. Sequencing of mRNA from eight equine tissues...
Interspersed repeats in the horse (Equus caballus); spatial correlations highlight conserved chromosomal domains.
Animal genetics    November 26, 2010   Volume 41 Suppl 2 91-99 doi: 10.1111/j.1365-2052.2010.02115.x
Adelson DL, Raison JM, Garber M, Edgar RC.The interspersed repeat content of mammalian genomes has been best characterized in human, mouse and cow. In this study, we carried out de novo identification of repeated elements in the equine genome and identified previously unknown elements present at low copy number. The equine genome contains typical eutherian mammal repeats, but also has a significant number of hybrid repeats in addition to clade-specific Long Interspersed Nuclear Elements (LINE). Equus caballus clade specific LINE 1 (L1) repeats can be classified into approximately five subfamilies, three of which have undergone signifi...
Genome sequence conservation of Hendra virus isolates during spillover to horses, Australia.
Emerging infectious diseases    October 30, 2010   Volume 16, Issue 11 1767-1769 doi: 10.3201/eid1611.100501
Marsh GA, Todd S, Foord A, Hansson E, Davies K, Wright L, Morrissy C, Halpin K, Middleton D, Field HE, Daniels P, Wang LF.Bat-to-horse transmission of Hendra virus has occurred at least 14 times. Although clinical signs in horses have differed, genome sequencing has demonstrated little variation among the isolates. Our sequencing of 5 isolates from recent Hendra virus outbreaks in horses found no correlation between sequences and time or geographic location of outbreaks.
Characterization of the equine skeletal muscle transcriptome identifies novel functional responses to exercise training.
BMC genomics    June 23, 2010   Volume 11 398 doi: 10.1186/1471-2164-11-398
McGivney BA, McGettigan PA, Browne JA, Evans AC, Fonseca RG, Loftus BJ, Lohan A, MacHugh DE, Murphy BA, Katz LM, Hill EW.Digital gene expression profiling was used to characterize the assembly of genes expressed in equine skeletal muscle and to identify the subset of genes that were differentially expressed following a ten-month period of exercise training. The study cohort comprised seven Thoroughbred racehorses from a single training yard. Skeletal muscle biopsies were collected at rest from the gluteus medius at two time points: T(1) - untrained, (9 +/- 0.5 months old) and T(2) - trained (20 +/- 0.7 months old). Results: The most abundant mRNA transcripts in the muscle transcriptome were those involved in mus...
A comprehensive analysis of germline and expressed immunoglobulin repertoire in the horse.
Developmental and comparative immunology    May 16, 2010   Volume 34, Issue 9 1009-1020 doi: 10.1016/j.dci.2010.05.003
Sun Y, Wang C, Wang Y, Zhang T, Ren L, Hu X, Zhang R, Meng Q, Guo Y, Fei J, Li N, Zhao Y.Based on the recently released horse genome, we have characterized the genomic organization of the horse Ig gene loci. The horse IgH locus in genomic scaffold Un0011 contains 40 D(H) segments, 8 J(H) segments and 50 V(H) segments. The Igkappa locus contains only a single C(kappa) gene, 5 J(kappa) segments and a 60 V(kappa) segments, whereas the Iglambda locus contains 7 C(lambda) genes each preceded by a J(lambda) gene segment. A total of 110 V(lambda) segments with the same transcriptional polarity as J(lambda)-C(lambda) were identified upstream of the J(lambda)-C(lambda) cluster. However, 34...
Haemotrophic Mycoplasma infection in horses.
Veterinary microbiology    April 24, 2010   Volume 145, Issue 3-4 351-353 doi: 10.1016/j.vetmic.2010.04.009
Dieckmann SM, Winkler M, Groebel K, Dieckmann MP, Hofmann-Lehmann R, Hoelzle K, Wittenbrink MM, Hoelzle LE.Haemotrophic mycoplasmas (HM) are parasites on the surface of red blood cells and known to infect a wide range of animals. However, there are no previous evidences of HM infections in horses. In this study HM were detected for the first time in the blood of two horses suffering from poor performance, apathy, weight loss, and anaemia. Using a HM specific PCR assay and subsequent sequencing the infective agents isolated from the blood of said horses were confirmed as closely related to the HM species Mycoplasma haemofelis and 'Candidatus Mycoplasma haemobos'.
Influenza virus transmission from horses to dogs, Australia.
Emerging infectious diseases    March 31, 2010   Volume 16, Issue 4 699-702 doi: 10.3201/eid1604.091489
Kirkland PD, Finlaison DS, Crispe E, Hurt AC.During the 2007 equine influenza outbreak in Australia, respiratory disease in dogs in close contact with infected horses was noted; influenza (H3N8) virus infection was confirmed. Nucleotide sequence of the virus from dogs was identical to that from horses. No evidence of dog-to-dog transmission or virus persistence in dogs was found.
Gene expression profiling from leukocytes of horses affected by osteochondrosis.
Journal of orthopaedic research : official publication of the Orthopaedic Research Society    January 29, 2010   Volume 28, Issue 7 965-970 doi: 10.1002/jor.21089
Serteyn D, Piquemal D, Vanderheyden L, Lejeune JP, Verwilghen D, Sandersen C.Osteochondrosis (OC) is a developmental disease that affects growing horses and that severely affects their ability to perform. The genetic basis of its pathogenesis is poorly understood. The aim of the study was to analyze the transcript profile of leukocytes from horses affected with OC. Two transcriptome libraries were constructed from leukocytes of OC-affected and non-OC-affected horses using digital gene expression analysis (DGE) and real-time PCR. Statistical analysis allowed selection of 1,008 tags upregulated in the non-OC-affected group and 1,545 tags upregulated in the OC-affected gr...
Identification of horse chestnut coat color genotype using SNaPshot.
BMC research notes    December 16, 2009   Volume 2 255 doi: 10.1186/1756-0500-2-255
Rendo F, Iriondo M, Manzano C, Estonba A.The Cantabrian Coast horse breeds of the Iberian Peninsula have mainly black or bay colored coats, but alleles responsible for a chestnut coat color run in these breeds and occasionally, chestnut horses are born. Chestnut coat color is caused by two recessive alleles, e and e(a), of the melanocortin-1 receptor gene, whereas the presence of the dominant, wild-type E allele produces black or bay coat horses. Because black or bay colored coats are considered as the purebred phenotype for most of the breeds from this region, it is important to have a fast and reliable method to detect alleles caus...
Structural and functional-annotation of an equine whole genome oligoarray.
BMC bioinformatics    October 8, 2009   Volume 10 Suppl 11, Issue Suppl 11 S8 doi: 10.1186/1471-2105-10-S11-S8
Bright LA, Burgess SC, Chowdhary B, Swiderski CE, McCarthy FM.The horse genome is sequenced, allowing equine researchers to use high-throughput functional genomics platforms such as microarrays; next-generation sequencing for gene expression and proteomics. However, for researchers to derive value from these functional genomics datasets, they must be able to model this data in biologically relevant ways; to do so requires that the equine genome be more fully annotated. There are two interrelated types of genomic annotation: structural and functional. Structural annotation is delineating and demarcating the genomic elements (such as genes, promoters, and ...