Analyze Diet

Topic:DNA

DNA in horses refers to the genetic material that carries the hereditary information necessary for the growth, development, functioning, and reproduction of equine species. It consists of sequences of nucleotides that encode the genetic instructions used in the development and functioning of horses. DNA analysis in horses can provide insights into genetic diversity, lineage, and breed characteristics. It is also utilized in identifying genetic disorders, understanding hereditary traits, and assisting in selective breeding programs. This page compiles peer-reviewed research studies and scholarly articles that explore the structure, function, and applications of DNA analysis in equine genetics and breeding.
Phorbol ester stimulation of equine macrophage cultures alters expression of equine infectious anemia virus.
Veterinary microbiology    October 1, 1996   Volume 52, Issue 3-4 209-221 doi: 10.1016/s0378-1135(96)00071-5
Sellon DC, Walker KM, Russell KE, Perry ST, Fuller FJ.Equine infectious anemia virus (EIAV) is a lentivirus that replicates predominantly in mature tissue macrophages. Viral expression is strongly influenced by the state of differentiation of the host cell. While blood monocytes can be infected, viral transcription is limited until the cell differentiates into a mature macrophage. Activation of mature macrophages infected with EIAV might also alter viral expression, presumably through binding of cellular transcription factors to viral nucleic acid sequences within the long terminal repeat (LTR). Using DNA amplification techniques, we compared LTR...
Species markers for equine strongyles detected in intergenic rDNA by PCR-RFLP.
Molecular and cellular probes    October 1, 1996   Volume 10, Issue 5 371-378 doi: 10.1006/mcpr.1996.0050
Gasser RB, Stevenson LA, Chilton NB, Nansen P, Bucknell DG, Beveridge I.Five species of equine strongyle belonging to the subfamily Strongylinae (Strongylus edentatus, S. equinus, S. vulgaris, Oesophagodontus robustus and Triodontophorus serratus) and 11 species belonging to the subfamily Cyathostominae (Poteriostomum imparidentatum, P. ratzii, Cylicocyclus insignis, Cc. leptostomus, Cc. nassatus, Cylicostephanus calicatus, Cs. longibursatus, Cs. goldi, Cyathostomum catinatum, Cy. labiatum and Cy. pateratum) were characterized using a polymerase chain reaction-linked restriction fragment length polymorphism technique (PCR-RFLP). Internal transcribed spacer ribosom...
Development of a diagnostic DNA probe to detect Setaria digitata: the causative parasite of cerebrospinal nematodiasis in goats, sheep and horses.
The British veterinary journal    September 1, 1996   Volume 152, Issue 5 561-571 doi: 10.1016/s0007-1935(96)80008-x
Wijesundera WS, Chandrasekharan NV, Karunanayake EH, Dharmasena SP.Two repetitive sequences (IpSdM and IpSdS) have been cloned and sequenced from the genome of Setaria digitata. When IpSdM (214 bp) and IpSdS (201 bp) were aligned, a high degree of homology (85%) was observed, indicating that they belong to the same family of repeats. IpSdM represents a complete repeating element while IpSdS consists of two partial repeating elements arranged in tandem. The elements are present in about 10 000 copies comprising 2.8% of the S. digitata genome. As a diagnostic probe IpSdM detects as little as 100 pg DNA of both S. digitata and S. labiato-papillosa. It can also d...
A 16S rRNA-based PCR assay for detection and identification of granulocytic Ehrlichia species in dogs, horses, and cattle.
Journal of clinical microbiology    September 1, 1996   Volume 34, Issue 9 2170-2174 doi: 10.1128/jcm.34.9.2170-2174.1996
Engvall EO, Pettersson B, Persson M, Artursson K, Johansson KE.A PCR-based assay was developed for detecting DNA of granulocytic ehrlichiae in blood samples from dogs, horses, and cattle, Primers were designed from 16S rRNA sequence information to specifically amplify DNA from a newly identified Swedish Ehrlichia species. The 16S rRNA nucleotide sequence of this Swedish species differs in only two and three positions from the sequences of Ehrlichia phagocytophila and Ehrlichia equi, respectively, which were also amplified by this PCR system. For evaluation, PCR results were compared with microscopic examination of stained blood smears for the detection of...
Tumour suppressor gene p53 in the horse: identification, cloning, sequencing and a possible role in the pathogenesis of equine sarcoid.
Research in veterinary science    September 1, 1996   Volume 61, Issue 2 114-119 doi: 10.1016/s0034-5288(96)90084-3
Bucher K, Szalai G, Marti E, Griot-Wenk ME, Lazary S, Pauli U.The tumour suppressor protein p53 enhances the genetic stability of the cell and plays a critical role in tumour suppression. Equine p53 was analysed by sequencing exons 5 to 9, a region which includes most known mutations and all the mutational hotspots in the species that have been investigated. The fragment was amplified, cloned and sequenced from genomic and complementary DNA. A comparison of the predicted amino acid sequences between the horse and other species resulted in identities between 66 per cent with the clawed frog and 92 per cent with the cat. Using the single strand conformatio...
Laryngeal and pharyngeal dysfunction in horses homozygous for hyperkalemic periodic paralysis.
Journal of the American Veterinary Medical Association    August 15, 1996   Volume 209, Issue 4 798-803 
Carr EA, Spier SJ, Kortz GD, Hoffman EP.Evaluate histories, clinical signs, and laboratory data of 69 horses homozygous by DNA testing for hyperkalemic periodic paralysis (HPP). Methods: Cohort study. Methods: 69 of 189 horses testing homozygous for HPP between October 1992 and November 1994. Methods: Questionnaires addressing signalment, training regimes, medical history, and current status of affected horses were sent to owners, trainers, or attending veterinarians. Data from completed questionnaires were tabulated and evaluated, using descriptive statistics. Results: Sixty-nine (37%) of 189 questionnaires were completed and retur...
Equine dinucleotide repeat loci from LEX025 to LEX033.
Animal genetics    August 1, 1996   Volume 27, Issue 4 289-290 doi: 10.1111/j.1365-2052.1996.tb00500.x
Coogle L, Reid R, Bailey E.No abstract available
Four horse genomic fragments containing minisatellites detect highly polymorphic DNA fingerprints.
Animal genetics    August 1, 1996   Volume 27, Issue 4 286 doi: 10.1111/j.1365-2052.1996.tb00494.x
Anglana M, Vigoni MT, Giulotto E.No abstract available
Identification of Rhodococcus equi using the polymerase chain reaction.
Letters in applied microbiology    August 1, 1996   Volume 23, Issue 2 72-74 doi: 10.1111/j.1472-765x.1996.tb00033.x
Bell KS, Philp JC, Christofi N, Aw DW.Two regions in the gene coding for 16S rRNA in Rhodococcus equi were selected as species-specific primer sequences for the polymerase chain reaction (PCR). PCR using these primers was tested against 10 strains of R. equi (including the type strain) and gave positive results for all but was negative for all other tested species of Rhodococcus; representatives of the most closely related genera and a number of other bacterial species. This method could therefore be used to identify this species which can infect the lungs or other organs of horses, pigs, humans and other animals.
Cloning of a polymorphic sequence from the nontranscribed spacer of horse rDNA.
Mammalian genome : official journal of the International Mammalian Genome Society    July 1, 1996   Volume 7, Issue 7 539-541 doi: 10.1007/s003359900159
No abstract available
Sequence analysis and polymerase chain reaction amplification of small subunit ribosomal DNA from Sarcocystis neurona.
American journal of veterinary research    July 1, 1996   Volume 57, Issue 7 975-981 
Marsh AE, Barr BC, Madigan J, Lakritz J, Conrad PA.To identify Sarcocystis neurona-specific DNA sequences in the nuclear small subunit ribosomal RNA (nss-rRNA) gene that could be used to distinguish S neurona from other closely related protozoal parasites, and to evaluate a polymerase chain reaction (PCR) test, using broad based primers and a unique species-specific probe on CSF for detection of S neurona in equids. Methods: Sequencing of the nuclear small subunit ribosomal RNA gene from a new S neurona isolate (UCD 1) was performed. The sequence was compared with that of other closely related Sarcocystidae parasites. From this sequence, conse...
Equine dinucleotide repeat loci LEX015-LEX024.
Animal genetics    June 1, 1996   Volume 27, Issue 3 217-218 
Coogle L, Reid R, Bailey E.No abstract available
Three new polymorphic equine microsatellites: HLM2, HLM3, HLM5.
Animal genetics    June 1, 1996   Volume 27, Issue 3 215 doi: 10.1111/j.1365-2052.1996.tb00961.x
Vega-Pla JL, Garrido JJ, Dorado G, de Andrés-Cara DF.No abstract available
Hyperkalemic periodic paralysis episode during halothane anesthesia in a horse.
Journal of the American Veterinary Medical Association    June 1, 1996   Volume 208, Issue 11 1859-1865 
Bailey JE, Pablo L, Hubbell JA.A 7-month-old Quarter Horse filly was admitted for surgical repair of a right olecranon fracture. Anesthesia was achieved with xylazine hydrochloride, guaifenesin, ketamine hydrochloride, and halothane. Two and a half hours after induction of anesthesia, myotonia, muscle fasciculations, and sweating, concurrent with high serum potassium concentration and associated electrocardiographic changes consistent with hyperkalemic periodic paralysis, were observed. Treatment included intermittent positive-pressure ventilation, changing intravenous administration of fluids from lactated Ringer's solutio...
Nested polymerase chain reaction for detection of Ehrlichia equi genomic DNA in horses and ticks (Ixodes pacificus).
Veterinary parasitology    June 1, 1996   Volume 63, Issue 3-4 319-329 doi: 10.1016/0304-4017(95)00904-3
Barlough JE, Madigan JE, DeRock E, Bigornia L.A nested polymerase chain reaction for detecting Ehrlichia equi in horses and ticks (Ixodes pacificus) was developed. A major second-round PCR product of 928 bp could be readily visualized in ethidium bromide-stained agarose minigels. An internal probe was used to verify the identity of the amplified product by non-radioactive (digoxigenin-based) Southern blotting; additional confirmation was provided by DNA sequence analysis. A dilution study testing the sensitivity of the PCR indicated that DNA derived from 3 infected neutrophils was sufficient to generate a PCR signal. The specificity of t...
Detection of bacteria in equine synovial fluid by use of the polymerase chain reaction.
Veterinary surgery : VS    May 1, 1996   Volume 25, Issue 3 195-198 doi: 10.1111/j.1532-950x.1996.tb01398.x
Crabill MR, Cohen ND, Martin LJ, Simpson RB, Burney N.Equine synovial fluid aliquots were inoculated with Salmonella enteritidis, Escherichia coli, Actinobacillus equuli, Staphylococcus aureus, and Streptococcus zooepidemicus to obtain approximate concentrations of 1000, 100, 10, and 1 colony forming U/mL. Synovial fluid aliquots were also inoculated with an unquantitated inoculum of Bacteroides fragilis and Clostridium perfringens. Inoculated synovial fluid was incubated in trypticase-soy broth or Columbia broth for approximately 12 hours. Then aliquots were removed for DNA extraction and polymerase chain reaction (PCR) analysis for detection of...
Equine dinucleotide repeat polymorphisms at loci LEX002, -003, -004, -005, -007, -008, -009, -010, -011, -013 and -014.
Animal genetics    April 1, 1996   Volume 27, Issue 2 126-127 
Coogle L, Bailey E, Reid R, Russ M.No abstract available
Characterization of two polymorphic horse microsatellites: HMS15 and HMS20.
Animal genetics    April 1, 1996   Volume 27, Issue 2 123 
Guérin G, Bertaud M.No abstract available
Four equine dinucleotide repeats at microsatellite loci UCDEQ5, UCDEQ14, UCDEQ46 and UCDEQ62.
Animal genetics    April 1, 1996   Volume 27, Issue 2 129 
Eggleston-Stott ML, DelValle A, Bowling AT, Bautista M, Zahorchak R, Malyj W.No abstract available
Exercise-induced changes in the activities of beta-glucuronidase and N-acetyl-beta-D-glucosaminidase in plasma and muscle of standardbred trotters.
Zentralblatt fur Veterinarmedizin. Reihe A    April 1, 1996   Volume 43, Issue 2 119-126 doi: 10.1111/j.1439-0442.1996.tb00435.x
Raulo SM, Hyyppa S, Räsänen LA, Pösö AR.The activities of lysosomal enzymes, such as beta-glucuronidase and N-acetyl-beta-D-glucosaminidase, have been shown to increase in muscle after endurance exercise. We examined whether measurable activities of lysosomal enzymes are present in equine plasma and whether the exercise-induced changes in the muscle are reflected in plasma. Six trained Standardbred trotters performed three exercise bouts with 1 h intervals and the same procedure was repeated 3 days later. Venous blood samples and muscle biopsies from the middle gluteal muscle were taken before and after exercise. The activities of b...
Zoo-FISH delineates conserved chromosomal segments in horse and man. Raudsepp T, Frönicke L, Scherthan H, Gustavsson I, Chowdhary BP.Human chromosome specific libraries (CSLs) were individually applied to equine metaphase chromosomes using the fluorescence in situ hybridization (FISH) technique. All CSLs, except Y, showed painting signals on one or several horse chromosomes. In total 43 conserved chromosomal segments were painted. Homoeology could not, however, be detected for some segments of the equine genome. This is most likely related to the very weak signals displayed by some libraries, rather than to the absence of similarity with the human genome. In spite of divergence from the human genome, dated 70-80 million yea...
Cloning and sequencing of an equine insulin-like growth factor I cDNA and its expression in fetal and adult tissues.
General and comparative endocrinology    April 1, 1996   Volume 102, Issue 1 11-15 doi: 10.1006/gcen.1996.0040
Otte K, Rozell B, Gessbo A, Engström W.A cDNA for equine insulin-like growth factor I (IGF I) has been isolated by reverse transcriptase-polymerase chain reaction and subsequently sequenced. The sequenced fragment contained 465 bp including the coding regions for the signal peptide, the entire mature protein, and 4 amino acids into the E-peptide. Like its human counterpart, the mature equine IGF I peptide contains 70 amino acids and was 100% homologous between horse and man. The 49-amino-acid signal peptide had the threonine in position 26 of the human signal peptide substituted by isoleucine. The nucleotide homology across the ent...
Detection of eastern equine encephalomyelitis virus RNA in formalin-fixed, paraffin-embedded tissues using DNA in situ hybridization. Gregory CR, Latimer KS, Niagro FD, Campagnoli RP, Steffens WL, Ritchie BW.Eastern equine encephalomyelitis (F.EE) virus was detected in infected formalin-fixed horse and emu tissues and in infected chicken embryo fibroblasts. Results of in situ hybridization using a digoxigenin-labeled 40-base DNA probe complementary to a conserved region of the EEE virus RNA compared favorably with results of both virus isolation and serum neutralization tests. This technique may be useful for diagnosis of EEE virus infection in various animal species, especially when fresh tissues are not available for analysis, and also will provide a means for studying the involvement of alphavi...
Alterations in the equine herpesvirus type-1 (EHV-1) strain RacH during attenuation.
Zentralblatt fur Veterinarmedizin. Reihe B. Journal of veterinary medicine. Series B    March 1, 1996   Volume 43, Issue 1 1-14 doi: 10.1111/j.1439-0450.1996.tb00282.x
Hübert PH, Birkenmaier S, Rziha HJ, Osterrieder N.The equine herpesvirus type-1 modified live-vaccine strain RacH (256th passage on porcine embryonic kidney cells) was investigated by restriction-enzyme analysis and compared to representative plaque isolates of the 12th passage (RacL11, RacL22) and 185th passage (RacM24, RacM36). The restriction patterns of all Rac plaque isolates differed compared with reference strain Ab4. The left UL terminus was shortened by 0.1 kbp and a missing BamHI site led to the fusion of the f and t fragments. In some Rac derivatives, losses of restriction sites without deletions were observed: 1. One BamHI site lo...
Equine piroplasmosis an update on diagnosis, treatment and prevention.
The British veterinary journal    March 1, 1996   Volume 152, Issue 2 139-151 doi: 10.1016/s0007-1935(96)80070-4
Brüning A.Two haemoprotozoan parasites, Babesia caballi and Babesia equi, can cause equine piroplasmosis. Due to the presence of potential tick vectors in areas so far unaffected by equine babesias, import and export regulations often require the serum testing of animals for evidence of infection. Although the complement fixation test (CFT) has been recommended for detecting the presence of antibodies to Babesia spp., it has been demonstrated to have several disadvantages, including false-positive results and low sensitivity for detecting latent infections. An enzyme-linked immunosorbent assay (ELISA) m...
Correlation between DNA restriction fragment length polymorphisms in Leptospira interrogans serovar pomona type kennewicki and host animal source.
Journal of clinical microbiology    February 1, 1996   Volume 34, Issue 2 424-425 doi: 10.1128/jcm.34.2.424-425.1996
Bolin CA, Zuerner RL.Isolates (n = 147) of Leptospira interrogans serovar pomona type kennewicki from cattle, swine, horses, and wildlife were analyzed by DNA restriction endonuclease analysis. Restriction fragment length polymorphisms were identified in DNA digested with HpaII, and the restriction fragment length polymorphisms were correlated with the host animal source of the isolates. These results will be useful in understanding the epidemiology of serovar pomona infections in livestock.
Nucleotide sequence of exons 5 to 9 of the p53 tumour-suppressor gene of the horse (Equus caballus).
DNA sequence : the journal of DNA sequencing and mapping    January 1, 1996   Volume 6, Issue 3 185-187 doi: 10.3109/10425179609010208
Nasir L, Reid SW.An evolutionary conserved 1.3 kb fragment corresponding to the horse p53 tumour suppressor gene was PCR amplified, cloned and the nucleotide sequence determined. The p53 fragment encoded exons 5 to 9 and the intervening introns. The nucleotide sequence and the predicted aminoacid sequence showed a high level of homology with human and donkey p53 sequences.
Factors affecting the ultrasonic properties of equine digital flexor tendons.
Ultrasound in medicine & biology    January 1, 1996   Volume 22, Issue 7 907-915 doi: 10.1016/0301-5629(96)00085-3
Miles CA, Fursey GA, Birch HL, Young RD.The velocity, attenuation and apparent backscattering coefficient of 6-11-MHz ultrasound were measured in three orthogonal directions in equine deep digital flexor (DDF) and superficial digital flexor (SDF) tendons at 0 degree C. Ultrasonic measurements were examined for correlation with tendon water, collagen, DNA and glycosaminoglycans contents, determined by chemical analyses and with structure observed by scanning electron microscopy. The SDF tendon contained more water, more DNA (i.e., more cells), less collagen and less glycosaminoglycans and exhibited lower velocities and attenuations t...
[Identification and diagnosis of Taylorella equigenitalis by a DNA amplification method (PCR)].
Schweizer Archiv fur Tierheilkunde    January 1, 1996   Volume 138, Issue 3 115-120 
Miserez R, Frey J, Krawinkler M, Nicolet J.A polymerase chain reaction (PCR) for identification of Taylorella equigenitalis was developed. The oligonucleotide primers are based on the DNA sequence of the rrs gene of T. equigenitalis, encoding for the 16S ribosomal RNA. Analysis of 21 strains of T. equigenitalis from England, USA and Switzerland showed an amplification product of 410 bp with identical Sau3A restriction profile. The sensitivity of the PCR-Assay was estimated to detect 50 to 500 bacteria of T. equigenitalis in a mixture with frequently found contaminants. Further analysis of culture from 60 genital swabs, taken in the cou...
Equine infectious anemia virus replication is upregulated during differentiation of blood monocytes from acutely infected horses.
Journal of virology    January 1, 1996   Volume 70, Issue 1 590-594 doi: 10.1128/JVI.70.1.590-594.1996
Sellon DC, Walker KM, Russell KE, Perry ST, Covington P, Fuller FJ.Equine infectious anemia virus is a lentivirus that replicates in mature tissue macrophages of horses. Ponies were infected with equine infectious anemia virus. During febrile episodes, proviral DNA was detectable, but viral mRNA was not detectable. As cultured blood monocytes from these ponies differentiated into macrophages, viral expression was upregulated. In situ hybridization confirmed that viral transcription occurred in mature macrophages.
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