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Genetics.

Directory, Periodical
Genetics
Publisher:
Oxford University Press. [Oxford] : Oxford University Press (2021)
Frequency: Monthly
Country: United States
Language: English
Author(s):
Genetics Society of America.
Start Year:1916 -
Identifiers
ISSN:0016-6731 (Print)
1943-2631 (Electronic)
0016-6731 (Linking)
NLM ID:0374636
(DNLM):G04700000(s)
(OCoLC):01570590
Coden:GENTAE
Classification:W1 GE293
The Evolutionary Origin and Genetic Makeup of Domestic Horses.
Genetics    October 13, 2016   Volume 204, Issue 2 423-434 doi: 10.1534/genetics.116.194860
Librado P, Fages A, Gaunitz C, Leonardi M, Wagner S, Khan N, Hanghøj K, Alquraishi SA, Alfarhan AH, Al-Rasheid KA, Der Sarkissian C, Schubert M....The horse was domesticated only 5.5 KYA, thousands of years after dogs, cattle, pigs, sheep, and goats. The horse nonetheless represents the domestic animal that most impacted human history; providing us with rapid transportation, which has considerably changed the speed and magnitude of the circulation of goods and people, as well as their cultures and diseases. By revolutionizing warfare and agriculture, horses also deeply influenced the politico-economic trajectory of human societies. Reciprocally, human activities have circled back on the recent evolution of the horse, by creating hundreds...
Bayesian Inference of Natural Selection from Allele Frequency Time Series.
Genetics    March 23, 2016   Volume 203, Issue 1 493-511 doi: 10.1534/genetics.116.187278
Schraiber JG, Evans SN, Slatkin M.The advent of accessible ancient DNA technology now allows the direct ascertainment of allele frequencies in ancestral populations, thereby enabling the use of allele frequency time series to detect and estimate natural selection. Such direct observations of allele frequency dynamics are expected to be more powerful than inferences made using patterns of linked neutral variation obtained from modern individuals. We developed a Bayesian method to make use of allele frequency time series data and infer the parameters of general diploid selection, along with allele age, in nonequilibrium populati...
Differential gene expression of TRPM1, the potential cause of congenital stationary night blindness and coat spotting patterns (LP) in the Appaloosa horse (Equus caballus).
Genetics    July 27, 2008   Volume 179, Issue 4 1861-1870 doi: 10.1534/genetics.108.088807
Bellone RR, Brooks SA, Sandmeyer L, Murphy BA, Forsyth G, Archer S, Bailey E, Grahn B.The appaloosa coat spotting pattern in horses is caused by a single incomplete dominant gene (LP). Homozygosity for LP (LP/LP) is directly associated with congenital stationary night blindness (CSNB) in Appaloosa horses. LP maps to a 6-cM region on ECA1. We investigated the relative expression of two functional candidate genes located in this LP candidate region (TRPM1 and OCA2), as well as three other linked loci (TJP1, MTMR10, and OTUD7A) by quantitative real-time RT-PCR. No large differences were found for expression levels of TJP1, MTMR10, OTUD7A, and OCA2. However, TRPM1 (Transient Recept...
The molecular genetics of red and green color vision in mammals.
Genetics    October 8, 1999   Volume 153, Issue 2 919-932 doi: 10.1093/genetics/153.2.919
Yokoyama S, Radlwimmer FB.To elucidate the molecular mechanisms of red-green color vision in mammals, we have cloned and sequenced the red and green opsin cDNAs of cat (Felis catus), horse (Equus caballus), gray squirrel (Sciurus carolinensis), white-tailed deer (Odocoileus virginianus), and guinea pig (Cavia porcellus). These opsins were expressed in COS1 cells and reconstituted with 11-cis-retinal. The purified visual pigments of the cat, horse, squirrel, deer, and guinea pig have lambdamax values at 553, 545, 532, 531, and 516 nm, respectively, which are precise to within +/-1 nm. We also regenerated the "true" red ...
Major histocompatibility complex variation in the endangered Przewalski’s horse.
Genetics    August 3, 1999   Volume 152, Issue 4 1701-1710 doi: 10.1093/genetics/152.4.1701
Hedrick PW, Parker KM, Miller EL, Miller PS.The major histocompatibility complex (MHC) is a fundamental part of the vertebrate immune system, and the high variability in many MHC genes is thought to play an essential role in recognition of parasites. The Przewalski's horse is extinct in the wild and all the living individuals descend from 13 founders, most of whom were captured around the turn of the century. One of the primary genetic concerns in endangered species is whether they have ample adaptive variation to respond to novel selective factors. In examining 14 Przewalski's horses that are broadly representative of the living animal...
Genetic linkage in the horse. II. Distribution of male recombination estimates and the influence of age, breed and sex on recombination frequency.
Genetics    January 1, 1984   Volume 106, Issue 1 109-122 doi: 10.1093/genetics/106.1.109
Andersson L, Sandberg K.In the present study an extensive amount of data, comprising more than 30,000 offspring in total, was analyzed to evaluate the influence of age and sex on the recombination frequency in the K-PGD segment of the equine linkage group (LG) I and the influence of age, breed and sex on recombination in the Al-Es segment of LG II. A highly significant sex difference is reported for both segments. Male and female recombination values in the K-PGD segment were estimated at 25.8 +/- 0.8 and 33.3 +/- 2.5%, respectively. Similarly, recombination was less frequent in the male (36.6 +/- 0.7%) than in the f...
Evolutionary conservation of equine gc alleles and of Mammalian gc/albumin linkage.
Genetics    August 1, 1979   Volume 92, Issue 4 1347-1354 doi: 10.1093/genetics/92.4.1347
Weitkamp LR, Allen PZ.Ancient origin of the equine vitamin D binding protein (Gc) polymorphism is suggested by the finding of two alleles, Gc(F) and Gc(S), in each of three equine subgenera, Equus, Asinus and Hippotigris. The equine Gc and albumin loci are closely linked (lod score = 6). Although no recombinants were observed, the data are not inconsistent with a map distance similar to the 2 centimorgans reported for the human albumin/Gc linkage relationship. Gametic association between the Gc(F) and Alb(F) alleles appears probable in the American Standardbred horse, perhaps as a result of population structure. Si...
Genetics of horse acidic prealbumins.
Genetics    July 1, 1970   Volume 65, Issue 3 495-503 doi: 10.1093/genetics/65.3.495
Braend M.No abstract available
Studies on the inheritance of electrophoretic forms of transferrins, albumins, prealbumins and plasma esterases of horses.
Genetics    April 1, 1966   Volume 53, Issue 4 681-694 doi: 10.1093/genetics/53.4.681
Gahne B.No abstract available
Genetic Systems of Blood Groups in Horses.
Genetics    November 1, 1964   Volume 50, Issue 5 915-929 doi: 10.1093/genetics/50.5.915
STORMONT C, SUZUKI Y.No abstract available
The palomino horse.
Genetics    September 1, 1961   Volume 46, Issue 9 1143-1150 doi: 10.1093/genetics/46.9.1143
CASTLE WE, SINGLETON WR.No abstract available
Coat Color Inheritance in Horses and in Other Mammals.
Genetics    January 1, 1954   Volume 39, Issue 1 35-44 doi: 10.1093/genetics/39.1.35
Castle WE.No abstract available
The Abc of Color Inheritance in Horses.
Genetics    January 1, 1948   Volume 33, Issue 1 22-35 doi: 10.1093/genetics/33.1.22
Castle WE.No abstract available