Literature DB >> 9987902

Teaching a new dog old tricks: identifying quantitative trait loci using lessons from plants.

K Chase1, F R Adler, K Miller-Stebbings, K G Lark.   

Abstract

Locating quantitative trait loci (QTL) in mammalian systems has proven difficult due to the lack of genetic control and reproducibility, as well as the expense of maintaining sufficiently large populations for genotyping and phenotyping. In plants, populations of recombinant inbred lines (progeny bred to homozygosity from a single cross) do not have these problems. Methods developed to identify QTL in a recombinant inbred soybean population provide a basis for analysis of a suitable mammalian population, such as Portuguese water dogs in the United States. The more than 6,000 dogs have accurate pedigrees, available phenotypic data and samples for genotyping, as well as interesting quantitative trait variation. The computer program Georgie allows us to choose large subpopulations with desirable characteristics such as high degrees of consanguinity that capture some of the benefits of recombinant inbred lines in plants. Computer simulations extending methods developed for simpler plant populations indicate that QTL with realistic effects can be identified from such subpopulations. Currently we are developing markers and collecting phenotypic and genotypic data from this population to begin the process of unraveling the genetic basis of quantitative traits in dogs.

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Year:  1999        PMID: 9987902     DOI: 10.1093/jhered/90.1.43

Source DB:  PubMed          Journal:  J Hered        ISSN: 0022-1503            Impact factor:   2.645


  17 in total

Review 1.  Genetic architecture of the dog: sexual size dimorphism and functional morphology.

Authors:  Karl G Lark; Kevin Chase; Nathan B Sutter
Journal:  Trends Genet       Date:  2006-08-24       Impact factor: 11.639

2.  Genetic regulation of osteoarthritis: A QTL regulating cranial and caudal acetabular osteophyte formation in the hip joint of the dog (Canis familiaris).

Authors:  Kevin Chase; Dennis F Lawler; David R Carrier; Karl G Lark
Journal:  Am J Med Genet A       Date:  2005-06-15       Impact factor: 2.802

3.  Genetics of canid skeletal variation: size and shape of the pelvis.

Authors:  David R Carrier; Kevin Chase; Karl G Lark
Journal:  Genome Res       Date:  2005-12       Impact factor: 9.043

4.  Interaction between the X chromosome and an autosome regulates size sexual dimorphism in Portuguese Water Dogs.

Authors:  Kevin Chase; David R Carrier; Frederick R Adler; Elaine A Ostrander; Karl G Lark
Journal:  Genome Res       Date:  2005-12       Impact factor: 9.043

5.  Two length variants of the microsatellite FH2295 as markers for body size of female Portuguese water dogs.

Authors:  S C Bérubé; P R Johnsson; N Bunimov; C Boivin; O Laneuville
Journal:  J Appl Genet       Date:  2011-11-12       Impact factor: 3.240

6.  Genetic regulation of canine skeletal traits: trade-offs between the hind limbs and forelimbs in the fox and dog.

Authors:  Anastasia V Kharlamova; Lyudmila N Trut; David R Carrier; Kevin Chase; Karl G Lark
Journal:  Integr Comp Biol       Date:  2007-09       Impact factor: 3.326

7.  Fine mapping a locus controlling leg morphology in the domestic dog.

Authors:  P Quignon; J J Schoenebeck; K Chase; H G Parker; D S Mosher; G S Johnson; K G Lark; E A Ostrander
Journal:  Cold Spring Harb Symp Quant Biol       Date:  2009-08-28

8.  Radiographic analysis of vocal tract length and its relation to overall body size in two canid species.

Authors:  K Plotsky; D Rendall; T Riede; K Chase
Journal:  J Zool (1987)       Date:  2013-09-01       Impact factor: 2.322

9.  Finding cardiovascular disease genes in the dog.

Authors:  Heidi G Parker; Kathryn M Meurs; Elaine A Ostrander
Journal:  J Vet Cardiol       Date:  2006-10-10       Impact factor: 1.701

10.  Animal evolution during domestication: the domesticated fox as a model.

Authors:  Lyudmila Trut; Irina Oskina; Anastasiya Kharlamova
Journal:  Bioessays       Date:  2009-03       Impact factor: 4.345

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