Nathan B. Sutter
La Sierra University
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Featured researches published by Nathan B. Sutter.
PLOS Genetics | 2005
Dana S. Mosher; Pascale Quignon; Carlos Bustamante; Nathan B. Sutter; Cathryn S. Mellersh; Heidi G. Parker; Elaine A. Ostrander
Double muscling is a trait previously described in several mammalian species including cattle and sheep and is caused by mutations in the myostatin (MSTN) gene (previously referred to as GDF8). Here we describe a new mutation in MSTN found in the whippet dog breed that results in a double-muscled phenotype known as the “bully” whippet. Individuals with this phenotype carry two copies of a two-base-pair deletion in the third exon of MSTN leading to a premature stop codon at amino acid 313. Individuals carrying only one copy of the mutation are, on average, more muscular than wild-type individuals (p = 7.43 × 10−6; Kruskal-Wallis Test) and are significantly faster than individuals carrying the wild-type genotype in competitive racing events (Kendalls nonparametric measure, τ = 0.3619; p ≈ 0.00028). These results highlight the utility of performance-enhancing polymorphisms, marking the first time a mutation in MSTN has been quantitatively linked to increased athletic performance.
Nature Reviews Genetics | 2004
Nathan B. Sutter; Elaine A. Ostrander
Purebred dogs are providing invaluable information about morphology, behaviour and complex diseases, both of themselves and humans, by supplying tractable populations in which to map genes that control those processes. The diversification of dog breeds has led to the development of breeds enriched for particular genetic disorders, the mapping and cloning of which have been facilitated by the availability of the canine genome map and sequence. These tools have aided our understanding of canine population genetics, linkage disequilibrium and haplotype sharing in the dog, and have informed ongoing efforts of the need to identify quantitative trait loci that are important in complex traits.
Proceedings of the National Academy of Sciences of the United States of America | 2015
Laura M. Shannon; Ryan H. Boyko; Marta Castelhano; Elizabeth Corey; Jessica J. Hayward; Corin McLean; Michelle E. White; Mounir Abi Said; Baddley A. Anita; Nono Ikombe Bondjengo; Jorge Calero; Ana Galov; Marius Hedimbi; Bulu Imam; Rajashree Khalap; Douglas Lally; Andrew Masta; Lucía Pérez; Julia Randall; Nguyen Minh Tam; Francisco J. Trujillo-Cornejo; Carlos Valeriano; Nathan B. Sutter; Rory J. Todhunter; Carlos Bustamante; Adam R. Boyko
Significance Dogs were the first domesticated species, but the precise timing and location of domestication are hotly debated. Using genomic data from 5,392 dogs, including a global set of 549 village dogs, we find strong evidence that dogs were domesticated in Central Asia, perhaps near present-day Nepal and Mongolia. Dogs in nearby regions (e.g., East Asia, India, and Southwest Asia) contain high levels of genetic diversity due to their proximity to Central Asia and large population sizes. Indigenous dog populations in the Neotropics and South Pacific have been largely replaced by European dogs, whereas those in Africa show varying degrees of European vs. indigenous African ancestry. Dogs were the first domesticated species, originating at least 15,000 y ago from Eurasian gray wolves. Dogs today consist primarily of two specialized groups—a diverse set of nearly 400 pure breeds and a far more populous group of free-ranging animals adapted to a human commensal lifestyle (village dogs). Village dogs are more genetically diverse and geographically widespread than purebred dogs making them vital for unraveling dog population history. Using a semicustom 185,805-marker genotyping array, we conducted a large-scale survey of autosomal, mitochondrial, and Y chromosome diversity in 4,676 purebred dogs from 161 breeds and 549 village dogs from 38 countries. Geographic structure shows both isolation and gene flow have shaped genetic diversity in village dog populations. Some populations (notably those in the Neotropics and the South Pacific) are almost completely derived from European stock, whereas others are clearly admixed between indigenous and European dogs. Importantly, many populations—including those of Vietnam, India, and Egypt—show minimal evidence of European admixture. These populations exhibit a clear gradient of short-range linkage disequilibrium consistent with a Central Asian domestication origin.
Nature Communications | 2016
Jessica J. Hayward; Marta Castelhano; Elizabeth Corey; Cheryl E. Balkman; Tara L. Baxter; Mercedes Casal; Meiying Fang; Susan J. Garrison; Sara E. Kalla; Pavel Korniliev; Michael I. Kotlikoff; Nancy S. Moise; Laura M. Shannon; Kenneth W. Simpson; Nathan B. Sutter; Rory J. Todhunter; Adam R. Boyko
The domestic dog is becoming an increasingly valuable model species in medical genetics, showing particular promise to advance our understanding of cancer and orthopaedic disease. Here we undertake the largest canine genome-wide association study to date, with a panel of over 4,200 dogs genotyped at 180,000 markers, to accelerate mapping efforts. For complex diseases, we identify loci significantly associated with hip dysplasia, elbow dysplasia, idiopathic epilepsy, lymphoma, mast cell tumour and granulomatous colitis; for morphological traits, we report three novel quantitative trait loci that influence body size and one that influences fur length and shedding. Using simulation studies, we show that modestly larger sample sizes and denser marker sets will be sufficient to identify most moderate- to large-effect complex disease loci. This proposed design will enable efficient mapping of canine complex diseases, most of which have human homologues, using far fewer samples than required in human studies.
Physiological Genomics | 2016
E. A. Staiger; M. Al Abri; K. M. Pflug; S. E. Kalla; Dorothy M. Ainsworth; D. Miller; Terje Raudsepp; Nathan B. Sutter; Samantha A. Brooks
Conformation has long been a driving force in horse selection and breed creation as a predictor for performance. The Tennessee Walking Horse (TWH) ranges in size from 1.5 to 1.7 m and is often used as a trail, show, and pleasure horse. To investigate the contribution of genetics to body conformation in the TWH, we collected DNA samples, body measurements, and gait/training information from 282 individuals. We analyzed the 32 body measures with a principal component analysis. Principal component (PC)1 captured 28.5% of the trait variance, while PC2 comprised just 9.5% and PC3 6.4% of trait variance. All 32 measures correlated positively with PC1, indicating that PC1 describes overall body size. We genotyped 109 horses using the EquineSNP70 bead chip and marker association assessed the data using PC1 scores as a phenotype. Mixed-model linear analysis (EMMAX) revealed a well-documented candidate locus on ECA3 (raw P = 3.86 × 10(-9)) near the LCORL gene. A custom genotyping panel enabled fine-mapping of the PC1 body-size trait to the 3-end of the LCORL gene (P = 7.09 × 10(-10)). This position differs from other reports suggesting single nucleotide polymorphisms (SNPs) upstream of the LCORL coding sequence regulate expression of the gene and, therefore, body size in horses. Fluorescent in situ hybridization analysis defined the position of a highly homologous 5 kb retrogene copy of LCORL (assigned to unplaced contigs of the EquCab 2.0 assembly) at ECA9 q12-q13. This is the first study to identify putative causative SNPs within the LCORL transcript itself, which are associated with skeletal size variation in horses.
Archive | 2008
Elaine A. Ostrander; Heidi G. Parker; Nathan B. Sutter
In the past 15 years the field of canine genetics has advanced dramatically. Dense comparative maps, production of × 1.5 and × 7.5 genome sequences, SNP chips, and a growing sophistication regarding how to tackle problems in complex genetics have all propelled the canine system from a backwater to the forefront of the genomics landscape. In this chapter, we explore some of the critical advances in the field that have occurred in the past 5 years. We discuss the implications of each on disease gene mapping. Complex trait genetics and advances related to finding genes associated with morphology are also discussed. Finally, we speculate on what advances will likely define the field in the coming 5 years.
Proceedings of the National Academy of Sciences of the United States of America | 2016
Laura M. Shannon; Ryan H. Boyko; Marta Castelhano; Elizabeth Corey; Jessica J. Hayward; Corin McLean; Michelle E. White; Mounir Abi Said; Baddley A. Anita; Nono Ikombe Bondjengo; Jorge Calero; Ana Galov; Marius Hedimbi; Bulu Imam; Rajashree Khalap; Douglas Lally; Andrew Masta; Lucía Pérez; Julia Randall; Nguyen Minh Tam; Francisco J. Trujillo-Cornejo; Carlos Valeriano; Nathan B. Sutter; Rory J. Todhunter; Carlos Bustamante; Adam R. Boyko
We welcome the additional data and analyses of Wang et al. (1), but believe there are some misunderstandings regarding the methods and findings of Shannon et al. (2). First, although we merged Nepal and Mongolia when plotting linkage disequilibrium (LD) decay in figure 5B of ref. 2 for legibility, we did not assume Nepal and Mongolia represented a single, interbreeding population, and indeed computed separate LD scores for each population (figure 5A of ref. 2), matching Wang et al.’s (1) observation of slightly lower LD in Nepal than Mongolia. Although Nepal (along with India) is commonly considered part of South Asia, Nepal borders Central Asia. Dog populations in two Central Asian countries, Mongolia and Afghanistan, both have lower LD than India. Nepal does not border Southeast Asia. Because we cannot, given the resolution of current sampling … nn[↵][1]1To whom correspondence should be addressed. Email: arb359{at}cornell.edu.nn [1]: #xref-corresp-1-1
American Journal of Veterinary Research | 2018
Christian Posbergh; Sara E. Kalla; Nathan B. Sutter; Bud C. Tennant; Heather J. Huson
OBJECTIVE To identify the genetic cause for congenital photosensitivity and hyperbilirubinemia (CPH) in Southdown sheep. ANIMALS 73 Southdown sheep from a CPH research flock and 48 sheep of various breeds from commercial flocks without CPH. PROCEDURES Whole-genome sequencing was performed for a phenotypically normal Southdown sheep heterozygous for CPH. Heterozygous variants within Slco1b3 coding exons were identified, and exons that contained candidate mutations were amplified by PCR assay methods for Sanger sequencing. Blood samples from the other 72 Southdown sheep of the CPH research flock were used to determine plasma direct and indirect bilirubin concentrations. Southdown sheep with a plasma total bilirubin concentration < 0.3 mg/dL were classified as controls, and those with a total bilirubin concentration ≥ 0.3 mg/dL and signs of photosensitivity were classified as mutants. Sanger sequencing was used to determine the Slco1b3 genotype for all sheep. Genotypes were compared between mutants and controls of the CPH research flock and among all sheep. Protein homology was measured across 8 species to detect evolutionary conservation of Slco1b. RESULTS A nonsynonymous mutation at ovine Chr3:193,691,195, which generated a glycine-to-arginine amino acid change within the predicted Slco1b3 protein, was significantly associated with hyperbilirubinemia and predicted to be deleterious. That amino acid was conserved across 7 other mammalian species. CONCLUSIONS AND CLINICAL RELEVANCE Results suggested a nonsynonymous mutation in Slco1b3 causes CPH in Southdown sheep. This disease appears to be similar to Rotor syndrome in humans. Sheep with CPH might be useful animals for Rotor syndrome research.
Archive | 2010
Melissa M. Gray; Nathan B. Sutter; Elaine A. Ostrander; Robert K. Wayne
Author(s): Gray, Melissa M; Sutter, Nathan B; Ostrander, Elaine A; Wayne, Robert K | Abstract: AbstractN/A
Science | 2004
Heidi G. Parker; Lisa V. Kim; Nathan B. Sutter; Scott Carlson; Travis D. Lorentzen; Tiffany B. Malek; Gary S. Johnson; Hawkins B. DeFrance; Elaine A. Ostrander