Jared E. Decker
University of Missouri
98 Papers
198 Citations
Jared E. Decker is an academic researcher from University of Missouri. The author has contributed to research in topics: Population & Biology. The author has an hindex of 25, co-authored 78 publications.
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Papers
Lessons for livestock genomics from genome and transcriptome sequencing in cattle and other mammals
Jeremy F. Taylor,Lynsey K. Whitacre,Jesse L. Hoff,Polyana C. Tizioto,Polyana C. Tizioto,JaeWoo Kim,Jared E. Decker,Robert D. Schnabel +7 more
TL;DR: Assembly errors and a lack of annotation of functional elements significantly limit the utility of the current draft livestock reference assemblies.
Elucidating the genetic basis of an oligogenic birth defect using whole genome sequence data in a non-model organism, Bubalus bubalis
Lynsey K. Whitacre,Jesse L. Hoff,Robert D. Schnabel,Sara Albarella,F. Ciotola,Vincenzo Peretti,Francesco Strozzi,Chiara Ferrandi,Luigi Ramunno,Tad S. Sonstegard,John L. Williams,Jeremy F. Taylor,Jared E. Decker +12 more
TL;DR: It is predicted that homozygous variants in WNT7A and SMARCA4 are necessary for expression of TH and selection against these variants should eradicate TH.
Feralization: Confronting the Complexity of Domestication and Evolution.
TL;DR: In this paper, the authors argue that by leveraging genomic resources designed for domestic counterparts, powerful phylogenetic and population genomic data collection and analyses can be designed to disentangle complex demographic processes.
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Genetic ancestry, admixture, and population structure in rural Dominica.
Monica H. Keith,Mark V. Flinn,Harly J. Durbin,Troy N. Rowan,Troy N. Rowan,Gregory E. Blomquist,Kristen H. Taylor,Jeremy F. Taylor,Jared E. Decker +8 more
TL;DR: In this article, a community-based population genetic study adds biological evidence to inform post-colonial narrative histories in a Dominican horticultural village, and analyses of linkage disequilibrium decay estimate admixture dates 5-6 generations (~160 years) ago.
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Genetic Basis of Blood-Based Traits and Their Relationship With Performance and Environment in Beef Cattle at Weaning.
Josue Chinchilla-Vargas,Luke M. Kramer,J. D. Tucker,Donald S. Hubbell,Jeremy G Powell,T. D. Lester,E. A. Backes,K. S. Anschutz,Jared E. Decker,Kenneth J. Stalder,Max F. Rothschild,James E. Koltes +11 more
TL;DR: This study represents one of the first efforts represented in scientific literature to identify the genetic basis of blood cell traits in beef cattle and concludes that blood-based traits have weak phenotypic correlations but strong genetic correlations among themselves.