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Genomics|November 30, 2005
Single linkage group per chromosome genetic linkage map for the horse, based on two three-generation, full-sibling, crossbred horse reference familiesJune E Swinburne, Mike Boursnell, Gemma Hill, et al.Frontiers in Genetics|July 12, 2019
Chromosome-Level Alpaca Reference Genome <i>VicPac3.1</i> Improves Genomic Insight Into the Biology of New World CamelidsMark F Richardson, Kylie Munyard, Larry J Croft, et al.Plos Genetics|October 24, 2014
Copy number variation in the horse genomeSharmila Ghosh, Zhipeng Qu, Pranab J Das, et al.Plos One|February 15, 2013
Stallion sperm transcriptome comprises functionally coherent coding and regulatory RNAs as revealed by microarray analysis and RNA-seqPranab J Das, Fiona McCarthy, Monika Vishnoi, et al.Mammalian Genome : Official Journal of the International Mammalian Genome Society|September 24, 2005
A high-resolution physical map of equine homologs of HSA19 shows divergent evolution compared with other mammalsCandice Brinkmeyer-Langford, Terje Raudsepp, Eun-Joon Lee, et al.Plos Genetics|January 4, 2013
Genome-wide association study implicates testis-sperm specific FKBP6 as a susceptibility locus for impaired acrosome reaction in stallionsTerje Raudsepp, Molly E McCue, Pranab J Das, et al.Proceedings of the National Academy of Sciences of the United States of America|October 27, 2017
<i>FGF4</i> retrogene on CFA12 is responsible for chondrodystrophy and intervertebral disc disease in dogsEmily A Brown, Peter J Dickinson, Tamer Mansour, et al.Genomics|January 18, 2006
Evolutionary movement of centromeres in horse, donkey, and zebraLucia Carbone, Solomon G Nergadze, Elisa Magnani, et al.Genomics|May 12, 2005
Origin of the prolactin-releasing hormone (PRLH) receptors: evidence of coevolution between PRLH and a redundant neuropeptide Y receptor during vertebrate evolutionMalin C Lagerström, Robert Fredriksson, Thóra K Bjarnadóttir, et al.Pageof 11