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Coordinated international action to accelerate genome-to-phenome with FAANG, the Functional Annotation of Animal Genomes project
Download2015
Tosser-Klopp, G., Zhou, H., Palti, Y., Nanduri, B., Tixier-Boichard, M., Silverstein, J., Plastow, G. S., Sarropoulou, E., Brauning, R., Zhao, S., Rohrer, G. A., Elsik, C. G., Cheng, H. H., Giuffra, E., Notredame, C., Khatib, H., Vilkki, J., Couldrey, C., Archibald, A. L., Tellam, R. L., Schmidt, C. J., Reecy, J. M., Clarke, L., Huang, L. S., Groenen, M. A., McEwan, J. C., Burt, D. W., Kim, H., Bottema, C. D., Kijas, J. W., Dalrymple, B. P., White, S. N., Burgess, S. C., Hayes, B. J., McCarthy, F. M., Moore, S., Foissac, S., Lunney, J. K., Andersson, L., Tuggle, C. K., Casas, E.
We describe the organization of a nascent international effort, the Functional Annotation of Animal Genomes (FAANG) project, whose aim is to produce comprehensive maps of functional elements in the genomes of domesticated animal species.
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Expansion of ruminant-specific microRNAs shapes target gene expression divergence between ruminant and non-ruminant species
Download2013
Kommadath, A., Bao, H., Meng, Y., Plastow, G. S., Stothard, P., Sun, X., Arantes, A. S., Guan, L. L.
Background Understanding how species-specific microRNAs (miRNAs) contribute to species-specific phenotypes is a central topic in biology. This study aimed to elucidate the role of ruminant-specific miRNAs in shaping mRNA expression divergence between ruminant and non-ruminant species. ...
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High resolution radiation hybrid maps of bovine chromosome 19 and 29 and comparison with the bovine genome sequence assembly
Download2007
Murdoch, B., Wang, Z., Stothard, P., Womack, J. E., Mckay, S. D., Moore, S. S., Schiex, T., Prasad, A.
Background High resolution radiation hybrid (RH) maps can facilitate genome sequence assembly by correctly ordering genes and genetic markers along chromosomes. The objective of the present study was to generate high resolution RH maps of bovine chromosomes 19 (BTA19) and 29 (BTA29), and...
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Identification of a putative quantitative trait nucleotide in guanylate binding protein 5 for host response to PRRS virus infection
Download2015
Choi, I., Guan, L., Plastow, G. S., Liu, P., Koltes, J. E., Loyd, H., Boddicker, N. J., Eisley, C. J., Schroyen, M., Bao, H., Dekkers, J. C. M., Kommadath, A., Abrams, S. M., Reecy, J. M., Rowland, R. R. R., Serão, N. V. L., Lunney, J. K., Carpenter, S., Stothard, P., Fritz-Waters, E., Tuggle, C. K.
Background Previously, we identified a major quantitative trait locus (QTL) for host response to Porcine Respiratory and Reproductive Syndrome virus (PRRSV) infection in high linkage disequilibrium (LD) with SNP rs80800372 on Sus scrofa chromosome 4 (SSC4). Results Within this QTL,...