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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. ...