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Items: 1 to 20 of 134

1.

A Haplotype Information Theory Method Reveals Genes of Evolutionary Interest in European vs. Asian Pigs.

Hudson NJ, Naval-Sánchez M, Porto-Neto L, Pérez-Enciso M, Reverter A.

J Anim Sci. 2018 Jun 5. doi: 10.1093/jas/sky225. [Epub ahead of print]

PMID:
29873754
2.

Mammalian genomic regulatory regions predicted by utilizing human genomics, transcriptomics, and epigenetics data.

Nguyen QH, Tellam RL, Naval-Sanchez M, Porto-Neto LR, Barendse W, Reverter A, Hayes B, Kijas J, Dalrymple BP.

Gigascience. 2018 Mar 1;7(3):1-17. doi: 10.1093/gigascience/gix136.

3.

STAT6, PBX2, and PBRM1 Emerge as Predicted Regulators of 452 Differentially Expressed Genes Associated With Puberty in Brahman Heifers.

Nguyen LT, Reverter A, Cánovas A, Venus B, Anderson ST, Islas-Trejo A, Dias MM, Crawford NF, Lehnert SA, Medrano JF, Thomas MG, Moore SS, Fortes MRS.

Front Genet. 2018 Mar 20;9:87. doi: 10.3389/fgene.2018.00087. eCollection 2018.

4.

Convergent Evolution of Slick Coat in Cattle through Truncation Mutations in the Prolactin Receptor.

Porto-Neto LR, Bickhart DM, Landaeta-Hernandez AJ, Utsunomiya YT, Pagan M, Jimenez E, Hansen PJ, Dikmen S, Schroeder SG, Kim ES, Sun J, Crespo E, Amati N, Cole JB, Null DJ, Garcia JF, Reverter A, Barendse W, Sonstegard TS.

Front Genet. 2018 Feb 23;9:57. doi: 10.3389/fgene.2018.00057. eCollection 2018.

5.

Neuropeptidome of the Hypothalamus and Pituitary Gland of Indicine × Taurine Heifers: Evidence of Differential Neuropeptide Processing in the Pituitary Gland before and after Puberty.

DeAtley KL, Colgrave ML, Cánovas A, Wijffels G, Ashley RL, Silver GA, Rincon G, Medrano JF, Islas-Trejo A, Fortes MRS, Reverter A, Porto-Neto L, Lehnert SA, Thomas MG.

J Proteome Res. 2018 May 4;17(5):1852-1865. doi: 10.1021/acs.jproteome.7b00875. Epub 2018 Apr 6.

PMID:
29510626
6.

Sheep genome functional annotation reveals proximal regulatory elements contributed to the evolution of modern breeds.

Naval-Sanchez M, Nguyen Q, McWilliam S, Porto-Neto LR, Tellam R, Vuocolo T, Reverter A, Perez-Enciso M, Brauning R, Clarke S, McCulloch A, Zamani W, Naderi S, Rezaei HR, Pompanon F, Taberlet P, Worley KC, Gibbs RA, Muzny DM, Jhangiani SN, Cockett N, Daetwyler H, Kijas J.

Nat Commun. 2018 Feb 28;9(1):859. doi: 10.1038/s41467-017-02809-1.

7.

Weighting genomic and genealogical information for genetic parameter estimation and breeding value prediction in tropical beef cattle.

Raidan FSS, Porto-Neto LR, Li Y, Lehnert SA, Reverter A.

J Anim Sci. 2018 Mar 6;96(2):612-617. doi: 10.1093/jas/skx027.

PMID:
29385460
8.

Genomic inbreeding depression for climatic adaptation of tropical beef cattle.

Reverter A, Porto-Neto LR, Fortes MRS, Kasarapu P, de Cara MAR, Burrow HM, Lehnert SA.

J Anim Sci. 2017 Sep;95(9):3809-3821. doi: 10.2527/jas2017.1643.

PMID:
28992001
9.

Molecular regulation of high muscle mass in developing Blonde d'Aquitaine cattle foetuses.

Cassar-Malek I, Boby C, Picard B, Reverter A, Hudson NJ.

Biol Open. 2017 Oct 15;6(10):1483-1492. doi: 10.1242/bio.024950.

10.

The Bos taurus-Bos indicus balance in fertility and milk related genes.

Kasarapu P, Porto-Neto LR, Fortes MRS, Lehnert SA, Mudadu MA, Coutinho L, Regitano L, George A, Reverter A.

PLoS One. 2017 Aug 1;12(8):e0181930. doi: 10.1371/journal.pone.0181930. eCollection 2017.

11.

Data compression can discriminate broilers by selection line, detect haplotypes, and estimate genetic potential for complex phenotypes.

Hudson NJ, Hawken RJ, Okimoto R, Sapp RL, Reverter A.

Poult Sci. 2017 Sep 1;96(9):3031-3038. doi: 10.3382/ps/pex151.

PMID:
28633351
12.

Proteogenomics Reveals Enriched Ribosome Assembly and Protein Translation in Pectoralis major of High Feed Efficiency Pedigree Broiler Males.

Bottje WG, Lassiter K, Piekarski-Welsher A, Dridi S, Reverter A, Hudson NJ, Kong BW.

Front Physiol. 2017 May 16;8:306. doi: 10.3389/fphys.2017.00306. eCollection 2017.

13.

A Pathway-Centered Analysis of Pig Domestication and Breeding in Eurasia.

Leno-Colorado J, Hudson NJ, Reverter A, Pérez-Enciso M.

G3 (Bethesda). 2017 Jul 5;7(7):2171-2184. doi: 10.1534/g3.117.042671.

14.

Global differential gene expression in the pituitary gland and the ovaries of pre- and postpubertal Brahman heifers.

Nguyen LT, Reverter A, Cánovas A, Venus B, Islas-Trejo A, Porto-Neto LR, Lehnert SA, Medrano JF, Moore SS, Fortes MR.

J Anim Sci. 2017 Feb;95(2):599-615. doi: 10.2527/jas.2016.0921.

PMID:
28380590
15.

Progesterone signalling in broiler skeletal muscle is associated with divergent feed efficiency.

Bottje W, Kong BW, Reverter A, Waardenberg AJ, Lassiter K, Hudson NJ.

BMC Syst Biol. 2017 Feb 24;11(1):29. doi: 10.1186/s12918-017-0396-2.

16.

Chicken muscle mitochondrial content appears co-ordinately regulated and is associated with performance phenotypes.

Reverter A, Okimoto R, Sapp R, Bottje WG, Hawken R, Hudson NJ.

Biol Open. 2017 Jan 15;6(1):50-58. doi: 10.1242/bio.022772.

17.

Transcriptome analyses identify five transcription factors differentially expressed in the hypothalamus of post- versus prepubertal Brahman heifers.

Fortes MR, Nguyen LT, Weller MM, Cánovas A, Islas-Trejo A, Porto-Neto LR, Reverter A, Lehnert SA, Boe-Hansen GB, Thomas MG, Medrano JF, Moore SS.

J Anim Sci. 2016 Sep;94(9):3693-3702. doi: 10.2527/jas.2016-0471.

PMID:
27898892
18.

Genomic analyses of tropical beef cattle fertility based on genotyping pools of Brahman cows with unknown pedigree.

Reverter A, Porto-Neto LR, Fortes MR, McCulloch R, Lyons RE, Moore S, Nicol D, Henshall J, Lehnert SA.

J Anim Sci. 2016 Oct;94(10):4096-4108. doi: 10.2527/jas.2016-0675.

PMID:
27898866
19.

The 'heritability' of domestication and its functional partitioning in the pig.

Pérez-Enciso M, de Los Campos G, Hudson N, Kijas J, Reverter A.

Heredity (Edinb). 2017 Feb;118(2):160-168. doi: 10.1038/hdy.2016.78. Epub 2016 Sep 21.

20.

Evaluation of non-additive genetic variation in feed-related traits of broiler chickens.

Li Y, Hawken R, Sapp R, George A, Lehnert SA, Henshall JM, Reverter A.

Poult Sci. 2017 Mar 1;96(3):754-763. doi: 10.3382/ps/pew333.

PMID:
27647931

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