Maldevelopment and Low Meat Productivity in Cattle with Isoleucyl-tRNA Synthetase Deficiency
Author:
Affiliation:
1. Tankou Livestock Clinic, Iwate Prefectural Agricultural Mutual Aid Association
2. School of Veterinary Medicine, Kitasato University
3. Shirakawa Institute of Animal Genetics
4. Faculty of Agriculture, Tokyo University of Agriculture
Publisher
Japan Veterinary Medical Association
Link
https://www.jstage.jst.go.jp/article/jvma/71/7/71_347/_pdf
Reference11 articles.
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2. [2] Kopajtich R, Murayama K, Janecke AR, Haack TB, Breuer M, Knisely AS, Harting I, Ohashi T, Okazaki Y, Watanabe D, Tokuzawa Y, Kotzaeridou U, Kölker S, Sauer S, Carl M, Straub S, Entenmann A, Gizewski E, Feichtinger RG, Mayr JA, Lackner K, Strom TM, Meitinger T, Müller T, Ohtake A, Hoffmann GF, Prokisch H, Staufner C : Biallelic IARS mutations cause growth retardation with prenatal onset, intellectual disability, muscular hypotonia, and infantile hepatopathy, Am J Hum Genet, 99, 414-422 (2016)
3. [3] Park SG, Schimmel P, Kim S : Aminoacyl tRNA synthetases and their connections to disease. P Natl Acad Sci USA, 105, 11043-11049 (2008)
4. [6] Watanabe D, Ikeda H, Kazamatsuri H, Ando T, Ohtsuka H, Kobayashi S, Oikawa M, Sugimoto Y : Alterations of growth, blood biochemical components and hormone profiles by intensified nutrition in growth retarded Japanese Black cattle, J Vet Med Sci, 72, 1203-1208 (2010)
5. [10] Fliesen T, Maiter D, Gerard G, Underwood LE, Maes M, Ketelslegers JM : Reduction of serum insulin-like growth factor-1 by dietary protein restriction is age dependent, Pediatr Res, 26, 415-419 (1989)
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