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Association of the Expression Level of the MYBPC1 Gene in Skeletal Muscle With Marbling Trait in Japanese Black Beef Cattle


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Annika M., Carolina E.H., Lars M., Ulf E., Annelie F. (2013). Imaging of neutral lipids by oil red O for analyzing the metabolic status in health and disease. Nat. Protoc., 8: 1149-1154.Search in Google Scholar

Boylston T.D., Morgan S.A., Johnson K.A., B u s b o om J.R., Wright R.W., Reeves J.J. (1995). Lipid-content and composition of Wagyu and domestic breeds of beef. J. Agric. Food Chem., 43: 1202-1207.Search in Google Scholar

Brackebusch S.A., McKeith F.K., Carr T.R., McLaren D.G. (1991). Relationship between longissimus composition and the composition of other major muscles of the beef carcass. J. Anim. Sci., 69: 631-640.Search in Google Scholar

Busboom J.R.,Jeremiah L.E.,Gibson L.L., Johnson K.A., Gaskins C.T., R e e v e s J. J., Wri ght R.W. (1993). Effects of biological source on cooking and palatability attributes of beef produced for the Japanese market. Meat Sci., 35: 241-258.Search in Google Scholar

Chen Z., Zhao T.J., Li J., Gao Y.S., Meng F.G., Yan Y.B., Zhou H.M. (2011). Slow skeletal muscle myosin-binding protein-C (MYBPC1) mediates recruitment of muscle-type creatine kinase (CK) to myosin. Biochem. J., 436: 437-445.Search in Google Scholar

Garrett W.N., Hinman N. (1971). Fat content of trimmed beef muscles as influenced by quality grade, yield grade, marbling score and sex. J. Anim. Sci., 33: 948-957.Search in Google Scholar

Harper G.S., Pethick D.W. (2004). How might marbling begin? Aust. J. Exp. Agric., 44: 653-662.Search in Google Scholar

Jeong J., Kwon E.G., Im S.K., Seo K.S., Baik M. (2012). Expression of fat deposition and fat removal genes is associated with intramuscular fat content in longissimus dorsi muscle of Korean cattle steers. J. Anim. Sci., 90: 2044-2053.Search in Google Scholar

JMGA (1988). New Beef Carcass Grading Standards. Japan Meat Grading Association, Tokyo, Japan.Search in Google Scholar

Jurie C., Cassar-Malek I., Bonnet M., Leroux C., Bauchart D., Boulesteix P., Pethick D.W., Hocquette J.F. (2007). Adipocyte fatty acid-binding protein and mitochon­drial enzyme activities in muscles as relevant indicators of marbling in cattle. J. Anim. Sci., 85: 2660-2669.Search in Google Scholar

Liu Y., Wada R., Yamashita T., Mi Y., Deng C.X., Hobson J.P., Rosenfeldt H.M., Nava V.E., Chae S.S., Lee M.J., Liu C.H., Hla T., Spiegel S., Proia R.L. (2000). Edg-1, the G protein-coupled receptor for sphingosine-1-phosphate, is essential for vascular matura­tion. J. Clin. Invest., 106: 951-961.Search in Google Scholar

Matsuishi M., Fujimori M., Okitani A. (2001). Wagyu beef aroma in Wagyu (Japanese Black cattle) beef preferred by the Japanese over imported beef. Anim. Sci. J., 72: 498-504.Search in Google Scholar

Offer G., Moos C., Starr R. (1973). A new protein of the thick filaments of vertebrate skeletal myofibrils: Extraction, purification and characterization. J. Mol. Biol., 74: 653-676.Search in Google Scholar

Osawa T., Kuchida K., Hidaka S., Kato T. (2008). Genetic parameters for image analysis traits on M. longissimus thoracis and M. trapezius of carcass cross section in Japanese Black cattle. J. Anim. Sci., 86: 40-46.Search in Google Scholar

Park B., Whittaker A.D., Miller R.K., Hale D.S. (1994). Predicting intramuscular fat in beef longissimus muscle from speed of sound. J. Anim. Sci., 72: 109-116.Search in Google Scholar

Pepe F.A., Drucker B. (1975). The myosin filament: III. C-protein. J. Mol. Biol., 99: 609-617.Search in Google Scholar

Sasaki Y, Nagai K., Nagata Y, Doronbekov K., Nishimura S., Yoshioka S., Fu- jita T., Shiga K., Miyake T., Taniguchi Y., Yamada T. (2006). Exploration of genes showing intramuscular fat deposition-associated expression changes in longissimus muscle. Anim. Genet., 37: 40-46.Search in Google Scholar

Sato N., Kawakami T., Nakayama A., Suzuki H., Kasahara H., Obinata T. (2003). A novel variant of cardiac myosin-binding protein-C that is unable to assemble into sarcomeres is expressed in the aged mouse atrium. Mol. Biol. Cell., 14: 3180-3191.Search in Google Scholar

Schmittgen T.D., Livak K.J. (2008). Analyzing real-time PCR data by the comparative C (T) method. Nat. Protoc., 3: 1101-1108.Search in Google Scholar

Smith S.B., Lunt D.K., Zembayashi M. (2000). Intramuscular fat deposition: The physiological process and the potential for its manipulation. Plains Nutritional Council Spring Conference, Texas A& M Research and Extension Centre, San Antonio Texas, USA, pp. 1-12.Search in Google Scholar

Tong B., Sasaki S., Muramatsu Y, Ohta T., Kose H., Yamashiro H., Fujita T., Yamada T. (2014). Association of a single nucleotide polymorphism in myosin binding pro­tein C, slow type (MYBPC1) gene with marbling in Japanese Black beef cattle. Anim. Genet., 45: 611-612.Search in Google Scholar

Wang Y.H.,B o wer N.I., Re verter A.Tan S.H.,De JagerN.WangR., McWilliam S.M., Cafe L.M., Greenwood P.L., Lehnert S.A. (2009). Gene expression patterns during intra­muscular fat development in cattle. J. Anim. Sci., 87: 119-130.Search in Google Scholar

Yamada T., Itoh M., Nishimura S., Taniguchi Y, Miyake T., Sasaki S., Yoshio­ka S., Fujita T., Shiga K., Morita M., Sasaki Y. (2009). Association of single nucleotide polymorphisms in endothelial differentiation, sphingolipid G-protein-coupled receptor, 1 gene with marbling in Japanese Black beef cattle. Anim. Genet., 40: 209-216.Search in Google Scholar

Yang X.J., Albrecht E., Ender K., Zhao R.Q., Wegner J. (2006). Computer image analysis of intramuscular adipocytes and marbling in the longissimus muscle of cattle. J. Anim. Sci., 84: 3251-3258. Search in Google Scholar

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Sprache:
Englisch
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Biologie, Biotechnologie, Zoologie, Medizin, Veterinärmedizin