Register      Login
Animal Production Science Animal Production Science Society
Food, fibre and pharmaceuticals from animals

Articles citing this paper

How might marbling begin?

G. S. Harper and D. W. Pethick
44(7) pp.653 - 662


88 articles found in Crossref database.

Oleic acid enhances G protein coupled receptor 43 expression in bovine intramuscular adipocytes but not in subcutaneous adipocytes1
Chung K. Y., Smith S. B., Choi S. H., Johnson B. J.
Journal of Animal Science. 2016 94(5). p.1875
Growth performance, carcass traits and meat quality of bulls and heifers slaughtered at different ages
Bureš D., Bartoň L.
Czech Journal of Animal Science. 2012 57(1). p.34
Adiposity and adipogenic gene expression in four different muscles in beef cattle
Martínez del Pino Lara, Arana Ana, Alfonso Leopoldo, Mendizábal José Antonio, Soret Beatriz, te Pas Marinus F.W.
PLOS ONE. 2017 12(6). p.e0179604
Supplementing Ca salts of soybean oil to late-gestating beef cows: impacts on performance and physiological responses of the offspring
Brandão Alice Poggi, Cooke Reinaldo F, Schubach Kelsey M, Rett Bruna, Souza Osvaldo A, Pohler Ky G, Bohnert David W, Marques Rodrigo S
Translational Animal Science. 2020 4(Supplement_1). p.S22
The effect of supplementing rumen undegradable unsaturated fatty acids on marbling in early-weaned steers1
Mangrum K. S., Tuttle G., Duckett S. K., Sell G. S., Krehbiel C. R., Long N. M.
Journal of Animal Science. 2016 94(2). p.833
Review: Enhancing intramuscular fat development via targeting fibro-adipogenic progenitor cells in meat animals
Li X., Fu X., Yang G., Du M.
Animal. 2020 14(2). p.312
Effects of vitamin A on growth performance and carcass quality in steers
Kruk Z.A., Bottema C.D.K., Davis J.J., Siebert B.D., Harper G.S., Di J., Pitchford W.S.
Livestock Science. 2008 119(1-3). p.12
Polymorphism Analysis and Expression of the CCAAT/Enhancer Binding Protein β(C/EBPβ) in the Korean Native Cattle and Black Cattle Storage
Journal of Animal Science and Technology. 2008 50(2). p.265
Study on the Effect of Oleic Acid-Induced Lipogenic Differentiation of Skeletal Muscle Satellite Cells in Yanbian Cattle and Related Mechanisms
Sun Bin, Sun Jianfu, Li Qiang, Wang Ying, Wang Enze, Jin Huaina, Hua Huan, Jin Qiyun, Li Xiangzi
Animals. 2023 13(23). p.3618
MyoD promotes porcine PPARγ gene expression through an E-box and a MyoD-binding site in the PPARγ promoter region
Deng Bing, Zhang Feng, Chen Kun, Wen Jianghui, Huang Haijun, Liu Wu, Ye Shengqiang, Wang Lixia, Yang Yu, Gong Ping, Jiang Siwen
Cell and Tissue Research. 2016 365(2). p.381
Innovations in beef production systems that enhance the nutritional and health value of beef lipids and their relationship with meat quality
Scollan Nigel, Hocquette Jean-François, Nuernberg Karin, Dannenberger Dirk, Richardson Ian, Moloney Aidan
Meat Science. 2006 74(1). p.17
Intramuscular fat content in meat-producing animals: development, genetic and nutritional control, and identification of putative markers
Hocquette J.F., Gondret F., Baéza E., Médale F., Jurie C., Pethick D.W.
Animal. 2010 4(2). p.303
Omega-6 Fatty Acids: A Sustainable Alternative to Improve Beef Production Efficiency
Cappellozza Bruno Ieda, Cooke Reinaldo Fernandes, Harvey Kelsey Margaret
Animals. 2021 11(6). p.1764
Both PPAR.GAMMA. and C/EBP.ALPHA. are Sufficient to Induce Transdifferentiation of Goat Fetal Myoblasts into Adipocytes
YAMANOUCHI Keitaro, BAN Ayako, SHIBATA Shingo, HOSOYAMA Tohru, MURAKAMI Yousuke, NISHIHARA Masugi
Journal of Reproduction and Development. 2007 53(3). p.563
Haplotype Analysis Improved Evidence for Candidate Genes for Intramuscular Fat Percentage from a Genome Wide Association Study of Cattle
Barendse William, Schneider Marlon R.
PLoS ONE. 2011 6(12). p.e29601
Technical note: Alternatives to reduce adipose tissue sampling bias1
Cruz G. D., Wang Y., Fadel J. G.
Journal of Animal Science. 2014 92(10). p.4761
Expression of genes controlling fat deposition in two genetically diverse beef cattle breeds fed high or low silage diets
da Costa Ana Sofia Henriques, Pires Virgínia Maria Rico, Fontes Carlos Mendes Godinho Andrade, Mestre Prates José António
BMC Veterinary Research. 2013 9(1).
Nutrient analysis and rumen fermentation of commercial formulated concentrates for finishing Hanwoo steers
Korean Journal of Agricultural Science. 2016 43(5).
Functional study of Villin 2 protein expressed in longissimus dorsi muscle of Korean native cattle in different growth stages
Jin Yong-Cheng, Han Jeng-A, Xu Cheng-Xiong, Kang Sang-Kee, Kim Sang-Hun, Seo Kang-Suk, Yoon Du-Hak, Choi Yun-Jaie, Lee Hong-Gu
BMB Reports. 2012 45(2). p.102
Supplementing Ca salts of soybean oil to late-gestating beef cows: impacts on performance and physiological responses of the offspring
Brandão Alice Poggi, Cooke Reinaldo F, Schubach Kelsey M, Rett Bruna, Souza Osvaldo A, Schachtschneider Christopher L, Perry George A, Arispe Sergio A, Jump Donald B, Pohler Ky G, Bohnert David W, Marques Rodrigo S
Journal of Animal Science. 2020 98(8).
Meat Quality Traits of Longissimus dorsi Muscle from Carcasses of Hanwoo Steers at Different Yield Grades
Jung Samooel, Nam Ki Chang, Lee Kyung Haeng, Kim Jong Joo, Jo Cheorun
Korean Journal for Food Science of Animal Resources. 2013 33(3). p.305
Review: Animal model and the current understanding of molecule dynamics of adipogenesis
Campos C.F., Duarte M.S., Guimarães S.E.F., Verardo L.L., Wei S., Du M., Jiang Z., Bergen W.G., Hausman G.J., Fernyhough-Culver M., Albrecht E., Dodson M.V.
Animal. 2016 10(6). p.927
Intermuscular and intramuscular adipose tissues: Bad vs. good adipose tissues
Hausman Gary J, Basu Urmila, Du Min, Fernyhough-Culver Melinda, Dodson Michael V
Adipocyte. 2014 3(4). p.242
Effects on Animal Health and Immune Function
Cooke Reinaldo F.
Veterinary Clinics of North America: Food Animal Practice. 2019 35(2). p.331
mRNA expression of myogenic-adipogenic makers and adipocyte in skeletal muscle of Hanwoo calves at newborn and 6 months of age
Ahn Jun-Sang, Chung Ki-Yong, Jang Sun-Sick, Kim Ui-Hyung, Hwang So-Mi, Jin Shil, Park Bo-Hye, Kang Dong-Hun, Kwon Eung-Gi
Journal of Animal Science and Technology. 2020 62(6). p.893
Effect of muscle type, sire breed, and time of weaning on fatty acid composition of finishing steers1
Sexten A. K., Krehbiel C. R., Dillwith J. W., Madden R. D., McMurphy C. P., Lalman D. L., Mateescu R. G.
Journal of Animal Science. 2012 90(2). p.616
Presenilin enhancer-2 (PSENEN), a component of the γ-secretase complex, is involved in adipocyte differentiation
Lee S.M., Jeong Y.H., Kim H.M., Park H.Y., Yoon D., Kim D.H., Saeki S., Moon S.J., Kang M.J.
Domestic Animal Endocrinology. 2009 37(3). p.170
— Invited Review — Factors affecting beef quality and nutrigenomics of intramuscular adipose tissue deposition
Baik Myunggi, Lee Jaesung, Kim Sang Yeob, Namal Ranaweera Kamburawala Kankanamge Tharindu
Animal Bioscience. 2023 36(2). p.350
A marker-derived gene network reveals the regulatory role of PPARGC1A, HNF4G, and FOXP3 in intramuscular fat deposition of beef cattle1
Ramayo-Caldas Y., Fortes M. R. S., Hudson N. J., Porto-Neto L. R., Bolormaa S., Barendse W., Kelly M., Moore S. S., Goddard M. E., Lehnert S. A., Reverter A.
Journal of Animal Science. 2014 92(7). p.2832
Intramuscular fat and fatty acid composition of longissimus muscle from divergent pure breeds of cattle
Dinh T. T. N., Blanton J. R., Riley D. G., Chase C. C., Coleman S. W., Phillips W. A., Brooks J. C., Miller M. F., Thompson L. D.
Journal of Animal Science. 2010 88(2). p.756
Application of cellular mechanisms to growth and development of food producing animals1,2
Chung K. Y., Johnson B. J.
Journal of Animal Science. 2008 86(suppl_14). p.E226
PPARγ and MyoD are differentially regulated by myostatin in adipose-derived stem cells and muscle satellite cells
Zhang Feng, Deng Bing, Wen Jianghui, Chen Kun, Liu Wu, Ye Shengqiang, Huang Haijun, Jiang Siwen, Xiong Yuanzhu
Biochemical and Biophysical Research Communications. 2015 458(2). p.375
Differentiation of Hanwoo Intramuscular Preadipocytes
Journal of Animal Science and Technology. 2005 47(6). p.913
Fattening of Polish Holstein-Friesian × Limousin Bulls under Two Production Systems and Its Effect on the Fatty Acid Profiles of Different Fat Depots
Sobczuk-Szul Monika, Mochol Magdalena, Nogalski Zenon, Pogorzelska-Przybyłek Paulina, Momot Martyna
Animals. 2021 11(11). p.3078
Hyaluronan: is it a biomarker for adipose development within bovine muscle?
Allingham P. G., Greenwood P. L., Brown T. J., Harper G. S.
Animal Production Science. 2010 50(2). p.88
A conserved haplotype in Wagyu cattle contains RAB4A whose encoded protein regulates glucose trafficking in muscle and fat cells
Hudson N. J., Porto‐Neto L., Naval‐Sanchez M., Lyons R. E., Reverter Antonio
Animal Genetics. 2021 52(3). p.275
Intramuscular fat formation in fetuses and the effect of increased protein intake during pregnancy in Hanwoo cattle
Ahn Jun Sang, Son Gi Hwal, Kwon Eung Gi, Chung Ki Yong, Jang Sun Sik, Kim Ui Hyung, Song Jae Yong, Lee Hyun Jeong, Park Byung Ki
Journal of Animal Science and Technology. 2023 65(4). p.818
Lawrie´s Meat Science (2017)
López-Bote Clemente
Identification of marbling-related candidate genes in M. longissimus dorsi of high- and low marbled Hanwoo (Korean Native Cattle) steers
Lee Seung-Hwan, Cho Yong-Min, Lee Sang-Hong, Kim Bum-Soo, Kim Nam-Kuk, Choy Yeon-Ho, Kim Kyoung-Hoon, Yoon Du-Hak, Im Seok-Ki, Oh Sung-Jong, Park Eung-Woo
BMB Reports . 2008 41(12). p.846
Effect of Backfat Thickness on the Carcass Grade Factors and Carcass Price in Hanwoo Cows and Steers
Lee Jong-Moon, Choe Ju-Hui, Park Hyun-Kyung, Kim Yuen-Ho, Park Beom-Young, Kim Kwan-Tae, Koh Kyung-Chul, Seo Sang-Chul, Hwang Kyu-Seok
Korean Journal for Food Science of Animal Resources. 2011 31(2). p.280
N-6 and n-3 fatty acids in different beef adipose tissues depending on the presence or absence of the gene responsible for double-muscling
Aldai N., Dugan M.E.R., Nájera A.I., Osoro K.
Czech Journal of Animal Science. 2008 53(12). p.515
Feedlot performance of Tanzanian Shorthorn Zebu finished on local feed resources
Mushi D. E.
Tropical Animal Health and Production. 2020 52(6). p.3207
Coordinated gene expression between skeletal muscle and intramuscular adipose tissue in growing beef cattle1
Roberts S. L., Lancaster P. A., DeSilva U., Horn G. W., Krehbiel C. R
Journal of Animal Science. 2015 93(9). p.4302
Meat produced by Japanese Black cattle and Wagyu
Gotoh T., Takahashi H., Nishimura T., Kuchida K., Mannen H.
Animal Frontiers. 2014 4(4). p.46
Food Proteomics (2022)
Gagaoua Mohammed, Zhu Yao
Acyl-CoA:diacylglycerol acyltransferase: Properties, physiological roles, metabolic engineering and intentional control
Chen Guanqun, Harwood John L., Lemieux M. Joanne, Stone Scot J., Weselake Randall J.
Progress in Lipid Research. 2022 88 p.101181
The Effect of Slaughter Season on the Fatty Acid Profile in Four Types of Fat Deposits in Crossbred Beef Bulls
Sobczuk-Szul Monika, Wroński Marek, Wielgosz-Groth Zofia, Mochol Magdalena, Rzemieniewski Arkadiusz, Nogalski Zenon, Pogorzelska-Przybyłek Paulina, Purwin Cezary
Asian-Australasian Journal of Animal Sciences. 2013 26(2). p.275
The Effects of Age at Weaning and Length of Lipid Supplementation on Growth, Metabolites, and Marbling of Young Steers
Tipton Jessie E., Lewis Linda K., Ricks Ralph E., Maresca Sebastian, Lopez Valiente Sebastian, Long Nathan M.
Animals. 2020 10(10). p.1819
Applied Muscle Biology and Meat Science (2009)
Hausman G, Poulos S
Red Meat Science and Production (2019)
Holloway Joseph William, Wu Jianping
Potential of different strategies to increase intramuscular fat deposition in sheep: A meta-analysis study
Santos Torres Rodrigo de Nazaré, Ghedini Caren Paludo, Chardulo Luis Artur Loyola, Baldassini Welder Angelo, Curi Rogério Abdallah, Pereira Guilherme Luis, Schoonmaker Jon Patrick, Almeida Marco Tulio Costa, Costa Ciniro, Neto Otavio Rodrigues Machado
Small Ruminant Research. 2024 234 p.107258
Technical note: Determination of cell-specific gene expression in bovine skeletal muscle tissue using laser microdissection and reverse-transcription quantitative polymerase chain reaction1
Albrecht E., Gotoh T., Ebara F., Wegner J., Maak S.
Journal of Animal Science. 2011 89(12). p.4339
Chloride intracellular channel 5 modulates adipocyte accumulation in skeletal muscle by inhibiting preadipocyte differentiation
Li Feng‐Na, Yin Jing‐Dong, Ni Jian‐Jun, Liu Ling, Zhang Hai‐Yan, Du Min
Journal of Cellular Biochemistry. 2010 110(4). p.1013
Growth- and breed-related changes of marbling characteristics in cattle1
Albrecht E., Teuscher F., Ender K., Wegner J.
Journal of Animal Science. 2006 84(5). p.1067
Fat Deposition and Fat Effects on Meat Quality—A Review
Schumacher Madison, DelCurto-Wyffels Hannah, Thomson Jennifer, Boles Jane
Animals. 2022 12(12). p.1550
Muscle Gene Expression Associated with Increased Marbling in Beef Cattle
Clark D. L., Boler D. D., Kutzler L. W., Jones K. A., McKeith F. K., Killefer J., Carr T. R., Dilger A. C.
Animal Biotechnology. 2011 22(2). p.51
White striping and woody breast myopathies in the modern poultry industry: a review
Kuttappan V.A., Hargis B.M., Owens C.M.
Poultry Science. 2016 95(11). p.2724
Characteristics, development, and evaluation of adipose tissues of beef cattle and mutton sheep
JIANG ZongYou, YU JinYan, TANG GaoJian, SHI YingZi, WANG Bo
SCIENTIA SINICA Vitae. 2023 53(7). p.945
Growth performance, feed efficiency and carcass and meat quality of tropically adapted breed types from different farming systems in South Africa
Strydom P. E., Frylinck L., van der Westhuizen J., Burrow H. M.
Australian Journal of Experimental Agriculture. 2008 48(5). p.599
CASE STUDY:Carcass and meat characteristics and M. longissimus thoracis histology of beef from calf-fed and yearling-fed Angus steers1
Brooks M.A., Choi C.W., Lunt D.K., Miller R.K., Choi C.B., Smith S.B.
The Professional Animal Scientist. 2011 27(4). p.385
Effects of maternal vitamin D3 concentration during pregnancy on adipogenic genes expression and serum biochemical index in offspring piglets
Guo L., Miao Z., Ma H., Melnychuk S.
Journal of Animal and Feed Sciences. 2020 29(2). p.125
Activation of PPARγ2 by PPARγ1 through a functional PPRE in transdifferentiation of myoblasts to adipocytes induced by EPA
Luo Hefeng, Zhou Yuanfei, Hu Xiaoming, Peng Xuewu, Wei Hongkui, Peng Jian, Jiang Siwen
Cell Cycle. 2015 14(12). p.1830
Gene expression identifies metabolic and functional differences between intramuscular and subcutaneous adipocytes in cattle
Hudson Nicholas J., Reverter Antonio, Griffiths William J., Yutuc Eylan, Wang Yuqin, Jeanes Angela, McWilliam Sean, Pethick David W., Greenwood Paul L.
BMC Genomics. 2020 21(1).
Prediction of consumer palatability in beef using visual marbling scores and chemical intramuscular fat percentage
Stewart S.M., Gardner G.E., McGilchrist P., Pethick D.W., Polkinghorne R., Thompson J.M., Tarr G.
Meat Science. 2021 181 p.108322
Cellular signaling pathways regulating the initial stage of adipogenesis and marbling of skeletal muscle
Du Min, Yin Jingdong, Zhu Mei J.
Meat Science. 2010 86(1). p.103
An age-dependent association between a leptin C3469T single nucleotide polymorphism and intramuscular fat content in pigs
Villalba D., Tor M., Vidal O., Bosch L., Reixach J., Amills M., Sànchez A., Estany J.
Livestock Science. 2009 121(2-3). p.335
Characterisation of intramuscular, intermuscular and subcutaneous adipose tissues in yearling bulls of different genetic groups
Aldai N., Nájera A.I., Dugan M.E.R., Celaya R., Osoro K.
Meat Science. 2007 76(4). p.682
Expression of selected genes related to energy mobilisation and insulin resistance in dairy cows
Fiore E., Arfuso F., Colitti M., Gianesella M., Giudice E., Piccione G., Morgante M.
Animal Production Science. 2017 57(6). p.1007
Genetic and Environmental Determinants of Beef Quality—A Review
Sakowski Tomasz, Grodkowski Grzegorz, Gołebiewski Marcin, Slósarz Jan, Kostusiak Piotr, Solarczyk Paweł, Puppel Kamila
Frontiers in Veterinary Science. 2022 9
Myostatin site‐directed mutation and simultaneous PPARγ site‐directed knockin in bovine genome
Ge Luxing, Kang Jian, Dong Xiangchen, Luan Deji, Su Guanghua, Li Guangpeng, Zhang Yong, Quan Fusheng
Journal of Cellular Physiology. 2021 236(4). p.2592
Effect of stocker management program on beef cattle skeletal muscle growth characteristics, satellite cell activity, and paracrine signaling impact on preadipocyte differentiation
Vaughn Mathew A., Lancaster Phillip A., Roden Kelly C., Sharman Evin D., Krehbiel Clinton R., Horn Gerald W., Starkey Jessica D.
Journal of Animal Science and Technology. 2019 61(5). p.260
Computer image analysis of intramuscular adipocytes and marbling in the longissimus muscle of cattle1
Yang X. J., Albrecht E., Ender K., Zhao R. Q., Wegner J.
Journal of Animal Science. 2006 84(12). p.3251
Genes Related to Fat Metabolism in Pigs and Intramuscular Fat Content of Pork: A Focus on Nutrigenetics and Nutrigenomics
Malgwi Isaac Hyeladi, Halas Veronika, Grünvald Petra, Schiavon Stefano, Jócsák Ildikó
Animals. 2022 12(2). p.150
Moisture and fat content, marbling level and color of boneless rib cut from Nellore steers varying in maturity and fatness
Pflanzer Sérgio Bertelli, de Felício Pedro Eduardo
Meat Science. 2011 87(1). p.7
Innovative Food Processing Technologies (2016)
Sikes A.L., Warner R.
Effects of different growing diets on performance, carcass characteristics, insulin sensitivity, and accretion of intramuscular and subcutaneous adipose tissue of feedlot cattle
Vasconcelos J. T., Sawyer J. E., Tedeschi L. O., McCollum F. T., Greene L. W.
Journal of Animal Science. 2009 87(4). p.1540
Muscular Dystrophies (2019)
L. Valenzuela Jose, S. Lloyd Sally, J. Steele Edward, L. Mastaglia Francis, L. Dawkins Roger
The Effect of Linseed on Intramuscular Fat Content and Adipogenesis Related Genes in Skeletal Muscle of Pigs
Luo He‐Feng, Wei Hong‐Kui, Huang Fei‐Ruo, Zhou Zheng, Jiang Si‐Wen, Peng Jian
Lipids. 2009 44(11).
Evidence of marbling as a single connected entity in beef striploins
Bottema Murk J., Kruk Zbigniew A., Gontar Amelia, Pitchford Wayne S., Bottema Cynthia D.K.
Meat Science. 2020 161 p.108004
Longitudinal muscle gene expression patterns associated with differential intramuscular fat in cattle
Hudson N.J., Reverter A., Greenwood P.L., Guo B., Cafe L.M., Dalrymple B.P.
Animal. 2015 9(4). p.650
Tissue Engineering for Clean Meat Production
Ben-Arye Tom, Levenberg Shulamit
Frontiers in Sustainable Food Systems. 2019 3
Genetic Background and Diet Impact Beef Fatty Acid Composition and Stearoyl‐CoA Desaturase mRNA Expression
Costa Ana S. H., Silva Marta P., Alfaia Cristina P. M., Pires Virgínia M. R., Fontes Carlos M. G. A., Bessa Rui J. B., Prates José A. M.
Lipids. 2013 48(4). p.369
Use of a bovine genome array to identify new biological pathways for beef marbling in Hanwoo (Korean Cattle)
Lee Seung-Hwan, Gondro Cedric, van der Werf Julius, Kim Nam-Kuk, Lim Da-jeong, Park Eung-Woo, Oh Sung-Jong, Gibson John P, Thompson John M
BMC Genomics. 2010 11(1).
Proteomic profiling of bovine M. longissimus lumborum from Crossbred Aberdeen Angus and Belgian Blue sired steers varying in genetic merit for carcass weight1
Keady Sarah M., Kenny David A., Ohlendieck Kay, Doyle Sean, Keane M. G., Waters Sinéad M.
Journal of Animal Science. 2013 91(2). p.654
Adipose invasion of muscle in Wagyu cattle: Monitoring by histology and melting temperature
Valenzuela J.L., Lloyd S.S., Mastaglia F.L., Dawkins R.L.
Meat Science. 2020 163 p.108063
Main regulatory factors of marbling level in beef cattle
Nguyen Don V., Nguyen Oanh C., Malau-Aduli Aduli E.O.
Veterinary and Animal Science. 2021 14 p.100219
Determining Relationships between Marbling Scores and Carcass Yield Traits of German Beef Bull Carcasses Using Video-Image Analysis at the 12th and 10th Rib Position of Longissimus Thoracis and EUROP Classification
Schulz Lisa, Sundrum Albert
Applied Sciences. 2020 11(1). p.269
Effects of supplementing calcium salts of polyunsaturated fatty acids to late-gestating beef cows on performance and physiological responses of the offspring1
Marques R. S., Cooke R. F., Rodrigues M. C., Brandão A. P., Schubach K. M., Lippolis K. D., Moriel P., Perry G. A., Lock A., Bohnert D. W.
Journal of Animal Science. 2017 95(12). p.5347

Committee on Publication Ethics


Abstract Export Citation Get Permission