Development of a commercial system to apply the Meat Standards Australia grading model to optimise the return on eating quality in a beef supply chain
R. Polkinghorne A D , J. Philpott A , A. Gee B , A. Doljanin C and J. Innes CA Marrinya Agricultural Enterprises, 70 Vigilantis Road, Wuk Wuk, Vic. 3875, Australia.
B Cosign, 20 Eleventh Avenue, Sawtell, NSW 2452, Australia.
C Polkinghornes Pty Ltd, 15 Speedwell Street, Somerville, Vic. 3912, Australia.
D Corresponding author. Email: rod.polkinghorne@gmail.com
Australian Journal of Experimental Agriculture 48(11) 1451-1458 https://doi.org/10.1071/EA05181
Submitted: 25 June 2005 Accepted: 11 November 2007 Published: 16 October 2008
Abstract
A major trial was conducted to develop, test and demonstrate the application of Meat Standards Australia (MSA) research findings in a beef retailing environment. A new concept retail store was established whereby a mix of raw beef products and pre-cooked meals were merchandised under an eating quality grade defined by MSA palatability scores. Products were presented fully prepared within cooking method with pricing based on the predicted cooked results. Large price differentials were established between the three grades offered, with 5-star product priced at more than double the 3-star product.
The principle of pricing being directly related to eating quality was extended from the retail store sales to fabrication and the purchase of source cattle from producers. This encouraged considerable innovation to optimise eating quality and returns, demonstrating the potential for truly transparent value-based pricing systems to achieve change.
Novel systems were developed to break down and fabricate the carcass into ‘retail-ready’ product with extensive software development to trace the eating quality, value and location of individual cuts and products. Detailed feedback provided the producer with an accurate measure of value and sufficient data to evaluate possible alternative production strategies.
Results at each level of the supply chain were encouraging with compound annual growth in sales exceeding 12% at retail level and continued innovation through fabrication and on-farm areas combining to improve eating quality and financial outcomes. It was demonstrated that the consumer focus delivered by MSA grades could be applied at a commercial level providing an opportunity to reposition beef as a contemporary consumer product and to implement a value-based system across all sectors.
Acknowledgements
The enthusiastic contribution of all Polkinghornes’ staff is recognised and appreciated as is the editorial assistance of Mary Porter and Professor John Thompson.
Crouse JD,
Cundiff LV,
Koch RM,
Koohmaraie M, Seidman SC
(1989) Comparisons of Bos indicus and Bos taurus inheritance for carcass beef characteristic and meat palatability. Journal of Animal Science 67, 2661–2668.
Dransfield E
(1994) Optimisation of tenderisation, ageing and tenderness. Meat Science 36, 105–121.
| Crossref | GoogleScholarGoogle Scholar |
Ferguson DM,
Jiang ST,
Hearnshaw H,
Rymill SR, Thompson JM
(2000) Effect of electrical stimulation on protease activity and tenderness of M. longissimus from cattle with different proportions of Bos indicus content. Meat Science 55, 265–272.
| Crossref | GoogleScholarGoogle Scholar |
CAS |
Hertzman C,
Olsson U, Tornberg E
(1993) The influence of high temperature, type of muscle and electrical stimulation on the course of rigor, ageing and tenderness of beef muscles. Meat Science 35, 119–141.
| Crossref | GoogleScholarGoogle Scholar |
Hopkins DL, Thompson JM
(2001) The relationship between tenderness, proteolysis, muscle contraction and dissociation of actomyosin. Meat Science 57, 1–12.
| Crossref | GoogleScholarGoogle Scholar |
CAS |
Hostetler RG,
Landmann WA,
Link BA, Fitzhugh HA
(1970) Influence of carcass position during rigor mortis on tenderness of beef muscles: comparison of two treatments. Journal of Animal Science 31, 47–50.
Hwang IH, Thompson JM
(2001) The interaction between pH and temperature decline early postmortem on the calpain system and objective tenderness in electrically stimulated beef longissimus dorsi muscle. Meat Science 58, 167–174.
| Crossref | GoogleScholarGoogle Scholar |
CAS |
Luchak GL,
Miller RK,
Belk KE,
Hale DS,
Michaelsen SA,
Johnson DD,
West RL,
Leak FW,
Cross HR, Savell JW
(1998) Determination of sensory, chemical and cooking characteristics of retail beef cuts differing in intramuscular and external fat. Meat Science 50, 55–72.
| Crossref | GoogleScholarGoogle Scholar |
Marsh BB
(1954) Rigor mortis in beef. Journal of the Science of Food and Agriculture 5, 70–75.
| Crossref | GoogleScholarGoogle Scholar |
CAS |
Martin AH,
Murray AC,
Jeremiah LE, Dutson PJ
(1983) Electrical stimulation and carcass ageing effects on beef carcasses in relation to postmortem glycolytic rates. Journal of Animal Science 57, 1456–1462.
Neely TR,
Lorensen CL,
Millar RK,
Tatum JD,
Wise JW,
Taylor JF,
Buyck MJ,
Reagan JO, Savell JW
(1999) Beef tenderness satisfaction, cooking method and degree of doneness effects on top round steaks. Journal of Animal Science 77, 653–660.
|
CAS |
PubMed |
Park BY,
Hwang IH,
Cho SH,
Yoo YM,
Kim JH,
Lee JM,
Polkinghorne R, Thompson JM
(2008) Effect of carcass suspension and cooking method on the palatability of three beef muscles as assessed by Korean and Australian consumers. Australian Journal of Experimental Agriculture 48, 1396–1404.
Polkinghorne R
(2006) Implementing a palatability assured critical control point (PACCP) approach to satisfy consumer demands. Meat Science 74, 180–187.
| Crossref | GoogleScholarGoogle Scholar |
Polkinghorne R,
Thompson JM,
Watson R,
Gee A, Porter M
(2008) Evolution of the Meat Standards Australia (MSA) beef grading system. Australian Journal of Experimental Agriculture 48, 1351–1359.
Shackelford SD,
Wheeler TL, Koohmaraie M
(1995) Relationship between shear force and trained sensory panel tenderness ratings of 10 major muscles from Bos indicus and Bos taurus cattle. Journal of Animal Science 73, 3333–3340.
|
CAS |
PubMed |
Smith GC,
Arango TC, Carpenter ZL
(1971) Effects of physical and mechanical treatments on the tenderness of the beef longissimus. Journal of Food Science 36, 445–449.
| Crossref | GoogleScholarGoogle Scholar |
Thompson JM,
McIntyre BM,
Tudor GD,
Pethick DW,
Polkinghorne R, Watson R
(2008a) Effects of hormonal growth promotants (HGP) on growth, carcass characteristics, the palatability of different muscles in the beef carcass and their interaction with aging. Australian Journal of Experimental Agriculture 48, 1405–1414.
|
CAS |
Thompson JM,
Polkinghorne R,
Porter M,
Burrow HM,
Hunter RA,
McCrabb GJ, Watson R
(2008b) Effect of repeated implants of oestradiol-17β on beef palatability in Brahman and Brahman cross steers finished to different market end points. Australian Journal of Experimental Agriculture 48, 1434–1441.
|
CAS |
Watson R,
Gee A,
Polkinghorne R, Porter M
(2008a) Consumer assessment of eating quality – development of protocols for Meat Standards Australia (MSA) testing. Australian Journal of Experimental Agriculture 48, 1360–1367.
Watson R,
Polkinghorne R,
Gee A,
Porter M,
Thompson JM,
Ferguson DM,
Pethick DW, McIntyre B
(2008b) Effect of hormonal growth promotants on palatability and carcass traits of various muscles from steer and heifer carcasses from a Bos indicus–Bos taurus composite cross. Australian Journal of Experimental Agriculture 48, 1415–1424.
|
CAS |
Watson R,
Polkinghorne R, Thompson JM
(2008c) Development of the Meat Standards Australia (MSA) prediction model for beef palatability. Australian Journal of Experimental Agriculture 48, 1368–1379.