examining price differences between fed steers and heifers€¦ · factors influencing carcass...
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Examining Price Differences Between Fed Steers and Heifers
Brogan C. Horton, David P. Anderson, Joe L. Outlaw, Charley C. Martinez
Texas A&M University
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HypothesisFed heifers are selling at a premium to fed steers, due to steer weights being too large.
Steers used to be a premium to heifers.
We examined weights to explain why this price change has occurred to see if lighter weights, smaller animals were rewarded in the market.
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Apr‐92
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Steer‐Heifer Price Difference, 1992‐2019, $/cwt
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500
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Poun
ds
National Average Monthly Steer and Heifer Dressed Weights
Steer Heifer
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Factors Influencing Carcass Composition• ADG: average daily gain; number of pounds the
animal gains each day• Heifers have lower ADG than steers
• External fat thickness on the carcass: subcutaneous fat• Heifers have more subcutaneous fat than steers
• Time on feed vs. maturity >>> quality grade, marbling• Heifers mature quicker than steers• On feed for shorter time• Reach optimal quality grade sooner• Marbling is last fat deposition
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Carcass Composition and Yield Grades
Beef Yield Grade Equation Factors:• 12th rib/external fat thickness• Hot carcass weight• KPH (kidney, pelvic, heart fat)• Ribeye area
More external fat drives yield grade up, resulting in discounts
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Other FactorsDP: dressing percentage; carcass weight as a percentage of the live weight of the animal, or the percent that remains after slaughter
• includes only the lean (meat), fat, and bone; the hide, viscera, feet, and head are not included, as they are removed during slaughter
• 62-65% of the live weight• Lower yields result in lower DP
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NBQA: National Beef Quality Audit1991, 1995, 2000, 2005, 2011, 20161991: External Fat, Seam Fat, Overall Palatability, Tenderness, Overall Cutability1995: Overall Uniformity, Overall Palatability, Marbling, Tenderness, External & Seam Fat 2000: Overall Uniformity, Carcass Weights, Tenderness, Marbling, Reduced Quality Due to Use of Implants 2005: Traceability, Overall Uniformity, Instrument Grading, Market Signals, and Segmentation 2011: Food Safety, Eating Satisfaction, How and Where Cattle Were Raised, Lean Fat and Bone, Weight and Size2016: Food Safety, Eating Satisfaction, Lean Fat and Bone, Weight and Size, How and Where Cattle Were Raised
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NBQA Continued• Sixty-six percent of further processors that took place in
the NBQA in 2016 stated that they would be willing to pay a premium for guaranteed weight and size of carcasses and cuts
• From a consumer standpoint, it was found that consumers are facing an increase in total package price due to larger dimensions of cuts
• Steer and heifer producers ranked Weight and Size as the most important attribute to their sector of the industry
Maples et. al showed evidence that cut sizes are a significant problem in food service, hindering beef demand.
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Model(Steer price – heifer price)t = f(steer price – heifer pricet-n, D2014-2017, ≥1296, steer sltr., heifer sltr., steer wt., heifer wt.)
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Data• USDA monthly average data, Compiled
by LMIC• Steer, heifer prices• TX/OK• Steer, heifer weights• January 2009-January 2019
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Descriptive Statistics
Steer‐Heifer Price
Steer Sltr Heifer Sltr Steer Wt Heifer Wt
Min ‐3.220 1055.1 557.8 1219 1118
Max 1.235 1595.8 903.7 1384 1242
Mean ‐0.117 1351.88 743.453 1289 1166
Std. 0.581 113.58 82.752 37 30
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Analysis• Identified structural break over the 2014-2017
period - Wald test
• Explored steer weight threshold – 1296 lbs• Weight from the beginning of structural break
period
• STATA• For analysis
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F-test 2.10
𝑅 0.19
Intercept D2014-17 >=1296.8 Steer Sltr Heifer Sltr
Beta (0.526) (0.498)* 0.118 (0.000) 0.003*
S.E. 1.347 0.202 0.139 0.001 0.002
t-test (0.390) (2.467) 0.851 (0.056) 1.803
Prob(t) 0.697 0.015 0.397 0.956 0.074
Table #1 OLS Regression Statistics for Steer-Heifer Difference
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Results• Little/no evidence that steer weights
contribute to changing price relationship• Evidence that heifer slaughter (volume) did
contribute to heifer premium• Explain very little of variation in steer-heifer
price relationship• Lagged independent variable, lagged
slaughter rates, and steer weight threshold were statistically insignificant
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Potential Solutions
• Sorting carcasses by ribeye area size would allow for more consistent cut size; differentiate and direct product to Hotel, Restaurant, and Institutional (HRI) trade by ribeye size
• Ribeye size dictates size of:• ribeye steaks, New York strip steaks, T-bone steaks,
and porterhouse steaks, as it is all from the same muscle
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Potential Solutions• Since heifers are generally smaller in size it can be
inferred that they have smaller ribeye sizes, therefore, would fall into the category of smaller cut size to better serve foodservice product specifications
• In a study by Griffin et al., heifers showed a higher percentage yield of strip loins, top sirloin butts, and gooseneck rounds than steers of the same USDA Yield Grade, thought to be caused by increased fat deposition in heifers
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Conclusions• Adapting to consumer, restaurant portions may
happen at processor• Little price signal back to producer• But, heifers do carry premium to steers but not
explained by weight• Profit for making animals larger is more than for
making smaller cuts.
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Want to also examine …• Other markets: NE, KS, IA/MN• Formula, grid, other pricing than cash• Quality grade
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ReferencesBerg, R. T., Jones, S. D. M., Price, M. A., Fukuhara, R., Butterfield, R. M., and Hardin, R. T. 1979. Patterns of carcass fat deposition in heifers, steers and bulls. Can. J. Anim. Sci. 59: 359_366Cahill, V.R.. 1970. Effects of Sex Differences in Beef Carcasses Relative to Cutability and Palatability. The Ohio State University.Garrett, W. N. 1970 . Comparative performance and carcass characteristics of heifers and steers under identical management practices. Tenth Annual California Feeder's Day address. Department of Animal Science , University of California.Griffin, D. B., Savell, J.W., Morgan, J.B., Garrett, R.P., Cross, H.R., 1992. Estimates of Subprimal Yields from Beef Carcasses as Affected by USDA Grades, Subcutaneous Fat Trim Level, and Carcass Sex Class and Type. Journal of Animal Science 70:2411-2430. March 2019.Lusk, J. L. 2013. “Role of Technology in the Global Economic Importance and Viability of Animal Protein Production.” Animal Frontiers 3. (3):20-27.Maples, J.G., J.L. Lusk, and D.S. Peel. “When Bigger Isn’t Better:Steak Size and Consumer Preferences.” Presented Paper. Agricultural and Applied Economics Association annual meeting. 2016.Murphey, C. E., D. D. Johnson, G. C. Smith, H. C. Abraham, H. R. Cross. 1985. Effects of sex-related differences in externalfat deposition on subjective carcass fatness evaluations- steer versus heifer. J. Anim. Sci. 60:686.National Cattlemen’s Beef Association. National Beef Quality Audit 2016 – Steer and Heifer: Navigating Pathways to Success. 2016. Rahnefeld, G.W., Fredeen, H.M., Weiss, G.M., Lawson, J.E., Newman, J.A.. 1983. Sex and Year Effects on Carcass Characteristics of Three-way Cross Beef Cattle Reared at Two Locations. Canadian Journal of Animal Science 63: 285-298. 28 January 2019.Schultz, R.W., Marsh, J.M.. 1985. Steer and Heifer Price Differences in the Live Cattle and Carcass Markets. Western Journal of Agricultural Economics 10: 77-92. 28 January 2019.Sorensen, Duane. 1972. An Economic Analysis of Feeding Steers Versus Heifers. All Graduate Theses and Dissertations. 3066. https://digitalcommons.usu.edu/etd/3066
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Questions?