Cow efficiency: modeling the biological and economic output of a Michigan beef herd

Author:

Thompson Logan R1ORCID,Beck Matthew R2,Buskirk Daniel D1,Rowntree Jason E1,McKendree Melissa G S3ORCID

Affiliation:

1. Department of Animal Science, Michigan State University, East Lansing, MI

2. Faculty of Agriculture and Life Sciences, Lincoln University, Canterbury, New Zealand

3. Department of Agricultural, Food, and Resource Economics, Michigan State University, East Lansing, MI

Abstract

Abstract In recent decades, beef cattle producers have selected cattle for biological traits (i.e., improved growth) to maximize revenue, leading to an increase in average cow body size. However, matching cow size to the production environment would allow producers to maximize productivity and economic returns per unit of land. This may help meet the goals of sustainable intensification, but environmental complexity and varying cow-calf production systems dictates a regional approach. The objective of this experiment was to examine the biological efficiency and economic returns of a Northern Michigan cow-calf system. We hypothesized that biological efficiency and economic returns would decrease with increasing cow body size. Data were collected from a Red Angus cow herd located at the Lake City AgBio Research Center in Lake City, MI from 2011 to 2018 on cow age, weight, and body condition score at weaning, and subsequent 205 d adjusted calf weaning weight (WW), sex, and yearling weight. Biological efficiency was defined as WW as a percentage of cow body weight (DBW). Enterprise budgeting techniques were used to calculate expected net returns from 2011 to 2018 after classifying cows into 11 BW tiers at 22.67 kg intervals beginning at 430.83 kg. Forward-looking net present value (NPV) was calculated using the same tier system, for a 10-yr production cycle with the baseline being a 200 d grazing season. Weaning weight increased with increasing DBW (P < 0.01), but the percentage of cow body weight weaned was reduced by −38.58 × Ln(DBW) (P < 0.01). This led to cows weaning 26.38 kg/ha more with every 100 kg drop in DBW. Expected net returns from 2011 to 2018 did not differ by DBW tier on a per cow basis but did on a per ha basis with a decrease in $10.27/ha with each increase in DBW tier (P < 0.01). Net present value was maximized in the baseline scenario at 453.51 kg DBW and decreased in value as DBW increased. These results suggest that for a Northern Midwestern cow-calf herd, comparatively lighter cows provide a higher economic value on a land basis.

Publisher

Oxford University Press (OUP)

Subject

General Veterinary,Animal Science and Zoology

Reference54 articles.

1. Maintenance energy requirements and forage intake of purebred vs. crossbred cows;Andersen;Transl. Anim. Sci,2020

2. Size of beef cows: early ideas, new developments;Arango;Genet. Mol. Res,2002

3. Markov chains as a shortcut method to estimate age distributions in herds of beef cattle under different culling strategies;Azzam;J. Anim. Sci,1990

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