Muhammad Ahsin, Joseph Vinod Varre, Lamis Ali, Jennifer Cloward, Marina Carbonell Herrera, Camille Mittendorf, Travis Statham, Sree Bhavya Immadi, Ying Xi, Chyanne Crompton, Autumn Smith, Sagara Kumara, Pablo Gregorini, Jacob Allen, Casey Lim, Scott Kronberg, Fred Provenza, Dan Kittredge, Amanda Pinelli, Shawna Lyons, Stephan van Vliet
Consumers and producers are increasingly interested in how finishing practices impact beef nutrient density. This study compared ribeye steaks from grass-fed cattle (n = 237) and grain-fed cattle (n = 71) sourced from 112 North American operations and retailers using targeted metabolomics. Grain-fed beef contained 15-35% higher vitamins B₁, B₅, and B₆ (all p ≤ 0.05), reflecting vitamin-mineral premixes and/or enhanced microbial synthesis under amylolytic rumen conditions. In contrasts, grass-fed beef contained ∼88% higher α-tocopherol and ∼ 53% higher β-carotene (both p ≤ 0.01). Of 195 detected phytonutrients and related metabolites, 43 differed significantly between systems; 35 were higher in grass-fed beef, including hippuric acid (+78%), p-cresol sulfate (+37%), and cinnamoylglycine (+93%; all, p < 0.001), while 8 were higher in grain-fed beef, including 4-hydroxyphenylacetic acid (+275%) and 3-phenyllactic acid (+150%; both p < 0.001). Correlation analyses indicate that botanically diverse and well-rested pastures were associated with higher α-tocopherol and total phytonutrient concentrations in grass-fed beef, while higher phenylpropanoic/phenyllactic compounds associated with grain finishing.