| Literature DB >> 32101561 |
Raghav Jain1, Sara M Bronkema2, William Yakah1, Jason E Rowntree2, Chad A Bitler3, Jenifer I Fenton1.
Abstract
There is increased consumer interest in grass-finished beef (GFB) with retail sales reaching $272 million in 2016. GFB contains higher omega-3 fatty acid levels compared to grain-finished beef, but variations in fatty acid (FA), mineral, and antioxidant content by producers and season is poorly documented. Hence, GFB samples from cattle finished in both fall and spring were obtained from four producers representing several US sub-regions. FAs were extracted using microwave-assisted extraction, derivatized to methyl-esters, and quantified using gas chromatography-mass spectrometry. Mineral content was quantified using coupled plasma mass-spectrometry and antioxidants were quantified via UV-absorption. Overall, total omega-3 FA content was greater in beef from cattle finished in the spring (13.4 mg/100g beef) than the fall (10.3; P<0.001). Additionally, α-tocopherol was present in greater amounts in spring-finished beef (259 vs. 223 ug/100g beef, P<0.001) as was the micromineral selenium (18.2 vs. 17.3ug/100g beef, P = 0.008). Despite using the same feed in fall and spring, cattle from producer 4 had higher total omega-3, omega-6, and total polyunsaturated fatty acids in spring compared to fall (P<0.010). These results suggest there are seasonal differences in omega-3 and omega-6 fatty acids, minerals and antioxidants in grass-finished beef independent of finishing diet.Entities:
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Year: 2020 PMID: 32101561 PMCID: PMC7043805 DOI: 10.1371/journal.pone.0229340
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Producer comparison of cattle age and finishing diet1.
| Producer | Total samples | Region | Fall finishing diet | Spring finishing diet | Age at harvest (months) |
|---|---|---|---|---|---|
| 2 | n = 75 | Midwest | Brown midrib (BMR) forage sorghum, oat/pea/triticale silage, apple cider vinegar, cane molasses, soybean hulls | Oat/pea silage, alfalfa, BMR silage, cane molasses, soybean hulls | 23–26 |
| F = 25 | |||||
| S = 50 | |||||
| 4 | n = 106 | Southeast | Summer annuals and warm season perennial pasture with either cool season baleage or cool season annuals and warm season annual baleage | Same as fall | 23 |
| F = 35 | |||||
| S = 71 | |||||
| 5 | n = 81 | Midwest | NA | NA | NA |
| F = 43 | |||||
| S = 38 | |||||
| 8 | n = 250 | Southwest | Seasonal forages | Winter annuals (barley, wheat) and sorghum sudan silage or native pasture and BMR sudan | 24–28 |
| F = 99 | |||||
| S = 151 |
1Finishing diet fed beginning 60 d prior to slaughter as reported by producers. Data not reported is indicated by NA. F = fall, S = spring.
Seasonal variation in total fatty acid levels in mg FA/100g tissue by producer (mean ± SEM).
| Producer | |||||
|---|---|---|---|---|---|
| 2 | 4 | 5 | 8 | P-value | |
| Total FA | 935±60.1b | 1122±54.0a | 835±59.4b | 544±17.2c | |
| Fall (F) | 1250±123a | 823±68.4b | 828±83.7b | 539±27.0c | |
| Spring (S) | 778±54.2b | 1269±66.9a | 842±85.2b | 548±22.3c | |
| F vs S p-value | 0.828 | 0.904 | |||
1One-way ANOVA was used to compare overall fatty acid differences across producers and Tukey’s post-hoc test for multiple comparisons was performed. Means in a row without a common letter differ, P<0.05.
2Welch-approximation t-test was performed to compare seasonal differences in total fatty acids within producers.
Overall, fall and spring mean ± SEM data beef fatty acids (mg FA/100g tissue) of all producer data combined.
| Fatty acid | Carbon # | Overall (n = 512) | Fall (n = 202) | Spring (n = 310) | P-value |
|---|---|---|---|---|---|
| Myristic | 14:0 | 16.2±0.63 | 15.5±0.94 | 16.6±0.85 | 0.735 |
| Palmitic | 16:0 | 216±6.65 | 211±10.7 | 219±8.49 | 0.451 |
| Margaric | 17:0 | 8.43±0.31 | 7.79±0.40 | 8.84±0.43 | 0.109 |
| Stearic | 18:0 | 99.5±2.59 | 96.6±4.17 | 101±3.30 | 0.227 |
| Tricosanoic | 23:0 | 0.32±0.01 | 0.27±0.01 | 0.35±0.01 | |
| Lignoceric | 24:0 | 0.55±0.01 | 0.41±0.01 | 0.60±0.01 | |
| Total SFA | 340±10.0 | 331±16.0 | 346±12.9 | 0.355 | |
| Myristoleic | 14:1n-7 | 4.45±0.18 | 4.36±0.23 | 4.51±0.25 | 0.098 |
| Palmitoleic | 16:1n-7 | 25.1±0.87 | 23.4±1.24 | 26.1±1.19 | 0.175 |
| Oleic | 18:1n-9 | 311±9.79 | 299±15.4 | 319±12.7 | 0.226 |
| Total MUFA | 341±10.8 | 327±16.8 | 350±14.0 | 0.229 | |
| Linoleic | 18:2n-6 | 50.3±1.20 | 47.5±1.53 | 52.2±1.71 | 0.100 |
| DGLA | 20:3n-6 | 3.87±0.08 | 3.38±0.10 | 4.19±0.11 | |
| Arachidonic | 20:4n-6 | 17.8±0.32 | 16.9±0.45 | 18.5±0.43 | |
| Total n-6 | 72.0±1.54 | 67.7±1.98 | 74.8±2.18 | ||
| ALA | 18:3n-3 | 5.16±0.16 | 4.70±0.24 | 5.45±0.21 | |
| EPA | 20:5n-3 | 3.14±0.10 | 2.58±0.13 | 3.49±0.13 | |
| DPA | 22:5n-3 | 3.83±0.08 | 3.01±0.10 | 4.36±0.11 | |
| DHA | 22:6n-3 | 0.32±0.01 | 0.28±0.01 | 0.34±0.01 | |
| Total n-3 | 12.2±0.33 | 10.3±0.45 | 13.4±0.44 | ||
| 9Z, 11E CLA | 18:2n-7 | 1.55±0.06 | 1.28±0.08 | 1.73±0.08 | |
| Total PUFA | 85.8±1.43 | 79.3±1.83 | 90.0±2.01 | ||
| n-6:n-3 | 11.7±0.61 | 13.5±1.05 | 10.5±0.72 | ||
| SFA:PUFA | 3.93±0.09 | 4.17±0.17 | 3.78±0.10 |
1P-value of seasonal term from two-way ANOVA of pooled data with model: FA = season + producer + producer*season. ALA, alpha-linolenic acid; CLA, conjugated linoleic acid; DGLA, dihomo-gamma linolenic acid; DHA, docosahexaenoic acid; DPA, docosapentaenoic acid; EPA, eicosapentaenoic acid; FA, fatty acid; MUFA, monounsaturated FA; n-3, omega-3; n-6, omega-6; n-6:n-3 ratio, total omega-6/total omega-3 ratio; PUFA, polyunsaturated fatty acid; SFA, saturated FA. SFA:PUFA = Total SFA/Total PUFA
Mineral and antioxidant concentration of beef tissue (mean ± SEM).
| Macromineral (mg/100g) | Overall (n = 512) | Fall (n = 202) | Spring (n = 310) | P-value |
|---|---|---|---|---|
| Sodium | 40.8±0.29 | 42.5±0.43 | 39.7±0.38 | |
| Magnesium | 25.8±0.07 | 25.5±0.12 | 26.1±0.07 | |
| Phosphorus | 209±0.49 | 215±0.88 | 205±0.45 | |
| Sulfur | 206±0.56 | 206±0.91 | 205±0.71 | 0.292 |
| Potassium | 423±1.00 | 419±1.85 | 425±1.11 | |
| Iron | 2125±47.7 | 2122±115 | 2127±23.8 | |
| Zinc | 4085±32.7 | 3976±45.5 | 4155±44.7 | |
| Copper | 63.3±0.69 | 64.0±0.97 | 62.9±0.94 | 0.391 |
| Selenium | 17.8±0.26 | 17.3±0.45 | 18.2±0.32 | |
| Molybdenum | 2.76±0.12 | 2.59±0.20 | 3.11±0.12 | 0.269 |
| β-carotene | 31.9±0.45 | 33.6±0.75 | 30.3±0.55 | |
| α-tocopherol | 245±5.73 | 223±10.7 | 259±6.25 |
1Statistical significance of seasonal term from two-way ANOVA of pooled data with model: mineral/antioxidant = season + producer + producer*season.
Polyunsaturated fatty acid (mg FA/100g tissue) differences by producer and season (mean ± SEM).
| Fatty acid | Producer 2 (n = 75) | Producer 4 (n = 106) | Producer 5 (n = 81) | Producer 8 (n = 250) | |
|---|---|---|---|---|---|
| ALA | |||||
| Fall | 6.84±0.59a | 1.46±0.12b* | 2.00±0.30b | 6.50±0.29a | |
| Spring | 5.83±0.26a | 3.26±0.47b | 1.76±0.16c | 7.28±0.27a | |
| EPA | |||||
| Fall | 2.90±0.36a | 0.76±0.07b* | 1.30±0.16b* | 3.60±0.16a* | |
| Spring | 3.00±0.20b | 1.52±0.20d | 1.79±0.14c | 4.87±0.18a | |
| DPA | |||||
| Fall | 3.94±0.24a* | 1.59±0.11b* | 1.99±0.15b* | 3.72±0.13a* | |
| Spring | 4.67±0.20a | 2.79±0.20b | 2.88±0.17b | 5.36±0.14a | |
| DHA | |||||
| Fall | 0.28±0.03a* | 0.19±0.01a | 0.23±0.02a* | 0.30±0.02a* | |
| Spring | 0.35±0.02a | 0.23±0.01b | 0.30±0.02ab | 0.37±0.01a | |
| Total n-3 | |||||
| Fall | 14.0±1.08a | 3.76±0.26b* | 5.30±0.56b* | 13.9±0.54a* | |
| Spring | 13.8±0.59b | 7.47±0.85c | 6.55±0.39c | 17.8±0.54a | |
| Linoleic | |||||
| Fall | 43.4±3.02c | 70.3±3.26a* | 59.2±3.29b | 35.4±1.38c | |
| Spring | 36.6±1.41c | 91.3±3.52a | 64.1±3.47b | 35.9±1.14c | |
| DGLA | |||||
| Fall | 3.38±0.24bc | 4.55±0.24a* | 3.88±0.22ab* | 2.75±0.11c* | |
| Spring | 3.41±0.13c | 6.49±0.23a | 4.64±0.20b | 3.25±0.09c | |
| Arachidonic | |||||
| Fall | 14.2±0.70b | 22.8±1.46a* | 18.8±0.89a | 14.6±0.44b | |
| Spring | 15.0±0.54c | 27.5±0.98a | 18.9±0.89b | 15.3±0.39c | |
| Total n-6 | |||||
| Fall | 61.0±3.76c | 97.6±4.58a* | 81.8±4.11b | 52.7±1.80c | |
| Spring | 55.1±1.84c | 125±4.52a | 87.6±4.20b | 54.5±1.53c | |
| 9Z, 11E CLA | |||||
| Fall | 1.66±0.23a | 0.83±0.13c* | 1.21±0.22bc | 1.37±0.11ab* | |
| Spring | 1.18±0.14b | 1.85±0.19a | 1.26±0.22b | 1.98±0.12a | |
| Total PUFA | |||||
| Fall | 76.6±4.35bc | 102±4.75a* | 88.3±4.07ab | 68.0±1.84c* | |
| Spring | 70.0±2.35c | 135±4.22a | 95.4±4.54b | 74.2±1.56c | |
| n-6:n-3 ratio | |||||
| Fall | 4.78±0.35c | 30.1±2.29a* | 23.4±2.34b | 5.62±0.83c* | |
| Spring | 4.10±0.10c | 27.1±1.91a | 14.9±1.02b | 3.75±0.22d |
1One-way ANOVA with Tukey’s post-hoc analysis was performed to compare of FA data between producers in each season. Mean values in a given row without a common letter differ, P<0.05. Asterisk (*) indicates significantly different in fall compared to spring within producer by Welch t-test, P<0.05. ALA, alpha-linolenic acid; CLA, conjugated linoleic acid; DGLA, dihomo-gamma linolenic acid; DHA, docosahexaenoic acid; DPA, docosapentaenoic acid; EPA, eicosapentaenoic acid; n-6:n-3 ratio, total omega-6/total omega-3 FA ratio; PUFA, polyunsaturated fatty acid.
Macromineral (mg/100g tissue), micromineral (ug/100g tissue) and antioxidant (ug/100g tissue) comparison by producer and season (mean ± SEM).
| Minerals and Antioxidants | Producer 2 (n = 75) | Producer 4 (n = 106) | Producer 5 (n = 81) | Producer 8 (n = 250) | |
|---|---|---|---|---|---|
| Sodium | |||||
| Fall | 46.0±0.80a* | 44.0±0.80ab* | 41.7±0.83b | 41.4±0.69b* | |
| Spring | 36.7±0.63c | 39.9±0.66ab | 43.0±1.08a | 39.8±0.60b | |
| Magnesium | |||||
| Fall | 24.0±0.31b* | 25.4±0.18a* | 25.7±0.28a* | 25.7±0.18a | |
| Spring | 25.9±0.13b | 25.9±0.14b | 26.6±0.23a | 26.1±0.10ab | |
| Phosphorus | |||||
| Fall | 204±1.93b | 207±1.57b* | 219±1.93a* | 217.9±1.15a* | |
| Spring | 202±0.84c | 203±0.80bc | 210±1.51a | 206±0.65b | |
| Sulphur | |||||
| Fall | 207±2.29ab* | 199±1.46b* | 206±1.77ab | 209±1.44a* | |
| Spring | 201±1.46b | 210±1.44a | 211±1.99a | 203±1.02b | |
| Potassium | |||||
| Fall | 395±5.07c* | 401±2.86c* | 418±3.20b | 432±2.33a | |
| Spring | 414±2.27b | 428±2.12a | 417±3.23b | 430±1.57a | |
| Iron | |||||
| Fall | 1994±73.8a | 2118±239a | 2524±498a | 1982±36.4a* | |
| Spring | 2139±55.4a | 2112±53.6a | 2086±72.7a | 2141±33.1a | |
| Zinc | |||||
| Fall | 3831±109a* | 3849±121a* | 4035±108a | 4033±61.7a | |
| Spring | 3553±89.5c | 4631±101a | 4250±116ab | 4109±54.5b | |
| Copper | |||||
| Fall | 60.3±1.23ab | 71.6±3.70a | 68.8±2.15a | 59.2±0.59b | |
| Spring | 61.1±1.08ab | 62.6±1.22ab | 69.2±1.73a | 62.1±1.74b | |
| Selenium | |||||
| Fall | 21.0±1.25a | 12.9±0.56c* | 22.5±1.18a* | 15.6±0.45b | |
| Spring | 23.3±0.40a | 16.1±0.54b | 25.1±0.69a | 15.7±0.34b | |
| α-tocopherol | |||||
| Fall | 142±22.3b | 368±10.4a* | 185±17.5b | 208±16.8b* | |
| Spring | 142±5.87b | 290±11.8a | 171±10.4b | 305±7.98a | |
| β-carotene | |||||
| % detected | 6.7% | 19.8% | 7.4% | 72.4% | |
| Fall | 37.4±1.64a | 26.4±0.54a | 30.3±1.23a | 34.4±1.12a* | |
| Spring | <LOD | 32.3±2.81 | <LOD | 30.1±0.56 |
1One-way ANOVA and Tukey’s post-hoc analysis was performed to compare mineral/antioxidant values between producers in each season. Mean values in a given row without a common letter differ, P<0.05. Asterisk (*) indicates significantly different in fall compared to spring within producer by Welch t-test, P<0.05.
2β-carotene measurements below limit of detection (LOD) were excluded from the analysis. Percent of samples in which β-carotene was detected is provided in the table.