On-Farm Network Reports


Important information for interpreting statistics

There are two statistical tests that are used to analyze On-Farm Network data:

  • Paired t-tests
  • Analysis of variance (ANOVA)

Coefficient of Variation (CV)

This is the statistical measure of random variation in a trial.  The lower the value, the less variable the data.

Confidence Level

For our trials, we use a 95% confidence level. In statistics, the confidence level indicates how certain we are of the outcome of our statistical analysis.

P-value

While a confidence level tells us how certain we are of the results we get from statistical analysis, the P-value indicates if the results are statistically significant. The P-value is a probability that is calculated through the statistical analysis process. A P-value less than 0.05 indicates a statistically significant result, but a P-value greater than 0.05 indicates the results are not significant.

Interpreting Significance

So, if our statistical analysis indicates a significant yield difference, what does that actually mean? A significant yield response (where the P-value is < 0.05) means that we are 95% sure the yield difference resulted from the treatment. Alternatively, if our statistical analysis indicates there is no significant yield difference (where the P-value is > 0.05), then we are 95% certain that the treatment had no effect on yield.

Why are statistics important? Why does significance matter?

Why can’t we just look at differences in yield between treated and untreated strips to determine the effect of a treatment?

Variability in yield is expected from strip to strip across an on-farm trial due to the variability that occurs across a field. So, when we get yields from each of our trial strips at the end of the season, the question is whether those yield differences are simply a result of variability in the field, or, if the yield difference is a result of the treatment/management practice investigated in the trial. We can answer that question using statistics. If the results are statistically significant, we can say that the yield difference between treatments or management practices tested in the trial was caused by the treatment or management practice. If the result is not significant, then any yield difference is likely a result of variability within the field and not a result of the treatment or management practice.

Interpreting Results – An Example

In a soybean double inoculant trial, we test the effect of double vs. single inoculant on soybean yield. Let’s say, for example, the average yield difference between double and single inoculated soybeans for one trial was 1.5 bu/ac. This yield difference will be indicated as significant or not significant. If the yield difference is statistically significant, we can say we are 95% certain that the 1.5 bu/ac increase in yield is a result of the double inoculant treatment. But, if the 1.5 bu/ac yield difference is not significant, then the double inoculant had no effect on yield compared to single inoculant and the 1.5 bu/ac yield difference simply resulted from natural variability across the trial area.

MPSG does not endorse the use of products tested in the On-Farm Network. Although trials are conducted at multiple sites under varying conditions, your individual results may vary.  

Contents of these research publications can only be reproduced with the permission of MPSG.

Filter Reports

Filter the reports in the database table below by clicking the desired Crop, Year, Trial Type, and/or Major Region.  Within the database table, click on any column header to sort the table.  To view a single site report, select the Trial ID to open the single site research report in a new tab.

In the database table below, trials with significant yield differences are highlighted green in the yield difference column. On each single site report, significance is indicated by a ‘yes/no’ in the overall yield results table.

A trial that does not meet the trial requirements, eg. field history, is not included in the overall average for yield difference.

Filter by crop

Filter by Year

Filter by term

Filter by Trial type

Filter by Significance

Filter by Major Region

Filter by Locations

This is hidden do not delete

Year Region Municipality Crop Trial Type Treatments Yield +/- Unit Trial Report
2023 Central Lorne Pea Seeding Rate 168 lbs vs 192 lbs vs 222 lbs/ac bu/ac 2023-PSR01
2023 Northwest Dauphin Pea Seeding Rate 160 lbs vs 200 lbs vs 240 lbs/ac bu/ac 2023-PSR02
2023 Central Grey Soybean Seeding Rate 120k vs 150k vs 180k bu/ac 2023-SSR01
2023 Eastern Emerson – Franklin Soybean Seeding Rate 124k vs 156k vs 184k bu/ac 2023-SSR02
2023 Eastern Brokenhead Soybean Seeding Rate 100k vs 130k vs 160k bu/ac 2023-SSR03
2023 Eastern De Salaberry Soybean Seeding Rate 120k vs 148k vs 175k bu/ac 2023-SSR04
2023 Eastern Brokenhead Soybean Seeding Rate 165k vs 220k -0.6 bu/ac 2023-SSR05
2023 Eastern Brokenhead Soybean Seeding Rate 165k vs 220k 1.9 bu/ac 2023-SSR06
2023 Eastern Ritchot Soybean Seeding Rate 133k vs 163k vs 193k bu/ac 2023-SSR07
2023 Eastern Ste Anne Soybean Seeding Rate 120k vs 150k vs 180k bu/ac 2023-SSR08
2023 Central Louise Soybean Seeding Rate 127k vs 145k vs 170k bu/ac 2023-SSR09
2023 Eastern Emerson – Franklin Soybean Seeding Rate 120k vs 150k vs 180k bu/ac 2023-SSR10
2023 Southwest Grassland Soybean Seeding Rate 133k vs 163k vs 193k bu/ac 2023-SSR11
2023 Eastern Lac Du Bonnet Soybean Seeding Rate 223k vs 260k vs 297k bu/ac 2023-SSR12
2023 Northwest Minitonas-Bowsman Soybean Seeding Rate 130k vs 160k vs 190k bu/ac 2023-SSR13
2022 Southwest North Cypress-Langford Pea Seeding Rate 78 vs 88 vs 98 seeds/m² bu/ac 2022-PSR01
2022 Central Grey Pea Seeding Rate 65 vs 89 vs 105 seeds/m² bu/ac 2022-PSR02
2022 Central Lorne Pea Seeding Rate 75 vs 84 vs 105 seeds/m² bu/ac 2022-PSR03
2022 Eastern St. Clements Soybean Seeding Rate 120k vs 150k vs 180k bu/ac 2022-SSR01
2022 Central North Norfolk Soybean Seeding Rate 110k vs 140k vs 170k bu/ac 2022-SSR02
2022 Central Portage la Prairie Soybean Seeding Rate 123k vs 153k vs 183k bu/ac 2022-SSR03
2022 Southwest Wallace-Woodworth Soybean Seeding Rate 155k vs 185k vs 215k bu/ac 2022-SSR04
2022 Eastern Tache Soybean Seeding Rate 116k vs 146k vs 176k bu/ac 2022-SSR05
2022 Central Glenella-Lansdowne Soybean Seeding Rate 145k vs 165k vs 185k bu/ac 2022-SSR06
2022 Northwest Minitonas-Bowsman Soybean Seeding Rate 166k vs 196k vs 226k bu/ac 2022-SSR14
2021 Southwest Wallace-Woodsworth Pea Seeding Rate 95 vs 115 vs 135 seeds/m² bu/ac 2021-PSR01
2021 Central Glenella-Lansdowne Pea Seeding Rate 65 vs 85 vs 105 seeds/m² bu/ac 2021-PSR03
2021 Central Roland Pea Seeding Rate 70 vs 90 vs 110 seeds/m² bu/ac 2021-PSR04
2021 Northwest Dauphin Pea Seeding Rate 70 vs 90 vs 110 seeds/m² bu/ac 2021-PSR07
2021 Eastern De Salaberry Soybean Seeding Rate 130k vs 160k vs 190k bu/ac 2021-SSR01
2021 Central Grey Soybean Seeding Rate 100k vs 130k vs 160k bu/ac 2021-SSR02
2021 Eastern Brokenhead Soybean Seeding Rate 120k vs 150k vs 180k bu/ac 2021-SSR03
2021 Central Grey Soybean Seeding Rate 120k vs 150k vs 180k bu/ac 2021-SSR04
2021 Interlake St. Andrews Soybean Seeding Rate 140k vs 170k vs 200k bu/ac 2021-SSR05
2021 Eastern Richot Soybean Seeding Rate 108k vs 138k vs 168k bu/ac 2021-SSR06
2021 Central Glenella-Lansdowne Soybean Seeding Rate 130k vs 160k vs 190k bu/ac 2021-SSR07
2021 Eastern Ste. Anne Soybean Seeding Rate 115k vs 145k vs 175k bu/ac 2021-SSR08
2021 Central Grey Soybean Seeding Rate 122k vs 146k vs 180k bu/ac 2021-SSR09
2021 Central Westlake-Gladstone Soybean Seeding Rate 120k vs 150k vs 180k bu/ac 2021-SSR10
2021 Central St. Andrews Soybean Seeding Rate 125k vs 155k vs 185k bu/ac 2021-SSR11
2021 Southwest Grassland Soybean Seeding Rate 125k vs 155k vs 185k bu/ac 2021-SSR12
2021 Southwest Grassland Soybean Seeding Rate 130k vs 160k vs 190k bu/ac 2021-SSR13
2021 Eastern Brokenhead Soybean Seeding Rate 168k vs 210k vs 252k bu/ac 2021-SSR14
2020 Northwest Swan Valley West Faba Bean Seeding Rate 228 vs 284 vs 341 lbs/ac bu/ac 2020-FP01
2020 Northwest Dauphin Soybean Seeding Rate 125k vs 155k vs 185k bu/ac 2020-SP01
2020 Eastern Lac du Bonnet Soybean Seeding Rate 190K vs 160K vs 130K bu/ac 2020-SP02
2020 Eastern Brokenhead Soybean Seeding Rate 120k vs 150k vs 180k bu/ac 2020-SP03
2020 Central Grey Soybean Seeding Rate 190K vs 160K vs 130K bu/ac 2020-SP04
2020 Eastern Brokenhead Soybean Seeding Rate 190K vs 160K vs 130K bu/ac 2020-SP05
2020 Central Grey Soybean Seeding Rate 100k vs 130k vs 160k bu/ac 2020-SP06