A Comparison of Drill and Broadcast Planting Methods for Biomass Production of Two Legume Cover Crops
Abstract
:1. Introduction
2. Materials and Methods
Statistical Analysis
3. Results and Discussion
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Brennan, E.B.; Leap, J.E. A comparison of drill and broadcast methods for establishing cover crops on beds. HortScience 2014, 49, 441–447. [Google Scholar] [CrossRef]
- Fisher, K.A.; Momen, B.; Kratochvil, R.J. Is broadcasting seed an effective winter cover crop planting method? Agron. J. 2011, 103, 472–478. [Google Scholar] [CrossRef]
- Van Horn, M.; Brennan, E.B.; Daugovish, O.; Mitchell, J. Cover crop management. In Cover Cropping for Vegetable Production. A Grower’s Handbook; Smith, R.F., Bugg, R.L., Daugovish, O., Gaskell, M., Van Horn, M., Eds.; University of California: Oakland, CA, USA, 2011; pp. 71–78. [Google Scholar]
- Heege, H.J. Seeding methods performance for cereals, rape, and beans. Trans. ASAE (USA) 1993, 36, 653–661. [Google Scholar] [CrossRef]
- Oliveira, M.C.; Butts, L.; Werle, R. Assessment of cover crop management strategies in Nebraska, US. Agriculture 2019, 9, 124. [Google Scholar] [CrossRef] [Green Version]
- USDA Cover Crop Technical Note No. 16. South Dakota Technical Guide Section I–Technical Notes–Agronomy. 2021. Available online: file:///C:/Users/skutty/AppData/Local/Temp/SD_Cover_Crop_Tech_Note_16_July2021.pdf (accessed on 2 December 2021).
- Plastina, A.; Johanns, A.; Gleisner, A.; Qualman, A. 2021 Iowa Farm Custom Rate Survey; File A3-10; Iowa State University Extension and Outreach: Ames, IA, USA, 2021. [Google Scholar]
- Wilson, M.L.; Baker, J.M.; Allan, D.L. Factors affecting successful establishment of aerially seeded winter rye. Agron. J. 2013, 105, 1868–1877. [Google Scholar] [CrossRef]
- Mirsky, S.B.; Ackroyd, V.J.; Cordeau, S.; Curran, W.S.; Hashemi, M.; Reberg-Horton, S.C.; Ryan, M.R.; Spargo, J.T. Hairy vetch biomass across the eastern United States: Effects of latitude, seeding rate and date, and termination timing. Agron. J. 2017, 109, 1510–1519. [Google Scholar] [CrossRef]
- Haramoto, E.R. Species, seeding rate, and planting method influence cover crop services prior to soybean. Agron. J. 2019, 111, 1068–1078. [Google Scholar] [CrossRef]
- Koehler-Cole, K.; Elmore, R.W. Seeding rates and productivity of broadcast interseeded cover crops. Agronomy 2020, 10, 1723. [Google Scholar] [CrossRef]
- Clark, A. Managing Cover Crops Profitably, 3rd ed.; Sustainable Agriculture Research and Education (SARE). Handbook Series Book 9; University of Maryland: College Park, MD, USA, 2012. [Google Scholar]
- National Oceanic & Atmospheric Administration. U.S. Climate Normal Quick Access. 2021. Available online: https://www.ncei.noaa.gov/access/us-climate-normals/ (accessed on 2 December 2021).
- Murrell, E.G.; Schipanski, M.E.; Finney, D.M.; Hunter, M.C.; Burgess, M.; LaChance, J.C.; Kaye, J.P. Achieving diverse cover crop mixtures: Effects of planting date and seeding rate. Agron. J. 2017, 109, 259–271. [Google Scholar] [CrossRef]
- Rajcan, I.; Tollenaar, M. Source:sink ratio and leaf senescence in maize: I. Dry matter accumulation and partitioning during grain filling. Field Crops Res. 1999, 60, 245–253. [Google Scholar] [CrossRef]
- Pordesimo, L.O.; Edens, W.C.; Sokhansanj, S. Distribution of aboveground biomass in corn stover. Biomass Bioenergy 2004, 26, 337–343. [Google Scholar] [CrossRef]
- Vacek, L.A.; Rooney, W.L. Effects of cytoplasm, male and female parents on biomass productivity in sorghum (Sorghum bicolor L. Moench). J. Crop Improv. 2018, 32, 635–647. [Google Scholar] [CrossRef]
- Boyd, N.S.; Brennan, E.B.; Smith, R.F.; Yokota, R. Effect of seeding rate and planting arrangement on rye cover crop and weed growth. Agron. J. 2009, 101, 47–51. [Google Scholar] [CrossRef]
- Smith, S.A.; Popp, M.; Philipp, D. Seedling survival and establishment costs: Crimson and white clover in bermudagrass pastures. Agron. J. 2012, 104, 1517–1522. [Google Scholar] [CrossRef] [Green Version]
- Emerson, M.; Carlson, S.; Gailans, S. Aerial Seeding Versus Drill Seeding Cover Crops: Updated with Corn Yield Observations. Field Crops Res. Practical Farmers of Iowa. 2013. Available online: https://practicalfarmers.org/wp-content/uploads/2018/12/Aerial-seeding-versus-drill-seeding-cover-crops-Updated-with-corn-yield-observations-2013.pdf (accessed on 2 December 2021).
Soil Parameter/Nutrients | Season One | Season Two |
---|---|---|
Soil pH | 6.6 | 6.0 |
Phosphorus (Kg ha−1) | 41 (Medium) | 45 (Medium) |
Potassium (Kg ha−1) | 154 (Medium) | 108 (Medium) |
Calcium (Kg ha−1) | 1293 (Sufficient) | 788 (Medium) |
Magnesium (Kg ha−1) | 346 (Sufficient) | 136 (Sufficient) |
Zinc (Kg ha−1) | 3.6 (Sufficient) | 5.5 (Sufficient) |
Manganese (Kg ha−1) | 34 (Sufficient) | 19 (Sufficient) |
Boron (Kg ha−1) | 0.4 (Sufficient) | 0.5 (Sufficient) |
Copper (Kg ha−1) | 0.56 | 1.01 |
Sodium (Kg ha−1) | 9 | 21.3 |
Nitrate nitrogen (ppm) | 11 | N/A 1 |
Organic matter (%) | 4.1 | N/A |
Cover Crop | Seeding Rate | Planting Method | Biomass 1 (Kg ha−1) | Plant Population 1 (Plants m−2) | |
---|---|---|---|---|---|
2019–2020 | 2020–2021 | 2020–2021 | |||
Crimson clover | Standard | Drilling | 3186 ± 204 A | 2556 ± 81 A | 170 ± 12 AB |
Standard | Broadcasting | 1498 ± 244 B | 1998 ± 273 B | 146 ± 12 B | |
High | Drilling | 3278 ± 621 A | 2549 ± 376 A | 202 ± 12 A | |
High | Broadcasting | 1855 ± 229 B | 2369 ± 319 AB | 166 ± 12 AB | |
Hairy vetch | Standard | Drilling | 1869 ± 431 a | 1914 ± 307 ab | 52 ± 4 bc |
Standard | Broadcasting | 1530 ± 76 a | 1870 ± 322 ab | 46 ± 4 c | |
High | Drilling | 1787 ± 23 a | 2073 ± 218 a | 70 ± 4 a | |
High | Broadcasting | 1714 ± 356 a | 1549 ± 231 b | 63 ± 4 ab | |
Main effects of planting method across seeding rates | |||||
Crimson clover | N/A | Drilling | 3232 ± 173 A | 2560 ± 247 A | 186 ± 9 A |
Broadcasting | 1676 ± 212 B | 2184 ± 243 B | 156 ± 9 B | ||
Hairy vetch | N/A | Drilling | 1829 ± 172 a | 1993 ± 99 a | 61 ± 3 a |
Broadcasting | 1622 ± 172 a | 1709 ± 99 a | 55 ± 3 a |
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St Aime, R.; Noh, E.; Bridges, W.C., Jr.; Narayanan, S. A Comparison of Drill and Broadcast Planting Methods for Biomass Production of Two Legume Cover Crops. Agronomy 2022, 12, 79. https://doi.org/10.3390/agronomy12010079
St Aime R, Noh E, Bridges WC Jr., Narayanan S. A Comparison of Drill and Broadcast Planting Methods for Biomass Production of Two Legume Cover Crops. Agronomy. 2022; 12(1):79. https://doi.org/10.3390/agronomy12010079
Chicago/Turabian StyleSt Aime, Ricardo, Enoch Noh, William C. Bridges, Jr., and Sruthi Narayanan. 2022. "A Comparison of Drill and Broadcast Planting Methods for Biomass Production of Two Legume Cover Crops" Agronomy 12, no. 1: 79. https://doi.org/10.3390/agronomy12010079
APA StyleSt Aime, R., Noh, E., Bridges, W. C., Jr., & Narayanan, S. (2022). A Comparison of Drill and Broadcast Planting Methods for Biomass Production of Two Legume Cover Crops. Agronomy, 12(1), 79. https://doi.org/10.3390/agronomy12010079