Warm‐season forage options in Northern Dryland Regions
- Carr, Patrick M. [ Montana State University: Research Centers ]
- Boss, Darrin L. [ Montana State University: Research Centers ]
- Chen, Chengci [ Montana State University: Research Centers ]
- Dafoe, Julia M. [ Montana State University: Research Centers ]
- Eberly, Jed O. [ Montana State University: Research Centers ]
- Fordyce, Simon [ Montana State University: Research Centers ]
- Hydner, Roger M.
- Fryer, Heather K. [ Montana State University: Research Centers ]
- Lachowiec, Jennifer A. [ Montana State University: Plant Sciences & Plant Pathology ]
- Lamb, Peggy F. [ Montana State University: Research Centers ]
- McVay, Kent A. [ Montana State University: Research Centers ]
- Khan, Qasim A. [ Montana State University: Research Centers ]
- Miller, Perry R. [ Montana State University: Land Resources & Environmental Sciences ]
- Miller, Zachariah J. [ Montana State University: Research Centers ]
- Torrion, Jessica A. [ Montana State University: Research Centers ]
Rotating summer fallow with wheat (Triticum spp.) is done in dryland grain farming at upper latitudes to stabilize yields over time and to prevent crop failure. However, summer fallow is costly since weeds must be controlled and crops are not grown. Replacing summer fallow with grain crops can generate low economic returns. Previous research indicated that annual coolâ€season forages can be substituted for summer fallow in dryland cropping systems. Our objective was to determine if annual warmâ€season species were suited for forage production in monocultures and polycultures in the U.S. northern Great Plains. Dry matter (DM) production by 20 warm†and coolâ€season crop monocultures and 4 polycultures was determined across six environments during 2016, and by 25 warm†and coolâ€season crop monocultures and polycultures across four environments from 2016 through 2018. Maize (Zea mays L.) monoculture produced forage DM in amounts equal to, or greater than, those produced by other warm†and coolâ€season crop treatments (P < 0.05). Maize DM production averaged 2.5 to 5.7 Mg ha−1, depending on the study and environment. Sorghum (Sorghum bicolor L.), foxtail millet [Setaria italica (L.) P. Beauv.] and sunflower (Helianthus annuus L.) also produced relatively large amounts of forage DM. Polycultures failed to produce more DM than monocultures consistently (P > 0.40). These results indicate that maize and other warmâ€season crops are adapted for dryland forage production in cool regions at upper latitudes. Additional research is needed to determine the impacts of annual warmâ€season forages on grain yield in a forageâ€wheat crop sequence.