Does Selection for Seedling Tiller Number in Perennial Biomass Feedstocks Translate to Yield and Quality Improvements in Mature Swards?
- 1 Wheat, Sorghum, and Forage Research Unit, USDA-ARS, Lincoln, NE, USA
- 2 Wheat, Sorghum, and Forage Research Unit, USDA-ARS, Lincoln, NE, USA
- 3 Department of Agronomy and Horticulture, University of Nebraska, Lincoln, NE, USA
- 4 Department of Agronomy and Horticulture, University of Nebraska, Lincoln, NE, USA
Abstract
Breeding for seedling traits in herbaceous perennial biomass feedstocks that translate into increased biomass yield or quality in established swards could accelerate the development of perennial grass cultivars for bioenergy or fo rage. In previously reported research, breeding for single large tillers (ST) or multiple tillers (MT, ≥3) six weeks after planting for two generations in big bluestem ( Andropogon gerardii Vitman) and switchgrass ( Panicum virgatum L.) base populations produced ST and MT populations that differed significantly for seedling and mature plant traits including biomass yield in spaced planted nurseries. Our objective was to evaluate these ST and MT populations in sward trials to determine the effect of these genetic changes on biomass yield and quality when the plants were grown in competitive sward condi tions. Big bluestem monocultures of the base, ST, and MT populations were evaluated at three locations in Nebraska in 2001 and 2002 as randomized complete block experiments with four replicates. Switchgrass monocultures of the base, ST, and MT populations were evaluated in 2003, 2004, and 2005 near Mead, NE as a randomized complete block with six replicates. In both big bluestem and switchgrass, the ST and MT populations did not consistently differ from the base population or each other for biomass yield or forage quality. These results demonstrate the importance of evaluating perennial grasses in sward trials and not relying solely on greenhouse-grown plants or space-planted nurseries to develop selection criteria and make selection decisions.
- Casler, M.D., Lee, D., Mitchell, R., Moore, K., Adler, P., Sulc, M., Johnson, K., Kallenbach, R., Boe, A., Mathison, R., Cassida, K., Min, D., Zhang, Y., Ong, R. and Sato, T.K. (2022) Biomass Quality Responses to Selection for Increased Biomass Yield in Perennial Energy Grasses. BioEnergy Research, 16, 877-885. https://doi.org/10.1007/s12155-022-10513-2
- Mitchell, R.B., Vogel, K.P., Klopfenstein, T.J., Anderson, B.E. and Masters, R.A. (2005) Grazing Evaluation of Big Bluestems Bred for Improved Forage Yield and Digestibility. Crop Science, 45, 2288-2292. https://doi.org/10.2135/cropsci2004.0716
- Vogel, K.P., Mitchell, R.B., Klopfenstein, T.J. and Anderson, B.E. (2006) Registration of ‘Bonanza’ Big Bluestem. Crop Science, 46, 2313-2314. https://doi.org/10.2135/cropsci2006.02.0068
- Vogel, K.P., Mitchell, R.B., Klopfenstein, T.J. and Anderson, B.E. (2006) Registration of ‘Goldmine’ Big Bluestem. Crop Science, 46, 2314-2315. https://doi.org/10.2135/cropsci2006.02.0070
- Sebolai, B. (1989) Evaluation of Three Cycles of Stratified Mass Selection for High Seedling Shoot Weight in Three Warm-Season Grasses. Master’s Thesis, University of Nebraska-Lincoln, Lincoln.
- Smart, A.J., Moser, L.E. and Vogel, K.P. (2003) Establishment and Seedling Growth of Big Bluestem and Switchgrass Populations Divergently Selected for Seedling Tiller Number. Crop Science, 43, 1434-1440. https://doi.org/10.2135/cropsci2003.1434
- Smart, A.J., Vogel, K.P., Moser, L.E. and Stroup, W.W. (2003) Divergent Selection for Seedling Tiller Number in Big Bluestem and Switchgrass. Crop Science, 43, 1427-1433. https://doi.org/10.2135/cropsci2003.1427
- Smart, A.J., Moser, L.E. and Vogel, K.P. (2004) Morphological Characteristics of Big Bluestem and Switchgrass Plants Divergently Selected for Seedling Tiller Number. Crop Science, 44, 607-613. https://doi.org/10.2135/cropsci2004.6070
- High Plains Regional Climate Center (2003) Automated Weather Data Network. University of Nebraska, Lincoln.
- Vogel, K.P. and Masters, R.A. (2001) Frequency Grid—A Simple Tool for Measuring Grassland Establishment. Journal of Range Management, 54, 653-655. https://doi.org/10.2307/4003666
- Moore, K.J., Moser, L.E., Vogel, K.P., Waller, S.S., Johnson, B.E. and Pedersen, J.F. (1991) Describing and Quantifying Growth Stages of Perennial Forage Grasses. Agronomy Journal, 83, 1073-1077. https://doi.org/10.2134/agronj1991.00021962008300060027x