Rice Hull Mulch Affects Germination of Bittercress and Creeping Woodsorrel in Container Plant Culture
- 1 USDA-ARS, Application Technology Research Unit, Wooster, USA
- 2 USDA-ARS, Application Technology Research Unit, Toledo, USA
- 3 USDA-ARS, Application Technology Research Unit, Wooster, USA
Abstract
Mulches are commonly used to control weeds in container nursery crops, especially in sites where preemergence herbicides are either not labeled or potentially phytotoxic to the crop. Parboiled rice hulls have been shown to provide effective weed control when applied 1.25 to 2.5 cm deep over the container substrate surface. The objective of this research was to determine if weed seed placement, above or below the mulch layer, affects flexuous bittercress or creeping woodsorrel establishment. Seeds of both species were placed either above or below rice hull mulch layers 0, 0.6, 1.3, or 2.5 cm deep in nursery containers with a 80 pine bark: 20 sphagnum peat moss substrate. Establishment of both weeds decreased with increasing mulch depth. Establishment of both species was generally greater from beneath the mulch compared to when seed were applied above the mulch. Light penetration through varying depths of rice hulls was determined with a spectroradiometer. Photosynthetically active radiation ( PAR ) decreased exponentially with increasing rice hull depth, and was less than 1 μmol·m -2 ·s -1 beneath depths greater than 1 cm. Germination of both species was determined in Petri dishes placed beneath varying densities of shade cloth. Flexuous bittercress germination responded quadratically to decreasing light level, but still germinated (13%) in complete darkness after 3 weeks. Creeping woodsorrel germination was not affected by light level and was high (92%) after 3 weeks. The role of light exclusion by rice hulls as a mechanism for controlling buried weed seed is discussed. Water retention immediately after irrigation, and for 24 hr following irrigation, was determined for a 2.5 cm layer of rice hulls, sphagnum peat moss, and pine bark. Rice hulls retained less water, and dried more quickly than peat moss or pine bark. The volumetric water content of the rice hull layer is less than 0.20 cm·cm -1 and what has been shown necessary for plant growth. Lack of water availability in the rice hull layer is discussed as the primary mechanism of control of weed seed above the mulch layer.
- Moore, B.A., Larson, R.A. and Skroch, W.A. (1989) Herbicide Treatment of Container-Grown “Gloria” Azaleas and “Merritt Supreme” Hydrangeas. Journal of the American Society for Horticultural Science, 114, 73-77.
- Cole, J.C., Maggard, A.O., Will, R.E. and Hennessey, T.C. (2012) Tree-Based Mulches and Their Leachate Suppress Weed Seed Emergence. Journal of Environmental Horticulture, 30, 146-149.
- Penny, G.M. and Neal, J.C. (2003) Light, Temperature, Seed Burial, and Mulch Effects on Mulberry Weed (Fatoua villosa) Seed Germination. Weed Technology, 17, 213-218. http://dx.doi.org/10.1614/0890-037X(2003)017[0213:LTSBAM]2.0.CO;2
- Cochran, D.R., Gilliam, C.H., Eakes, D.J., Wehtje, G.R., Knight, P.R. and Olive, J. (2009) Mulch Depth Affects Weed Germination. Journal of Environmental Horticulture, 27, 85-90.
- Richardson, B., Gilliam, C.H., Fain, G.B. and Wehtje, G. (2008) Nursery Container Weed Control with Pinebark Mini-Nuggets. Journal of Environmental Horticulture, 26, 144-148.
- Wilen, C.A., Schoch, U.K. and Elmore, C.L. (1999) Mulches and Subirrigation Control Weeds in Container Production. Journal of Environmental Horticulture, 17, 174-180.
- Ferguson, J., Rathinasabapathi, B. and Warren, C. (2008) Southern Redcedar and Southern Magnolia Wood Chip Mulches for Weed Suppression in Containerized Woody Ornamentals. HortTechnology, 18, 266-270.
- Altland, J.E. and Krause, C. (2014) Parboiled Rice Hulls in Containers Reduces Liverwort and Flexuous Bittercress Growth. Journal of Environmental Horticulture, 32, 59-63.
- Facelli, J.M. and Pickett, S.T.A. (1991) Plant Litter: Light Interception and Effects on an Old-Field Plant Community. Ecology, 72, 1024-1031. http://dx.doi.org/10.2307/1940602
- Teasedale, J.R. and Roth, C.L. (1993) Light Transmittance, Soil Temperature, and Soil Moisture under Residue of Hairy Vetch and Rye. Agronomy Journal, 85, 673-680. http://dx.doi.org/10.2134/agronj1993.00021962008500030029x
- Taylorson, R.B. and Borthwick, H.A. (1969) Light Filtration by Foliar Canopies: Significance for Light-Controlled Weed Seed Germination. Weed Science, 17, 48-51.
- Teasdale, J.R. and Daughtry, C.S. (1993) Weed Suppression by Live and Desiccated Hairy Vetch (Vicia villosa). Weed Science, 41, 207-212.
- Holt, J.S. (1987) Factors Affecting Germination in Greenhouse-Produced Seeds of Oxalis corniculata, a Perennial Weed. American Journal of Botany, 74, 429-436. http://dx.doi.org/10.2307/2443818