Results 21 to 30 of about 591 (98)

Getting the Most out of Bahiagrass Fertilization

open access: yesEDIS, 2008
SL-249, a 6-page fact sheet by C. L. Mackowiak, A. R. Blount, E. A. Hanlon, M. L. Silveira, M. B. Adjei, and R. O. Myer, summarizes analysis practices and recommendations for bahiagrass fertilization for hay, sod or pasture systems.
Cheryl L. Mackowiak   +5 more
doaj   +5 more sources

Impacts of Pasture Conversion to Sugarcane on Water Fluxes and Water Use Efficiency in the Southeastern US

open access: yesGCB Bioenergy, Volume 18, Issue 9, September 2026.
Sugarcane expansion, poised to reshape the Southeastern US bioenergy landscape, has uncertain ecohydrological implications following pasture conversion. Compared with improved and semi‐native pastures, sugarcane showed more conservative water use, stronger stomatal sensitivity to atmospheric water demand, higher evaporation, and greater water‐use ...
Sneha Bandyopadhyay   +10 more
wiley   +1 more source

Impact of glyphosate, imazapic, and metsulfuron on bahiagrass, vaseygrass, and guineagrass control

open access: yesWeed Technology
Bahiagrass, guineagrass, and vaseygrass are dominant weeds in bermudagrass pastures. Chemical control of these weeds is difficult, as some herbicides damage bermudagrass. The objectives of this study were to assess the effect of glyphosate and glyphosate
Courtney L. Darling   +5 more
doaj   +1 more source

Herbage Accumulation, Persistence and Nutritive Value of C4 Grasses Grown Across Temperate Environments in South‐Eastern Australia

open access: yesGrass and Forage Science, Volume 81, Issue 3, July-September 2026.
ABSTRACT Climate modelling has projected increasing temperatures and a shift in rainfall systems in southern Australia, suggesting an increase in the summer–autumn feed gap of pasture systems based on temperate species. Tropical (C4) pasture species may diversify the feed base and help mitigate climate variability in these areas.
Matthew T. Newell   +6 more
wiley   +1 more source

Peanut response following soybean grown full‐season or double‐cropped after wheat in North Carolina

open access: yesCrop, Forage &Turfgrass Management, Volume 12, Issue 1, June 2026.
Abstract Including soybean [Glycine max (L.) Merr.] in the previous cropping cycle can adversely affect peanut (Arachis hypogaea L.) yield by increasing disease incidence and populations of plant‐parasitic nematodes in the soil. The impact of double‐cropping wheat (Triticum aestivum L.) and soybean versus full‐season soybean (referred to as the soybean
David L. Jordan   +11 more
wiley   +1 more source

Managing Bahiagrass in Bermudagrass and Stargrass Pastures

open access: yesEDIS, 2010
Revised! SS-AGR-257, a 4-page illustrated fact sheet by B. A. Sellers and J. A. Ferrell, describes how to prevent encroachment by bahiagrass into bermudagrass and stargrass pastures in Florida, and provides recommendations for chemical control, the ...
Brent A. Sellers, Jason A. Ferrell
doaj   +3 more sources

Allelopathic effects of Paspalum notatum Flüggé aqueous extract on seed germination and seedlings morphology of Tagetes patula L. and Zinnia elegans Jacq. [PDF]

open access: yesJournal of Seed Science
: The reuse of agricultural waste such as plant biomass enables the sustainable production of ornamental plants; however, these materials can contain allelochemical compounds that can affect the growth.
Viviane de Jesus do Carmo de Souza Pessoa   +2 more
doaj   +1 more source

Rainfall timing, forage growth, and insuring forage: Linking producer perceptions to observational data

open access: yesAmerican Journal of Agricultural Economics, Volume 108, Issue 3, Page 747-770, May 2026.
Abstract The timing and amount of rainfall are crucial in forage growth. Producer perceptions of the rainfall distribution are likely to influence their choices related to the Pasture, Rangeland, and Forage Rainfall Index insurance program. Because of the scarcity of forage production data, diversity of forage production systems, and climates ...
Brittney Goodrich   +3 more
wiley   +1 more source

Estimating the botanical composition of bahiagrass–rhizoma peanut pastures using aerial multispectral imagery and deep learning

open access: yesCrop Science, Volume 66, Issue 2, March/April 2026.
Abstract Estimating the botanical composition in mixed pastures is challenging due to resource‐intensive sampling methods overlooking grassland spatial variability. We aimed to (I) classify bahiagrass (Paspalum notatum Flügge) and rhizoma peanut (Arachis glabrata Benth.) in grass–legume pastures using aerial multispectral imagery and machine learning, (
Igor L. Bretas   +8 more
wiley   +1 more source

Irrigation requirements, drought tolerance, and stability of warm‐season legumes intermixed in turfgrass

open access: yesCrop Science, Volume 66, Issue 2, March/April 2026.
Abstract Integrating legumes into turfgrass systems can reduce nitrogen fertilizer needs in urban landscapes through biological nitrogen fixation while enhancing plant biodiversity in urban lawns. However, the persistence and water requirements of these associations have not been evaluated in warm‐season lawns.
P. Agustin Boeri   +6 more
wiley   +1 more source

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