Results 141 to 150 of about 332 (168)
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Trinexapac‐ethyl Affects Seed Production in Crimson Clover

Agronomy Journal, 2019
Core Ideas Crimson clover canopy height was reduced with trinexapac‐ethyl applications. Seeds m–2 in crimson clover was increased by trinexapac‐ethyl applications. Seed yield responses to trinexapac‐ethyl were dependent on spring weather conditions. Seed weight reductions were inversely proportional to trinexapac‐ethyl rate.
Mohammed M. Morad   +2 more
openaire   +1 more source

Nutrient Allocation of ‘TifEagle’ Bermudagrass as Influenced by Trinexapac-Ethyl

Journal of Plant Nutrition, 2006
ABSTRACT Inhibiting shoot growth of dwarf bermudagrass [Cynodon dactylon(L.) Pers. × C. transvaalensis Burtt-Davey] with a plant-growth retardant, trinexapac-ethyl (TE), may redirect nutrients and photosynthate away from leaf tissue to promote root growth and improve nutrient-use efficiency. Two greenhouse experiments evaluated three rates of TE, 0.025,
Patrick E. McCullough   +4 more
openaire   +1 more source

Implications of Repeated Trinexapac‐Ethyl Applications on Kentucky Bluegrass

Agronomy Journal, 2001
Reducing turfgrass clipping production is often the goal of managers who recognize the need to save time, money, or landfill space. The objective of this study was to investigate the long‐term implications of repeated trinexapac‐ethyl [4‐(cyclopropyl‐α‐hydroxy‐methylene)‐3, 5‐dioxocyclohexanecarboxylic acid ethyl ester] applications at two fertility ...
Darin W. Lickfeldt   +3 more
openaire   +1 more source

Bacterial etiolation of creeping bentgrass as influenced by biostimulants and trinexapac-ethyl

Crop Protection, 2015
Abstract Bacterial etiolation, caused by Acidovorax avenae and Xanthomonas translucens , has become a widespread problem in turfgrass throughout the U.S. Various management tactics are used in managing this disease and differ among turfgrass managers.
Joseph Roberts   +2 more
exaly   +2 more sources

Nitrogen Use in Tifway Bermudagrass, as Affected by Trinexapac‐Ethyl

Crop Science, 2004
Nutrient movement from turfgrass systems into surface and ground water is a public concern. Data indicate that actively growing turf rapidly immobilizes applied N, thus restricting nutrient movement. It is possible, however, that growth suppression with plant growth regulators (PGRs) could reduce N demand and thus N uptake, resulting in greater ...
Matthew J. Fagerness   +3 more
openaire   +1 more source

Shade performance of a range of turfgrass species improved by trinexapac-ethyl

Australian Journal of Experimental Agriculture, 2004
The increased use of enclosed sports stadiums produces shade conditions that seriously affect the quality of turfgrass surfaces, by encouraging undesirable excess vertical succulent growth. Plant growth regulators offer an opportunity to modify a plant’s growth habit, to enable it to be better adapted to a shady environment.
R. S. Tegg, P. A. Lane
openaire   +1 more source

EVALUATION OF TRINEXAPAC-ETHYL FOR GROWTH REGULATION OF FIVE COOL-SEASON TURFGRASS SPECIES

Acta Horticulturae, 2004
Plant growth regulators (PGRs) are becoming important tools for managing turfgrass systems. PGRs offer the potential to reduce vegetative growth and the number of mowings. Two field experiments were carried out in 1999 and 2000 in central Italy (42°57' N - 12°22' E, 164 m a.s.l.) on Kentucky bluegrass (Poa pratensis L.
PANNACCI, Euro   +2 more
openaire   +3 more sources

Growth and quality responses of low-maintenance turfgrasses to trinexapac-ethyl

Crop Protection, 2017
Abstract The positive effects of trinexapac-ethyl (TE) on turfgrass growth and tolerance to various types of stress could promote its use in low-input maintenance turfgrasses to reduce the expense associated with mowing. However, there is a general lack of information about TE effects in low maintenance turfgrasses, and especially when used in ...
Pornaro, C.   +3 more
openaire   +1 more source

Kentucky Bluegrass Growth Responses to Trinexapac‐Ethyl, Traffic, and Nitrogen

Crop Science, 2001
Understanding the whole‐plant response of Kentucky bluegrass (Poa pratensis L.) to the plant growth regulator (PGR) trinexapac‐ethyl (TE) [4‐(cyclopropyl‐α‐hydroxy‐methylene)‐3,5‐dioxo‐cyclohexane‐carboxylic acid ethyl ester] while subjected to traffic and variable N rates would facilitate recommendations regarding its safe and effective use.
E. H. Ervin, A. J. Koski
openaire   +1 more source

NEW TRINEXAPAC-ETHYL MICROEMULSION COMPOSITIONS

2023
BROQUET JEAN-CHARLES DANIEL NICOLAS   +1 more
openaire   +1 more source

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