Results 111 to 120 of about 257 (140)

Restoring blue carbon ecosystems. [PDF]

open access: yesCamb Prism Coast Futur
Friess DA   +5 more
europepmc   +1 more source

Submarine Pollination and Reproductive Morphology in Syringodium filiforme (Cymodoceaceae)

Biotropica, 1990
The pollination biology and reproductive morphology of a dioecious seagrass, Syringodium flliforme Kutz (Cymodoceaceae), was studied in St. Croix, U.S. Virgin Islands where S. filiforme was found to be submarine pollinated. In staminate plants, anthers dehisce concurrently with filament elongation.
Paul Cox, Thomas Elmqvist
exaly   +2 more sources

Monitoring and Modeling of Syringodium filiforme (Manatee Grass) in Southern Indian River Lagoon

Estuaries and Coasts, 2012
Decreased salinity and submarine light associated with hurricanes of 2004–2005 impacted seagrass habitats in the Florida coastal zone. A combination of salinities ≤20 and light attenuation ≥1.5 m−1 resulting from the freshwater discharge in 2005 were among the drivers for a widespread decrease in the coverage and biomass of Syringodium filiforme ...
Peter Doering   +2 more
exaly   +2 more sources

REPRODUCTIVE PHYSIOLOGY IN THE SEAGRASS, SYRINGODIUM FILIFORME, FROM THE GULF OF MEXICO AND THE CARIBBEAN

American Journal of Botany, 1980
Reproductive physiology in Syringodium filiforme Kütz. is controlled primarily by temperature under day lengths ranging from 12 hr to continuous light. Texas plants can be induced to flower at temperatures ranging from 20 to 24 C, but southern Gulf of Mexico and Caribbean plants are most ...
exaly   +2 more sources

Hypersalinity During Regional Drought Drives Mass Mortality of the Seagrass Syringodium filiforme in a Subtropical Lagoon

Estuaries and Coasts, 2017
Seagrasses are sensitive to local environmental conditions such as salinity, the underwater light environment, and nutrient availability. To characterize seagrass coverage and condition, as well as to relate changes in community structure to local environmental and hydrologic conditions, we monitored seagrass communities in the Upper Laguna Madre (ULM),
Sara Wilson, Dunton Kenneth H
exaly   +2 more sources

Seed germination in Halodule wrightii and Syringodium filiforme from Texas and the U.S. Virgin Islands

Aquatic Botany, 1983
Abstract Seed germination under laboratory conditions was nearly continuous in both Halodule wrightii Aschers. and Syringodium filiforme Kutz. Halodule seeds that were sieved from sediments in Texas and St. Croix in 1978 continued to germinate for over 3 years in artificial seawater.
Calvin Mcmillan
exaly   +2 more sources

Chicoric acid from Syringodium filiforme

Food Chemistry, 2010
Abstract Detrital and living leaves of the tropical seagrass Syringodium filiforme Kutz. were screened for their phenolic contents. For the first time, the major polyphenols were identified, as chicoric acid (CA) and caftaric acid (CAF), by means of NMR and LC/MS. They were quantified in methanolic and aqueous crude extracts using HPLC.
Gladys Nuissier   +2 more
openaire   +1 more source

Aspects of Floral Morphology and Development in the Seagrass Syringodium filiforme (Cymodoceaceae)

Botanical Gazette, 1978
Inflorescences in Syringodium filiforme are initially racemose and subsequently extensively cymose, with terminal units referred to as "flowers." The species is dioecious. Each unit is normally enclosed by a pair of bracts which may subtend renewal shoots.
P. B. Tomlinson, U. Posluszny
openaire   +1 more source

Evidence for phosphorus limitation in carbonate sediments of the seagrass Syringodium filiforme

Estuarine, Coastal and Shelf Science, 1985
Abstract The seagrass Syringodium filiforme was examined in an ecological analysis of plant nutrient requirements and nutrient resource availability. Assessment of the sediment geochemistry in a San Salvador Island seagrass bed indicated that phosphorus was not readily accessible to the plants.
Short, Frederick T.   +3 more
openaire   +3 more sources

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