Results 121 to 130 of about 257 (140)
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Photosynthetic performance in Syringodium filiforme: seasonal variation in light-harvesting characteristics

Aquatic Botany, 2000
Abstract Syringodium filiforme does not exhibit physiological compensation as a function of season. This has important implications with respect to the diversity and spatial distribution of seagrass species, with Syringodium-like physiological characteristics, that are exposed to chronic low light conditions common to estuarine environments.
Kelly M Major, Kenneth H Dunton
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Leaf growth in the seagrass Syringodium filiforme Kütz

Aquatic Botany, 1983
Abstract Field measurements made during the summer of 1982 in the Indian River lagoon, Florida, showed that Syringodium filiforme Kutz. displays a consistent pattern of growth. The cylindrical leaves lengthen at initial constant rates from a basal region, slow when approaching maturity, and finally cease growing.
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Leaf production and export of the seagrass Syringodium filiforme Kütz. In Indian river Lagoon, Florida

Aquatic Botany, 1988
Abstract Regrowth and in situ-marking techniques were used to estimate leaf production of Syringodium filiforme Kutz. in Indian River Lagoon during 1981 and 1982. Productivity varied with season from 0.5 (winter) to 4.0 (summer) g dry weight m−2 day−1 in 1981 and averaged 1.8 g dry weight m−2 day−1 during May–August 1982.
Brian Fry, Robert W. Virnstein
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Seasonal changes in the proximate constituents of the seagrasses Thalassia testudinum, Halodule wrightii. and Syringodium filiforme

Aquatic Botany, 1980
Abstract Levels of soluble carbohydrate in the rhizome of Thalassia testudinum Banks ex Konig, Syringodium filiforme Kutzing, and Halodule wrightii (Aschers) Aschers. are highest in the fall and lowest in the spring. This suggests that soluble carbohydrate is a nutrient reserve used to sustain the plants during the period of decreased ...
Clinton J. Dawes, John M. Lawrence
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A Bio-Optical Model for Syringodium filiforme Canopies

2009
Seagrasses are significant ecological and biogeochemical agents in shallow water ecosystems throughout the world. In many regions, seagrass meadows occupy a sufficient fraction of the coastal zone, and generate optical signatures that can be observed from space.
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Production and Nutrient Dynamics of a Syringodium filiforme Kütz. Seagrass Bed in Indian River Lagoon, Florida

Estuaries, 1993
A year-long analysis of the characteristics of the seagrassSyringodium filiforme and the associated dynamics of the nutrient pool in the sediment pore water was done to assess co-variation. Changes in seagrass growth rate and standing stock throughout the year were accompanied by seasonal changes in the nutrient pools. The link between plant production
Short, F. T.   +3 more
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Starch grain morphology of the seagrasses Halodule wrightii, Ruppia maritima, Syringodium filiforme, and Thalassia testudinum

Aquatic Botany, 2012
Abstract Starch grains are a ubiquitous component of plants that have been used in tandem with phytoliths, pollen, and macrofossils to reconstruct past floral diversity. This tool has yet to be fully explored for aquatic plants, specifically seagrasses, which lack phytoliths and are rarely preserved as macrofossils or pollen.
Stephanie Peek, Mark T. Clementz
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18 Volumen XIX, Número 3 PHYTOCHEMICAL PROFILE AND EVALUATION OF PHOTOPROTECTIVE POTENTIAL OF Syringodium filiforme KÜTZING

Biotecnia, 2017
Syringodium filiforme Kützing (Cymodoceaceae) is a marine seagrass abundant in Caribbean Sea, rich in phenolic compounds which have antioxidant properties and can provide new opportunities for treatment and prevention of diseases mediated by ultraviolet radiation like photoaging and skin cancer.
Kethia L. González García   +10 more
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13C/12C ratios and the trophic importance of algae in Florida Syringodium filiforme seagrass meadows

Marine Biology, 1984
Over 380 stable carbon isotope (δ13C) analyses made during 1981–82 showed that Syringodium filiforme Kutz seagrass meadows in the Indian River lagoon of eastern Florida have food webs based on algal rather than seagrass carbon. Seagrasses averaging approximately-8‰ were isotopically distinct from algae epiphytic on seagrass blades (X=-19.3‰) and ...
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Seasonal Variation in Standing Crop of the Seagrass Syringodium filiforme and Associated Macrophytes in the Northern Indian River, Florida

Estuaries, 1981
Seasonal variation in the standing crop of the seagrassSyringodium filiforme and its associated macrophytes was studied in a northern basin of the Indian River, a large mesohaline lagoon in central Florida, near the northern distributional limit ofS. filiforme. The minimum standing crop occurred from February through April and the maximum in September.
Steve Gilbert, Kerry B. Clark
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