Results 151 to 160 of about 1,140 (181)
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Lindra thalassiae . [Descriptions of Fungi and Bacteria].

Descriptions of Fungi and Bacteria, 2010
Abstract A description is provided for Lindra thalassiae . Information on the host plants ( Halimeda sp., Ruppia maritima, Sargassum cinereum, Sargassum sp., Thalassia testudinum and Tydemania expeditionis ...
D. I. Enríquez, D. W. Minter
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Thalassia testudinum productivity: A field comparison of measurement methods

Marine Biology, 1976
A 6-day in situ comparison between the Wetzel inorganic 14C uptake and Zieman leaf-biomass techniques for measuring net primary production rates in the seagrass Thalassia testudinum was performed in the northeastern Gulf of Mexico. Measurement differences between the two methods were insignificant when the 14C uptake technique was corrected for ...
H. F. Bittaker, R. L. Iverson
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Vertical growth of Thalassia testudinum: seasonal and interannual variability

Aquatic Botany, 1994
The vertical growth of shoots of the seagrass Thalassia testudinum Banks ex Konig in four meadows, along a range of exposure to waves, in the Mexican Caribbean was examined to elucidate its magnitude and its relationship to sediment dynamics. Average internodal length varied between 0.17 and 12.75 mm, and was greatest in the meadow which experienced ...
Núria Marbà   +3 more
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Nitrogen fixation (acetylene reduction) in the phyllosphere of Thalassia testudinum

Marine Biology, 1977
N2 fixation (C2H2 reduction) associated with the leaves of the sea grass Thalassia testudinum was investigated at 5 sites in South Florida (Biscayne Bay) and one site in the Bahamas (Bimini Harbor). Significant activities were correlated with the occurrence of a heterocystous blue-green alga (Calothrix sp.) on the leaves.
D. G. Capone, B. F. Taylor
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Thalassia

2021
R.M. Polhill, David Simpson
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Carbonate mud; production by epibiont growth on Thalassia testudinum

Journal of Sedimentary Research, 1970
Abstract Epibiotic growth of coralline red algae and serpulid worms on the marine turtle grass Thalassia testudinum is sufficient to produce carbonate mud at rates comparable to the rates of accumulation of ancient platform carbonates.
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The flowering and fruiting of restored Thalassia beds: A preliminary note

Aquatic Botany, 1979
Abstract The bed of the subtropical—tropical marine seagrass Thalassia testudinum Banks ex Konig in an estuarine area previously denuded by thermal effluents (diverted permanently offstream at the time of restoration) in Biscayne Bay, Florida, was restored in August 1973 by planting thousands of seeds.
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A study of the epifauna on the leaves of Thalassia testudinum KÜnig in Barbados/

1974
This item was digitized as part of a project to share McGill's intellectual legacy with the public. If you are the copyright holder or a relative of the copyright holder who is deceased, you may request withdrawal by emailing escholarship.library@mcgill.ca.
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Photosynthetic activity detected in the seed epidermis of Thalassia testudinum

Aquatic Botany, 2017
Abstract Seagrasses are marine angiosperms that have evolved from terrestrial ancestors. Photosynthetic activity on seed has been studied before in Posidonia genus. T. testudinum and P. oceanica share some evolutionary aspects as they live in more stable environments. As in P. oceanica , T.
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Interaction of Thalassia testudinum Metabolites with Cytochrome P450 Enzymes and Its Effects on Benzo(a)pyrene-Induced Mutagenicity

Marine Drugs, 2020
Jesus Javier Espinosa-Aguirre   +2 more
exaly  

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