Results 141 to 150 of about 5,349 (161)
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Nomenclature of the Seagrass Halophila baillonis Ascherson
Aquatic Botany, 2008The name Halophila baillonis Asch. was published by J.D. Hooker based on Ascherson's comment on Moseley's Halophila collection from St. Thomas. Ascherson's subsequent species descriptions under either H. baillonii or H. baillonis referred to Hahn's collection from Martinique and the Holm's publication; both of these are now known to belong to H ...
John Kuo, Paul G. Wilson
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Halophila ovalis in the Tropical Atlantic Ocean
Aquatic Botany, 2010A species of seagrass in the genus Halophila was found growing in a shallow lagoon on the west shore of Antigua in the Caribbean West Indies. Genetic analysis showed the plants were Halophila ovalis .I n addition, the samples had no genetic deviation (using nrDNA sequences) from Halophila johnsonii, considered to be an endemic and endangered species in
Short, Frederick T. +2 more
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Halophila decipiens Ostenf. in Southern India
Aquatic Botany, 1988Abstract In India the seagrass Halophila decipiens Ostenf. was earlier recorded only from the coasts near Bombay. Recently it has been reported from the southeastern tip of peninsular India. A moderate population of this species was observed, occurring associated with Caulerpa scalpelliformis R. Br. and Ulva reticulata Forssk.
N. Parthasarathy +2 more
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Ectothiorhodospira halophila: A new species of the genus Ectothiorhodospira
Archiv f�r Mikrobiologie, 1969A halophilic purple sulfur spirillum, previously reported by the authors and called SL-1, has been characterized as a new species of the genus Ectothiorhodospira, E. halophila. The organism can grow in media containing from 9% NaCl to 30% NaCl. It needs no vitamins.
J C, Raymond, W R, Sistrom
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In vitro culture of the seagrass Halophila decipiens
Aquatic Botany, 1998The seagrass Halophila decipiens Ostenfeld was grown axenically in a culture medium consisting of 20% artificial seawater, f/4 nutrients (except that glutamic acid was the nitrogen source), and 1% sucrose (w:v). The culture medium was adjusted to pH 5.0. A root–rhizome layer was created by solidifying a portion of the medium with 0.9% agar (w:v) and 1%
Kimon T. Bird +2 more
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Retention of microplastics in Halophila decipiens seagrass meadows
Marine Environmental ResearchMicroplastic (MP) trapping and storage by seagrasses and sediments highlight their role as potential long-term reservoirs for plastic particles. This study evaluated the presence of MPs in Halophila decipiens meadows and its associated sediments in two localities, Pichilingue and Los Aripes, in the southwest Gulf of California.
Karla Verónica, Pedraza-Venegas +4 more
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Process of Carbonate Precipitation by Deleya halophila
Current Microbiology, 1996Scanning electron microscopy and X-ray dispersive energy microanalysis were used to investigate the formation of carbonate crystals by Deleya halophila. The formation of calcium carbonate crystals (polymorphous aragonite) by D. halophila is a sequential process that commences with a nucleus formed by the aggregation of a few calcified bacterial cells ...
, Rivadeneyra +3 more
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Aquatic Botany, 2009
Abstract The northern geographic limit for Halophila johnsonii and Halophila decipiens has been reported as Sebastian Inlet, within the Indian River Lagoon, Florida. Surveys conducted in August 2007 determined the new northern limit to be 21.5 km north of the previously known limit.
Robert W. Virnstein, Lauren M. Hall
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Abstract The northern geographic limit for Halophila johnsonii and Halophila decipiens has been reported as Sebastian Inlet, within the Indian River Lagoon, Florida. Surveys conducted in August 2007 determined the new northern limit to be 21.5 km north of the previously known limit.
Robert W. Virnstein, Lauren M. Hall
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Endospores of Sporosarcina halophila: characteristics and ultrastructure
Archives of Microbiology, 1985Sporosarcina halophila forms endospores. Electron micrographs revealed ultrastructural similarity to spores of S. ureae. Spore germination indicated by loss of refractility, darkening, swelling and formation of new vegetative cells was followed by phase contrast light microscopy.
Fatma Fahmy, F. Mayer, D. Claus
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