Results 281 to 290 of about 23,901 (315)
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1997
Abstract Seagrasses have a wide distribution throughout the world’s oceans, being absent only from the polar seas, although the genera Phyllospadix and Zostera are present as far north as the Bering Sea and as far south as the Tasman Sea. From the cold subpolar regions to the equator, seagrasses inhabit a variety of shallow-water coastal
Tomas Tomascik +3 more
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Abstract Seagrasses have a wide distribution throughout the world’s oceans, being absent only from the polar seas, although the genera Phyllospadix and Zostera are present as far north as the Bering Sea and as far south as the Tasman Sea. From the cold subpolar regions to the equator, seagrasses inhabit a variety of shallow-water coastal
Tomas Tomascik +3 more
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1999
Introduction Section I: Ecology and Physiology Establishing Light Requirements for the Seagrass Thalassia testudinum: An Example from Tampa Bay, Florida (USA) Somatic, Respiratory, and Photosynthetic responses of the Seagrass Halodule wrightii to Light Reduction in Tampa Bay, Including a Whole Plant Carbon Budget The Effects of Dock Height on Light ...
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Introduction Section I: Ecology and Physiology Establishing Light Requirements for the Seagrass Thalassia testudinum: An Example from Tampa Bay, Florida (USA) Somatic, Respiratory, and Photosynthetic responses of the Seagrass Halodule wrightii to Light Reduction in Tampa Bay, Including a Whole Plant Carbon Budget The Effects of Dock Height on Light ...
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2001
The significance of seagrass decomposition and methods for assessing the quantity and status of decomposing material are outlined in this chapter. Methods presented in this chapter focus on four basic objectives: · To estimate the amount of necromass, especially leaf litter, associated with seagrass beds, and determine its spatio-temporal variability. ·
D. I. Walker, G. Pergent, S. Fazi
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The significance of seagrass decomposition and methods for assessing the quantity and status of decomposing material are outlined in this chapter. Methods presented in this chapter focus on four basic objectives: · To estimate the amount of necromass, especially leaf litter, associated with seagrass beds, and determine its spatio-temporal variability. ·
D. I. Walker, G. Pergent, S. Fazi
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Ecology of Seagrass Seeds and Seagrass Dispersal Processes
2006Seagrasses began colonizing the marine environment 100 million years ago in the Cretaceaous (den Hartog, 1970) and, like their terrestrial, wetland, and freshwater angiosperm counterparts, established a highly effective method of dispersal seeds. While the terrestrial plant literature is replete with studies on all aspects of seed ecology, ranging from
Robert J. Orth +2 more
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This study investigated the environmental drivers of flowering in a common seagrass species (Zostera muelleri) across Australasia. It involved field surveys conducted in seagrass meadows on Australia’s East coast, mesocosm, and climate-controlled experiments, as well as large-scale modeling of seagrass flowering along the latitudinal gradient in ...
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