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Titlebook: Seagrasses of Australia; Structure, Ecology a Anthony W. D. Larkum,Gary A. Kendrick,Peter J. Ral Book 2018 Springer International Publishin

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Rhizome, Root/Sediment Interactions, Aerenchyma and Internal Pressure Changes in Seagrassesumerous adaptations to these environmental conditions including porous tissue providing low-resistance internal gas channels (aerenchyma) and carbon concentration mechanisms involving the enzyme carbonic anhydrase. Moreover, seagrasses grow in reduced, anoxic sediments, and aerobic metabolism in roo
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Seagrasses in the South-East Australian Region—Distribution, Metabolism, and Morphology in Response ia. We explore the potential influences of hydrodynamics (e.g. tidal currents, wave energy), estuary entrance dynamics (recruitment) and water quality, in addition to light, as primary stressors on seagrass processes and resilience. Despite primary controls exerted by light over seagrass distributio
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Evolution and Biogeography of Seagrassesouraged as this will likely produce important valuable information on the evolution of this group. In general the biogeography of seagrasses suggests that these organisms evolved successfully in the Tethys Sea of the Late Cretaceous. However, the modern division into two groups, temperate and tropic
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