Coastal regions such as the California Current Large Marine Ecosystem are predicted to be highly vulnerable to ocean acidification in the future, and the resident biota face a complex physical environment where hypoxia and low pH co-occur within kelp forests. This project examines the organism-environment interactions of early life stages of cabezon Scorpaenichthys marmoratus , a common benthic marine fish, to environmentally relevant levels of pCO2, oxygen and temperature in California kelp forests.
Photos from the lab
The first stage of this project will deploy sensors to document conditions within kelp forests of the Santa Barbara Channel Region. The second stage will collect cabezon egg masses to rear in the laboratory under varied pCO2, oxygen and temperature based on sensor measurements. Eggs and larva will then be tracked their growth, metabolic rate, aerobic scope, temperature tolerance and survivorship through early life stages.
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Show all. Table of contents 15 chapters Table of contents 15 chapters Bioenergetics: feed intake and energy partitioning Pages Jobling, Malcolm.
Biochemical correlates of growth rate in fish Pages Houlihan, D. Growth, reproduction and death in lampreys and eels Pages Larsen, Lis Olesen et al. Salmonid smolting: a pre-adaptation to the oceanic environment Pages Boeuf, Gilles.
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Role of peptide hormones in fish osmoregulation Pages Takei, Yoshio. Environmental perturbations of oxygen transport in teleost fishes: causes, consequences and compensations Pages Jensen, Frank B.
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Cardiovascular and ventilatory control during hypoxia Pages Fritsche, Regina et al. Acid-base regulation in response to changes of the environment characteristics and capacity Pages Heisler, Norbert. Environmental effects on fish gill structure and function Pages Perry, Steve F. Endocrine responses to environmental pollutants Pages Anne Brown, J.
Branchial mechanisms of acclimation to metals in freshwater fish Pages McDonald, D.
Fish physiology and ecology: the contribution of the Leigh Laboratory to the collision of paradigms
Phenotypic plasticity of fish muscle to temperature change Pages Johnston, Ian A. Recent advances in the ecophysiology of Antarctic notothenioid fishes: metabolic capacity and sensory performance Pages Montgomery, J. Ecophysiology of intertidal fish Pages Bridges, C. Show next xx. Read this book on SpringerLink.
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