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301.
302.
Food availability and physiological state of sea urchin larvae (<Emphasis Type="Italic">Strongylocentrotus purpuratus</Emphasis>) 总被引:2,自引:2,他引:0
Food availability is highly variable in the ocean. Many species of marine invertebrates have a larval form that depends upon
exogenous nutrients for growth, yet there are few biochemical and physiological indices for determining changes in the nutritional
status of larvae. In this study, the effects of food availability on biochemical compositions and metabolic processes of larvae
of the sea urchin, Strongylocentrotus purpuratus, were determined. Larvae were cultured under different food concentrations (fed-to-excess and unfed) and a suite of biological
processes assayed, ranging from measurements at the level of the whole organism to that of specific molecules. These data
were normalized to DNA content (an index of cell number) to allow comparisons of physiological rates in larvae of different
sizes. Changes in the following were measured during larval growth: free amino acid pool, protein, lipid classes (cholesterol,
free fatty acids, hydrocarbons, phospholipids, triacylglycerol), enzyme activities (Na+, K+-ATPase and citrate synthase), and respiration rates. In growing larvae, the two key components that showed differential cell-specific
content relative to unfed larvae were glycine in the free amino acid pool and phospholipids. Additionally, several lipid classes
were detectable only in fed larvae (cholesterols, free fatty acids, and hydrocarbons). While triacylglycerols were present
in eggs and utilized during pre-feeding development, they were not re-accumulated at detectable levels in feeding larvae.
Respiration rates, protein content, and enzyme activities were all similar on a cell-specific basis, showing that these variables
did not provide useful indices of differences in physiological state between fed and unfed larvae. In contrast, measurements
of the cell-specific content of glycine and certain lipid classes did provide useful indices of physiological state of larvae.
Application of these indices could potentially allow for determinations of nutritional state of larvae in the ocean. 相似文献
303.
Katrin M. Meyer Wolf M. Mooij Matthijs Vos W.H. Gera Hol Wim H. van der Putten 《Ecological modelling》2009,220(19):2594-2597
Addressing complex ecological research questions often requires complex empirical experiments. However, due to the logistic constraints of empirical studies there is a trade-off between the complexity of experimental designs and sample size. Here, we explore if the simulation of complex ecological experiments including stochasticity-induced variation can aid in alleviating the sample size limitation of empirical studies. One area where sample size limitations constrain empirical approaches is in studies of the above- and belowground controls of trophic structure. Based on a rule- and individual-based simulation model on the effect of above- and belowground herbivores and their enemies on plant biomass, we evaluate the reliability of biomass estimates, the probability of experimental failure in terms of missing values, and the statistical power of biomass comparisons for a range of sample sizes. As expected, we observed superior performance of setups with sample sizes typical of simulations (n = 1000) as compared to empirical experiments (n = 10). At low sample sizes, simulated standard errors were smaller than expected from statistical theory, indicating that stochastic simulation models may be required in those cases where it is not possible to perform pilot studies for determining sample sizes. To avoid experimental failure, a sample size of n = 30 was required. In conclusion, we propose that the standard tool box of any ecologist should comprise a combination of simulation and empirical approaches to benefit from the realism of empirical experiments as well as the statistical power of simulations. 相似文献
304.
We quantified spatial dynamics and substrate impacts of snorkelers and SCUBA divers within four Hawaiian MPAs to determine:
(1) whether coral reefs in these areas are being damaged by recreational activities, and (2) how damage might be mitigated.
Observers secretly followed snorkelers and SCUBA divers, and used handheld Global Positioning System (GPS) units to record
their geographic tracks and substrate contacts. Most activities occurred within relatively small, well-defined areas associated
with access points. Despite heavy use, recreation impact was low at Hawaiian MPAs because most fragile corals occurred below
the maximum depth of the dominant recreational activity (snorkeling). SCUBA diving was only common at one MPA with physically
durable benthic habitats. GPS tracking provided useful insights into how recreational impacts to MPAs could be reduced. General
topography could be used to predict where visitors will go, and designated access points could be used to focus substrate
contact away from fragile habitats. 相似文献
305.
D. L. Meyer 《Marine Biology》1973,22(2):105-129
The feeding behavior, living position, and skeletal morphology of 8 species of reef-dwelling Caribbean comatulid crinoids are intimately related to the regime of water movement prevailing in the microhabitat. These adaptations are related to the dependence of the crinoid suspension-feeding mechanism on externally produced water movements for a continuous food supply. Greater numbers of co-occurring comatulid species (6 to 7) and larger populations have been found off Colombia and Panamá than off Curaçao and Jamaica (4 species). It is suggested that these differences may be related to increased or diversified primary productivity close to the larger land masses. Overal food availability as determined by primary productivity may, thus, be an important factor controlling the regional diversity and abundance of these species. 相似文献
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307.
Chlorothalonil (2,4,5,6-tetrachloroisophthalonitrile) is the second most widely used fungicide in the United States. Due to the widespread use of chlorothalonil, it is important to investigate the effects chlorothalonil may have on estuarine species such as the grass shrimp, Palaemonetes pugio. This study examined the toxicity of chlorothalonil to three life-history stages (embryo, larvae, adult) of the grass shrimp. Also, molting frequency, growth response and metamorphosis from a larval life cycle pulsed exposure assay were examined as sub-lethal indicators of chlorothalonil exposure. Results showed embryos were the least sensitive with a 96-h Median Lethal Concentration (LC50) of 396.0 microg/L (95% Confidence Interval [CI] 331.3-472.4 microg/L). The adult 96-h LC50 was 152.9 microg/L (95% CI 120.3-194.5 microg/L). Larvae were the most sensitive to chlorothalonil exposure with a 96-h LC50 of 49.5 microg/L (95% CI 44.4-55.27 microg/L). In the life cycle pulsed exposure assay, all surviving larvae in the treatments required significantly more molts to reach postlarvae than the control. Other measured parameters showed differences between treatments and control but there was no statistical significance. This research demonstrated that chlorothalonil is highly toxic to grass shrimp and that larval grass shrimp would be the most appropriate life stage to use for chlorothalonil risk assessments since that stage is the most sensitive. 相似文献
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