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These results demonstrate the scale of environmental degradation caused by intensive shrimp farming in the study area, and highlight the need for an entirely new aquaculture model in Sri Lanka.
This result, analogous to the importance of hybrid dysgenesis in the aquaculture model by Hutchings (1991), highlights the importance of both demographics and genetics for the effects of aquaculture escapees.
The potential for analogous performance of both extremely maladapted and well-adapted cultured populations (also found in the model by Fleming 1995) can help explain why the aquaculture model in Hutchings (1991) did not find a strong role for the fitness difference of cultured individuals from the wild population.
The hatchery model includes full intermixing of the captive-reared and wild populations after hatchery release and a dynamical hatchery population derived from this mixed population (i.e., two-way gene flow); in contrast, our aquaculture model here assumes a closed, constant cultured population from which spillover occurs to the dynamical wild population (i.e., one-way gene flow).
Stronger natural selection results in a shallower fitness trough with a minimum at lower maladaptation, which suggests that focus captive selection on traits under strong natural selection in the wild will increase the success of using a nonlocal, highly domesticated broodstock (also suggested by the aquaculture model in Tufto 2001).
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The complex interactions among factors as found in this study, suggest that there should be value in adapting existing pond aquaculture models (e.g. Culberson and Piedrahita 1996) to explore in more detail the dynamic consequences of weather and climate in different culture systems on thermal and DO stratification.
For modeling the dynamics related to aquaculture, stochastic models turned out to be able to compute cost-effective, environmentally- and/or ecologically-sound management strategies of fishery resources under a variety of conditions [7 11].
Regions interested in jobs for young people and encouraging good food, note that aquaculture-centric models can be disruptive of the assumptions of commodity food production through more local, fresh, connected food chains.
This paper is the first attempt to model aquaculture considering harvesting for ecological education.
campbellii ISO7) was used as a model aquaculture pathogen to test the suitability of two porphyrin compounds, the tetra-cationic TMPyP and the tetra-anionic TPPS4, for the treatment of aquaculture water.
In our previous research on the sand biosealing, we used live urease-producing bacteria for the construction of the model aquaculture pond using sealing of sand by microbially induced calcium carbonate precipitation (Stabnikov et al. 2011; Chu et al. 2013).
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