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1949 The Department of Aquaculture was established to engage in the study of aquaculture, under the Taiwan Fisheries Research Institute.
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2002 The Department was renamed to the Aquaculture Division.
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Development and Application of Molecular Breeding for Advanced Aquaculture.
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Artificial Propagation and Development of Aquaculture Techniques.
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Prevention and Treatment of Fish Disease.
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Economic Analysis of Aquaculture.
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Extension of Aquaculture Techniques.
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Management of Information of Aquaculture.
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¡@ ¡@ Genetic breeding of the small abalone and tilapia
Cloned gene marker of the small abalone and tilapia for developing platform of molecular selection assistants .
Established the founder stock of the small abalone and tilapia for modal animals.
The gene marker was used to differ from body color of tilapia at red (TsR) or black (TsB).
Small abalone ( Haliotis diversicolor supertexta)
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¡@ ¡@ Gene-transfer for fishes
Developed the transgenic technology for aquaculture, Molecular Injection by Electropoated-pulse Needle, MIEN, this designed instructor has been obtained the patient from the Intellectual Property Office Ministry of Economic Affairs, ROC.

Molecular Injection by Electropoated-pulse(MIEN)

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¡@ ¡@ Study on automation of chromosome manipulation process in fishes and shellfishes
In the era of global development of biotechnology, researches of cell biotechnology in fishes and shellfishes such as chromosome manipulation should be emphasized and further investigated. Utilization of FRI-developed automation apparatus for manipulating chromosome together with application of flow-cytometry for ploidy determination surely will facilitate the technology-based and efficiency-emphasized biotechnology related with propagation of more aquatic organisms. It is anticipated to establish technology-driven aquaculture industry with scientific knowledge in future.
FRI-developed automation filtration apparatus for manipulating chromosome in aquatic organisms and its functional controller shown on touch monitor.
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¡@ ¡@ Development of fast diagnostic kits for aquatic pathogens
Edwardsiella tarda fast diagnostic kit (E-kit) .
Fast susceptibility assay kit for Edwardsiella tarda (E2-kit) .
PCR diagnostic kits for common bacterial fish diseases in Taiwan.
Diagnostic biochips for common bacterial fish pathogens in Taiwan.
Figure legend: Up left: E-kit. Down right: Susceptibility results of E2-kit.
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¡@ ¡@ The Application and Operation of HACCP System in Aquaculture
HACCP system has been recognized as one of the most efficient ways to enforce the food safety regulation. The system has been widely applied in the food processing industry. Due to the limitation of production scale and incomplete regulation system, the adopting rate of HACCP in aquaculture is fairly low. Application of HACCP system is necessary to enhance the quality of aquaculture products. This research collets and summarizes the import regulation and quarantine standards of aquatic foods for US, Japan, and Europe. The HACCP system is also designed for the shrimp aquaculture in Taiwan. A further investigation of general public's willingness to pay for the products produced under HACCP system is conducted as well.
Shrimp cultured pound
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Genetic breeding: Development of biotechnology for small abalone and tilapia, focus on gene transfer and molecular selection assistants system.
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Disease prevention and control ¡G Development of fast diagnostic technology, study on the nature antimicrobial agents and immune modulators.
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Utilization of FRI-developed automation apparatus for manipulating chromosome together with application of flow-cytometry for ploidy determination surely will facilitate the technology-based and efficiency-emphasized biotechnology related with propagation of more aquatic organisms. It is anticipated to establish technology-driven aquaculture industry with scientific knowledge in future.
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