Method for producing tetraploid oysters and interspecific hybridization triploid oysters
A technology of triploid and tetraploid, applied in the field of genetic breeding of aquaculture species, can solve problems such as low sperm motility of tetraploid oysters, difficulty in interspecific fertilization, and no large-scale production of triploid oysters, etc., to achieve excellent Effects of Traits and Commercial Value, Large Maturity
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Examples
Embodiment 1
[0029] Ripening of different triploid oysters:
[0030] Take 100 identified 2-year-old artificially induced triploid Pacific oysters, triploid Fujian oysters and triploid Hong Kong oysters, respectively, and place them in a broodstock culture tank with seawater at 16°C for 1 day. Pacific oysters and Fujian oysters use 32 parts per thousand of sea water, and Hong Kong oysters use 16 parts per thousand of sea water. From the second day, the temperature was increased by 5°C every day, and reached 26°C on the third day, and kept at 26°C for 5 days, and the bait was cast 8 times a day according to the existing conventional method, and 100% of the water was changed by pouring the pond. From the 8th day, the water temperature was lowered to 23°C, and then the bait was fed 8 times a day according to the existing conventional method, and the water was changed by 100%; all reached sexual maturity on the 38th day, and then obtained mature Pacific triploids respectively. Oysters, Fujian ...
Embodiment 2
[0032] Open 96 triploid Pacific oysters and obtain 46 female oysters. After dismantling and taking the eggs and washing them, put them into 46 beakers respectively. Take samples from each beaker and measure the diameter of 10 eggs to get the average value. The eggs in 15 beakers were mixed to obtain a total of 26 million eggs, which were diluted to 10,000 eggs / ml. Open 48 diploid Pacific oysters, obtain 28 male shellfish, dissect the largest 15 to get sperm, filter and mix in equal amounts. From 5 minutes after fertilization, treat the fertilized eggs with CB (0.5mg / L) to inhibit the first polar body, rinse after 15 minutes, and then put them into 520 liters of water to hatch. After hatching, press 10 D-type cloth pools per ml, normal culture. All treatment operations were performed at 25°C with sand-filtered and UV-sterilized seawater with a salinity of 32 ppm.
[0033] At the same time, the remaining eggs with average diameter were mixed, and used as the control of the lar...
Embodiment 3
[0038] Open 94 triploid Fujian oysters to obtain 51 female oysters, dissect the eggs, wash them and put them into 51 beakers respectively, measure the diameter of 10 eggs from each beaker and take the average value, and take the egg with the largest diameter The eggs in the first 15 beakers were mixed to obtain a total of 17 million eggs, which were diluted to 10,000 eggs / ml. 45 diploid Fujian oysters were opened to obtain 22 male shellfish, and the largest 15 male shells were dissected to obtain sperm, which were filtered and mixed in equal amounts. From 5 minutes after fertilization, treat fertilized eggs with CB (0.5mg / L) or 6DMAP (50mg / L) to inhibit the first polar body, rinse after 15 minutes, and then put them into 350 liters of water for incubation. 10 D-type cloth pools were cultured normally. All treatment operations were performed at 25°C with sand-filtered and UV-sterilized seawater with a salinity of 32 ppm.
[0039] After the above-mentioned normal culture, the ...
PUM
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com