The research results of the "Production Technology of the New Line of Laminaria," undertaken by Wu Chaoyuan and Li Dapeng, research fellows of the Institute of Oceanography, Chinese Academy of Sciences, passed the expert appraisal hosted by the Science and Technology Department of Shandong Province.

The research results established a set of seaweed monoclonal seedling raising technology, which has improved the traditional seedling raising technology, greatly shortened the time of seedling raising, shortened the time for seedling raising from the original 90 days to 45 days, and had fewer diseases and seedling yields. Quality meets production requirements.

This achievement also solved the problem of simultaneous development of different male and female monoclonal lines, established a hybridization technique, and selected two excellent new lines. The iodine content of the new highly iodine-tolerant line "Qingdao No. 1" reached 0.49%, about twice as high as that of the control group; another excellent strain could increase production by 26%. It takes only 2-3 years to develop a new strain using the monoclonal system, but it takes 5-6 years for the traditional method.

Experiments show that the progeny sporozoites of the same monoclonal line have high population genetic purity, low economical traits, and very consistent patterns among individuals, indicating that their genetic basis is relatively homozygous. This is one of the characteristics of the new monoclonal lines. The use of monoclonal technology to comprehensively promote monoclonal new lines can not only maintain the heterosis of the line, but also avoid the "degeneration" of the population caused by separation of the characters.

The expert group unanimously believed that the technical route of the breeding and breeding methods of kelp was advanced and feasible, solved the simultaneous development of different male and female monoclonal lines, established a hybridization technique, and selected two excellent new lines with high genetic purity. The low degree of economic traits separation can not only maintain the heterosis of the strain, but also avoid the “degeneration” of the population caused by the trait separation, and the technology has reached the international level. Experts suggest that kelp breeding technology should be promoted as soon as possible to promote the development of marine aquaculture and application technology in China.

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