대황(Eisenia bicyclis) 배우체와 아포체의 생장에 미치는 환경 인자의 영향Effects of Environmental Factors on the Growth of Gametophytes and Young Sporophytes of Eisenia bicyclis (Kjellman) Setchell
- Other Titles
- Effects of Environmental Factors on the Growth of Gametophytes and Young Sporophytes of Eisenia bicyclis (Kjellman) Setchell
- Authors
- 이민정; 김남길
- Issue Date
- Dec-2020
- Publisher
- (사)한국해양바이오학회
- Keywords
- Eisenia bicyclis; Growth; Gametophytes; Young Sporophytes
- Citation
- Journal of Marine Bioscience and Biotechnology, v.12, no.2, pp 115 - 122
- Pages
- 8
- Indexed
- KCICANDI
- Journal Title
- Journal of Marine Bioscience and Biotechnology
- Volume
- 12
- Number
- 2
- Start Page
- 115
- End Page
- 122
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/7387
- DOI
- 10.15433/ksmb.2020.12.2.115
- ISSN
- 2383-5400
- Abstract
- Eisenia bicyclis, a perennial macroalga is a primary producer of in the ocean, It has been identified as a key species that plays a vital role in maintaining the ecosystem stability. Also, it is an important target in marine afforestation projects and useful marine organisms. In addition, E. bicyclis is used as a health food for humans. This study investigated the effect of water temperature, light (photon irradiance), and duration of light (photoperiod) on the growth of gametophytes and young sporophytes of E. bicyclis. The germination and growth of the zoospores of E. bicyclis were examined at five temperatures (5℃, 10℃, 15℃, 20℃ and 25℃), four intensities of photon irradiance (10, 20, 40, and 80 μmol m-2s-1), and photoperiods (14:10 and 10:14 light/dark cycles). The zoospores released from mature plant germinated into the gametophytes under all experimental conditions. The gametophytes were able to grow at water temperature 5℃-25℃ and mature at 10℃-20℃. The optimal range of water temperature for the maturation of the gametophyte was 15℃-20℃. At 25℃, E. bicyclis gametophytes grew rapidly but did not mature. The optimal culture conditions for the growth of young sporophytes grew slowly in low temperature and photon irradiances.
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