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http://dx.doi.org/10.5657/KFAS.2016.0845

Effects of Temperature and Irradiance on Growth of Ulva prolifera (Chlorophyta)  

Kang, Pil Joon (Department of Marine Biology, Pukyong National University)
Nam, Ki Wan (Department of Marine Biology, Pukyong National University)
Publication Information
Korean Journal of Fisheries and Aquatic Sciences / v.49, no.6, 2016 , pp. 845-848 More about this Journal
Abstract
The effects of temperature and irradiance on the growth of Ulva prolifera O.F. $M{\ddot{u}ller$ (Chlorophyta), which has been used commercially as food in Korea, were examined in laboratory culture to conserve the strain. Experiments were conducted under combined factors of temperatures of 5, 10, 15, 20 and $25^{\circ}C$ and irradiances of 30, 50, 80 and $100{\mu}mol\;m^{-2}s^{-1}$. The maximum growth of the U. prolifera germlings was observed at $20^{\circ}C$ and $80{\mu}mol\;m^{-2}s^{-1}$, and the minimum growth was recorded at $5^{\circ}C$ and $100{\mu}mol\;m^{-2}s^{-1}$. Considering these results, the species appears to survive under wide ranges of temperature and irradiance, although growth is inhibited by high irradiances of over $100{\mu}mol\;m^{-2}s^{-1}$. This appears to be due to the in situ habitat niche of Ulva prolifera, which is the middle to lower intertidal zone. In conclusion, optimal conditions for the long-term conservation of Ulva prolifera can be established under relatively low temperatures ($5^{\circ}C$) and high irradiance ($100{\mu}mol\;m^{-2}s^{-1}$), while the optimal conditions for mass production are $20^{\circ}C$ and $80{\mu}mol\;m^{-2}s^{-1}$.
Keywords
Chlorophyta; Conservation; Irradiance; Growth; Temperature; Ulva prolifera;
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1 Shi W and Wang M. 2009. Green macroalgae bloom in the Yellow Sea during the spring and summer of 2008. J Geophysical Res 114, C12010, http://dx.doi.org/10.1029/2009JC005561.   DOI
2 Taylor R, Fletcher RL and Raven JA. 2001. Preliminary studies on the growth of selected 'green tide' algae in laboratory culture: effects of irradiance, temperature, salinity and nutrients on growth rate. Bot Mar 44, 327-336.
3 Whitehouse LNA and Lapointe BE. 2015. Comparative ecophysiology of bloom-forming macroalgae in the Indian River Lagoon, Florida: Ulva lactuca, Hypnea musciformis, and Gracilaria tikvahiae. J Exp Mar Bio Ecol 471, 208-216. http://dx.doi.org/10.1016/j.jembe.2015.06.012.   DOI
4 Zhuang Y, Guo J, Chen L, Li D, Liu J and Ye N. 2012. Microwave-assisted direct liquefaction of Ulva prolifera for bio-oil production by acid catalysis. Bioresour Technol 16, 113-139. http://dx.doi.org/10.1016/j.biortech.2012.04.036.   DOI
5 Aguilera-Morales, Casas-Valdez M, Carrillo-Dominguez S, Gonsalez-Acosta B and Perez-Gil F. 2005. Chemical composition and microbiological assays of marine algae Enteromorpha sp. as a potential food source. J Food Compost Anal 18, 79-88.   DOI
6 Bricker SB, Longstaff B, Dennison W, Jones A, Boicourt K, Wicks C and Woerner J. 2008. Effects of nutrient enrichment in the nation's estuaries: A decade of change. Harmful Algae 8, 21-32. http://dx.doi.org/10.1016/j.hal.2008.08.028.   DOI
7 Choi DL, Noh JH, Ryu JH, Lee JH, Jang PK, Lee T and Choi DH. 2010. Occurrence of green macroalgae (Ulva prolifera) blooms in the northern east China Sea in summer 2008. Ocean Polar Res 32, 351-359. http://dx.doi.org/10.4217/OPR.2010.32.4.351.   DOI
8 Choi DS, Koo JG, Ha JH and Yoon JT. 2002. Extraction and chemical composition of soluble polysaccharide from green laver, Enteromorpha prolifera. J Kor Fish Soc 35, 519-523. .
9 Hu C, Li D, Chen C, Ge J, Muller-Karger FE, Liu J, Yu F and He M-X. 2010. On the recurrent Ulva prolifera blooms in the Yellow Sea and East China Sea. J Geophys Res Oceans 115, C05017, http://dx.doi.org/10.1029/2009JC005561.   DOI
10 Leliaert F, Zhang X, Ye N, Malta E-j, Engelen AH, Mineur F, Verbruggen H and De Clerk O. 2009. Identity of the Qingdao algal bloom. Phycological Res 57, 147-151.   DOI
11 Lobban CS and Harrison PJ. 1997. Seaweed Ecology and Physiology. Cambridge University Press, New York, U.S.A., 366pp.
12 Mantri VA, Singh RP, Bijo AJ, Kumari P, Reddy CRK and Jha B. 2011. Differential response of varying salinity and temperature on zoospore induction, regeneration and daily growth rate in Ulva fasciata (Chlorophyta, Ulvales). J Appl Phycol 25, 243-250. http://dx.doi.org/10.1007/s10811-010-9544-4.   DOI
13 Provasoli L. 1968. Media and prospects for the cultivation of marine algae. In: Cultures and Collections of Algae. Watanabe A and Hattori A, eds. Proceeding of the US-Japan Conference, Japanese Society for Plant Physiology, Tokyo, Japan, 63-75.
14 Gao K and McKinley KR. 1994. Use of macroalgae for marine biomass production and $CO_2$ remediation: a review. J Appl Phycol 6, 45-60.   DOI