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Physiological and biochemical responses of <Emphasis Type="Italic">Prorocentrum minimum</Emphasis> to high light stress
Authors:So Yun Park  Eun Seok Choi  Jinik Hwang  Donggiun Kim  Tae Kwon Ryu  Taek-Kyun Lee
Institution:(1) College of Marine Life Sciences, Ocean University of China, 5 Yushan Road, Qingdao, 266003, People’s Republic of China;(2) College of Environmental Science and Engineering, Ocean University of China, 238 Songling Road, Qingdao, 266100, People’s Republic of China;(3) Lab of Molecular Medicine, School of Medicine and Pharmacy, Ocean University of China, 5 Yushan Road, Qingdao, 266003, People’s Republic of China;(4) College of Environmental Science and Engineering, Zhejiang Gongshang University, Hangzhou, 310012, People’s Republic of China;(5) College of Chemistry and Chemical Engineering, Ocean University of China, 238 Songling Road, Qingdao, 266100, People’s Republic of China;
Abstract:Prorocentrum minimum is a common bloomforming photosynthetic dinoflagellate found along the southern coast of Korea. To investigate the adaptive responses of P. minimum to high light stress, we measured growth rate, and generation of reactive oxidative species (ROS), superoxide dismutase (SOD), catalase (CAT), and malondialdehyde (MDA) in cultures exposed to normal (NL) and high light levels (HL). The results showed that HL (800 μmol m?2 s?1) inhibited growth of P. minimum, with maximal inhibition after 7–9 days. HL also increased the amount of ROS and MDA, suggesting that HL stress leads to oxidative damage and lipid peroxidation in this species. Under HL, we first detected superoxide on day 4 and H2O2 on day 5. We also detected SOD activity on day 5 and CAT activity on day 6. The level of lipid peroxidation, an indicator of cell death, was high on day 8. Addition of diphenyleneiodonium (DPI), an NAD(P)H inhibitor, decreased the levels of superoxide generation and lipid peroxidation. Our results indicate that the production of ROS which results from HL stress in P. minimum also induces antioxidative enzymes that counteract oxidative damage and allow P. minimum to survive.
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