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海洋赤潮藻中肋骨条藻(硅藻门)对长期紫外线辐射暴露的响应。

Responses of a marine red tide alga Skeletonema costatum (Bacillariophyceae) to long-term UV radiation exposures.

作者信息

Wu Hongyan, Gao Kunshan, Wu Haiyan

机构信息

Marine Biology Institute, Shantou University, No. 243 Daxue Road, Shantou, Guangdong 515063, China.

出版信息

J Photochem Photobiol B. 2009 Feb 9;94(2):82-6. doi: 10.1016/j.jphotobiol.2008.10.005. Epub 2008 Oct 26.

DOI:10.1016/j.jphotobiol.2008.10.005
PMID:19036601
Abstract

UV radiation (280-400 nm) is known to affect phytoplankton in negative, neutral and positive ways depending on the species or levels of irradiation energy. However, little has been documented on how photosynthetic physiology and growth of red tide alga respond to UVR in a long-term period. We exposed the cells of the marine red tide diatom Skeletonema costatum for 6 days to simulated solar radiations with UV-A (320-400 nm) or UV-A+UV-B (295-400 nm) and examined their changes in photosynthesis and growth. Presence of UV-B continuously reduced the effective photosynthetic quantum yield of PSII, and resulted in complete growth inhibition and death of cells. When UV-B or UV-B+UV-A was screened off, the growth rate decreased initially but regained thereafter. UV-absorbing compounds and carotenoids increased in response to the exposures with UVR. However, mechanisms for photoprotection associated with the increased carotenoids or UV-absorbing compounds were not adequate under the continuous exposure to a constant level of UV-B (0.09 Wm(-2), DNA-weighted). In contrast, under solar radiation screened off UV-B, the photoprotection was first accomplished by an initial increase of carotenoids and a later increase in UV-absorbing compounds. The overall response of this red tide alga to prolonged UV exposures indicates that S. costatum is a UV-B-sensitive species and increased UV-B irradiance would influence the formation of its blooms.

摘要

已知紫外线辐射(280 - 400纳米)根据物种或辐照能量水平对浮游植物产生负面、中性和正面影响。然而,关于赤潮藻类的光合生理和生长如何长期响应紫外线辐射的记录却很少。我们将海洋赤潮硅藻中肋骨条藻的细胞暴露于紫外线A(320 - 400纳米)或紫外线A + 紫外线B(295 - 400纳米)的模拟太阳辐射下6天,并检测其光合作用和生长的变化。紫外线B的存在持续降低了PSII的有效光合量子产率,并导致细胞完全生长抑制和死亡。当屏蔽掉紫外线B或紫外线B + 紫外线A时,生长速率最初下降,但随后恢复。紫外线吸收化合物和类胡萝卜素随着紫外线辐射暴露而增加。然而,在持续暴露于恒定水平的紫外线B(0.09 Wm(-2),DNA加权)下,与类胡萝卜素或紫外线吸收化合物增加相关的光保护机制并不充分。相比之下,在屏蔽掉紫外线B的太阳辐射下,光保护首先通过类胡萝卜素的初始增加和随后紫外线吸收化合物的增加来实现。这种赤潮藻类对长时间紫外线暴露的总体反应表明,中肋骨条藻是一种对紫外线B敏感的物种,紫外线B辐照度的增加会影响其水华的形成。

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