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Comparison of the Effects of Short-Term UVB Radiation Exposure on Phytoplankton Photosynthesis in the Temperate Changjiang and Subtropical Zhujiang Estuaries of China

机译:短期UVB辐射暴露对中国温带长江口和亚热带珠江口浮游植物光合作用的影响

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摘要

We examined the effect of solar ultraviolet radiation B (UVB, 280-315 nm) on photosynthesis of natural phytoplankton assemblages in the temperate Changjiang River Estuary (CRE) in the East China Sea (ECS), and the subtropical Zhujiang River Estuary (ZRE) in the South China Sea (SCS) from August 2002 to April 2003. The shortterm effect of UVB was assessed by exposing samples in quartz tubes/bottles to solar radiation under three treatments: (1) natural sunlight (NS) with UVB (NS-UVB); (2) photosynthetically active radiation (PAR, NS cut off UVB); and (3) NS with additional artificial UVB (NS + A-UVB). Solar UVB apparently inhibited phytoplankton photosynthesis rates. In the temperate CRE-ECS, solar UVB reduced surface phytoplankton photosynthesis by about 28% in August and February, while in the subtropical ZRE-SCS the inhibition was only 22% in September and October. In the CRE-ECS, phytoplankton in the stratified water column displayed stronger UVB inhibition when deeper water samples were exposed to surface UVB. Phytoplankton in the mixed water column did not show strong UVB inhibition, while light shift exposure of deeper phytoplankton in the same water column to surface light produced similar results, indicating that mixing moderates UVB effects. In the ZRE-SCS, surface phytoplankton showed greater photoinhibition in January (sunny). However, in April (cloudy), phytoplankton showed little UVB inhibition. Incubation for a short time without UVB showed a large increase in Chl a at two stations in the ZRE-SCS, but a large decrease at the other station in the presence of UVB. In contrast, in the CRE-ECS, a similar incubation experiment without UVB showed a decrease in Chl a, and small UVB inhibition of Chl a at two stations. Nutrient conditions might have played a role in the difference of UVB inhibition between the two regions as the ZRESCS had relatively high concentrations of all nutrients while PO4 was only 0.21 占at one of the CRE-ECS stations. The results suggest that phytoplankton in temperate waters would be more responsive to variation of UVB than ones in subtropical waters.
机译:我们研究了太阳紫外线B(UVB,280-315 nm)对东海温带长江口(CRE)和亚热带珠江口(ZRE)中天然浮游植物组合的光合作用的影响。于2002年8月至2003年4月在南中国海(SCS)进行。UVB的短期效果是通过以下三种处理方法将石英管/瓶中的样品暴露于太阳辐射下进行评估的:(1)天然紫外线(NS)和UVB(NS- UVB); (2)光合有效辐射(PAR,NS截止UVB); (3)具有额外人工UVB的NS(NS + A-UVB)。太阳紫外线B明显抑制了浮游植物的光合作用速率。在温带CRE-ECS中,太阳UVB在8月和2月降低了表面浮游植物的光合作用约28%,而在亚热带ZRE-SCS中,9月和10月的抑制作用仅为22%。在CRE-ECS中,当更深的水样品暴露于表面UVB时,分层水柱中的浮游生物显示出较强的UVB抑制作用。混合水柱中的浮游植物未显示出强烈的UVB抑制作用,而同一水柱中较深的浮游植物对表面光的光偏移暴露产生了相似的结果,表明混合可减轻UVB的影响。在ZRE-SCS中,1月的表面浮游植物表现出更大的光抑制作用(晴天)。但是,在四月(多云),浮游植物几乎没有UVB抑制作用。在不使用UVB的情况下进行短时间孵育会显示ZRE-SCS中两个站点的Chla显着增加,但是在存在UVB的另一个站点中,Chla显着下降。相反,在CRE-ECS中,类似的无UVB的温育实验显示Chla的减少,并且在两个站位对Chla的UVB抑制较小。营养条件可能在两个区域之间对UVB抑制的差异中发挥了作用,因为ZRESCS的所有营养素浓度相对较高,而CRE-ECS站点之一的PO4仅为0.21占。结果表明,温带水域的浮游植物比亚热带水域的浮游生物对紫外线的变化更敏感。

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