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Response of Antarctic sea-ice algae to an experimental decrease in pH: a preliminary analysis from chlorophyll fluorescence imaging of melting ice

机译:南极海冰藻对pH实验降低的响应:熔化冰叶绿素荧光成像的初步分析

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摘要

Microorganisms confined to annual sea ice in the Southern Ocean are exposed to highly variable oxygen and carbonate chemistry dynamics because of the seasonal increase in biomass and limited exchange with the underlying water column. For sea-ice algae, physiological stress is likely to be exacerbated when the ice melts; however, variation in carbonate speciation has rarely been monitored during this important state-transition. Using pulse amplitude modulated fluorometry (Imaging-PAM, Walz), we documented in situ changes in the maximum quantum yield of photosystem II (Fv/Fm) of sea-ice algae melting out into seawater with initial pH values ranging from 7.66 to 6.39. Although the process of ice-melt elevated seawater pH by 0.2–0.55 units, we observed a decrease in Fv/Fm between 0.02 and 0.06 for each unit drop in pH during real-time fluorescence imaging. These results are considered preliminary but provide context for including carbonate chemistry monitoring in the design of future sea ice state-transition experiments. Imaging-PAM is a reliable technology for determining Fv/Fm, but is of limited use for obtaining additional photosynthetic parameters when imaging melting ice.
机译:由于生物量和有限的交换与底层水柱,南海局限于南海的年度海冰的微生物暴露于高度可变的氧气和碳酸盐化学动态。对于海冰藻类,当冰熔化时,生理压力可能会加剧;然而,在这种重要的状态过渡期间很少监测碳酸盐物质的变化。使用脉冲幅度调制荧光测定法(Imaging-PAM,WALZ),我们以原位的变化,海冰藻类的最大量子产量(FV / FM)的最大量子产量熔化到海水中,初始pH值范围为7.66至6.39。尽管冰熔融的方法升高了海水pH值0.2-0.55单位,但在实时荧光成像期间,每单位在pH下,每单位下降,我们观察到FV / FM的减少0.02和0.06。这些结果被认为是初步但在未来海冰状态转换实验设计中提供包括碳酸盐化学监测的背景。 Imaging-PAM是一种可靠的技术,用于确定FV / FM,但用于在成像熔化冰时获得额外光合参数的限制。

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