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Measuring and modeling in situ dynamic photosynthesis of various phytoplankton groups

机译:各种浮游植物群的原位动态光合作用的测量和建模

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Lake Balaton is a large (600 km~2), shallow (z_(mean)=3.2 m) lake in Hungary. Its phytoplankton experience rapidly changing light and temperature. The water usually warms up by 2-5℃ between sunrise and sunset and cools during the night. The mean coefficient of light attenuation is 4 m~(-1) due to permanent resuspension. Planktonic algae circulate in the water column and intercept from very dim to near surface irradiance in a couple of minutes. Our aim was to describe dynamic photosynthesis in this variable environment based on online delayed fluorescence measurements. Delayed fluorescence (DF) is a photon emission caused by backflow of electrons through the photo-system II (PSII) when algae are moved from light to darkness. The intensity of photon emission decays with time, typically in 10-100 seconds. DF intensity is a function of both biomass and the status of the photosynthetic apparatus. (Istvanovics et al. un-publ.) Two measurement methods of DF are common (Gerhardt & Bodemer 2000): (ⅰ) registering the kinetics of DF decay after excitation by monochromatic light; (ⅱ) registering initial DF intensity after applying an excitation spectrum between 400-730 nm. DF spectra can be used to distinguish various algal groups since their different pigmentation results in different DF spectra.
机译:巴拉顿湖是匈牙利的大型(600 km〜2)浅湖(z_(mean)= 3.2 m)。它的浮游植物经历着迅速变化的光照和温度。水通常在日出和日落之间变暖2-5℃,并在夜间冷却。由于永久性重悬,光衰减的平均系数为4 m〜(-1)。浮游藻类在水柱中循环,并在几分钟内从非常昏暗的近照度截获。我们的目的是根据在线延迟荧光测量结果描述这种可变环境中的动态光合作用。延迟荧光(DF)是藻类从光到暗移动时,电子通过光系统II(PSII)回流造成的光子发射。光子发射的强度随时间衰减,通常在10-100秒内。 DF强度是生物量和光合作用设备状态的函数。 (Istvanovics et al。unpubl。)DF的两种测量方法很常见(Gerhardt&Bodemer 2000):(ⅰ)记录单色光激发后DF衰减的动力学; (ⅱ)在施加400-730 nm之间的激发光谱后记录初始DF强度。 DF光谱可用于区分各种藻类,因为它们的不同色素沉着导致不同的DF光谱。

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