首页> 外文期刊>Journal of plankton research >Seasonal distribution of photosynthetically active phytoplankton using pulse amplitude modulated fluorometry in the large monomictic Lake Biwa, Japan
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Seasonal distribution of photosynthetically active phytoplankton using pulse amplitude modulated fluorometry in the large monomictic Lake Biwa, Japan

机译:利用脉冲振幅调制荧光法在日本大型琵琶湖上进行的光合有效浮游植物的季节性分布

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摘要

The detailed seasonal distribution of photosynthetically active phytoplankton was measured using the pulse amplitude modulated fluorescence technique in the large monomictic Lake Biwa, Japan, throughout the year. At the same time, the biological and physicochemical factors (water temperature, irradiance, nutrients and phytoplankton species) affecting the primary production of phytoplankton were also measured in order to estimate the relationship between the distribution of the active phytoplankton and environmental factors. The potential maximum quantum yield (F-v/F-m) of photosystem II was used as an index of the degree of potential photosynthetic competence of phytoplankton. As a result, the simultaneous measurement of (F-v/F-m) and algal biomass showed clearly the seasonal and spatial distribution patterns of the photosynthetically active phytoplankton community, and the distributions were strongly dependent on the seasonal variation in the thermally stratified structure. In addition, the value of (FvFm) in the euphotic zone was found to be influenced mainly by the irradiance and to be affected indirectly by nutrient concentration and the species composition of the phytoplankton community. Greater understanding of the detailed distribution of photosynthetically active phytoplankton coupled with their biomass will encourage new developments in studies of aquatic ecosystems.
机译:全年在日本大型琵琶湖琵琶湖中,使用脉冲幅度调制荧光技术测量了光合活性浮游植物的详细季节性分布。同时,还测量了影响浮游植物初级生产的生物学和理化因素(水温,辐照度,养分和浮游植物种类),以估算活性浮游植物的分布与环境因素之间的关系。光系统II的潜在最大量子产率(F-v / F-m)被用作浮游植物潜在光合作用程度的指标。结果,(F-v / F-m)和藻类生物量的同时测量清楚地显示了光合有效浮游植物群落的季节和空间分布模式,并且这些分布强烈依赖于热分层结构中的季节变化。此外,发现富营养区的(FvFm)值主要受辐照度影响,并受养分浓度和浮游植物群落物种组成间接影响。对光合作用的浮游植物及其生物量的详细分布的更多了解将鼓励水生生态系统研究的新进展。

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