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Seasonal and vertical variations in phytoplankton photosynthetic parameters and primary production in Suruga Bay, Japan

机译:日本河舍努岛光合参数和初级生产的季节性和垂直变化

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Seasonal and vertical variations in photosynthetic-irradiance (P-E) parameters and primary production were examined in offshore Suruga Bay, where both the subtropical warm Kuroshio Water and eutrophic coastal water were influential. The maximum light-utilization coefficient, alpha*, did not show significant variation between the surface and subsurface layers in both the warm and cold periods. Vertical differences in the maximum photosynthetic rate, P-max*, and the light-saturation parameter, E-k, were small even during the warm period. Seasonal variations in the P-E parameters were not significantly related to dissolved inorganic nitrogen (DIN) at the surface layer. These results suggest that low-nutrient and high-light stresses were not serious at the surface layer, even in the stratified season, because of the continuous inflow of high-nutrient river water. Seasonal variations in Pmax* and alpha* were suggested to be regulated by both the E-k-dependent (photo-acclimation of phytoplankton) and Ek-independent (response to nutrient and growth conditions) mechanisms from the correlation analyses. The subsurface chlorophyll maximum (SCM) formation was less obvious, and a major part of the primary production occurred in the upper half of the euphotic zone. The water-column primary production, Sigma PP (total), tended to be overestimated by ignoring vertical variations in the P-E parameters and chlorophyll a, especially during the warm period. These features of primary production appeared to be similar to those reported in coastal waters rather than in subtropical waters, playing an essential role in the fishing ground formation in the bay.
机译:在离岸苏里尤湾检查了光合辐照度(P-E)参数和初级生产的季节性和垂直变化,其中亚热带温暖的Kuroshio水和富营养化的沿海水均有影响力。最大光利用系数α*,在温暖和冷时段中的表面和地下层之间没有显示出显着的变化。即使在温暖时期,最大光合速率,P-MAX *和光饱和度参数,E-K的垂直差异也很小。 P-E参数的季节变异与表面层的溶解无机氮(DIN)显着无关。这些结果表明,由于高营养河水的连续流入,即使在分层季节,低营养素和高强度应在表面层处不严重。提出了PMAX *和α*的季节性变化,由来自相关分析的e-K依赖性(浮游植物的光素)和ek-inscordation(对营养和生长条件的响应)的机制来调节。地下叶绿素最大(SCM)形成不太明显,主要生产的主要部分发生在Euphotic区的上半部分。水柱初级生产,Sigma PP(总),通过忽略P-E参数和叶绿素A中的垂直变化,尤其是在温暖时期的垂直变化来估计。主要生产的这些特征似乎与沿海水域中报告的那些相似,而不是在亚热带中,在海湾的渔场形成中发挥着重要作用。

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