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首页> 外文期刊>Marine ecology progress series >Phytoplankton diversity and photosynthetic acclimation along a longitudinal transect through a shallow estuary in summer
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Phytoplankton diversity and photosynthetic acclimation along a longitudinal transect through a shallow estuary in summer

机译:夏季穿过浅河口的纵向剖面浮游植物的多样性和光合适应

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摘要

Diversity, nutrients and irradiance acclimation of phytoplankton were investigated along a longitudinal transect through the shallow Darss-Zingst estuary (southern Baltic Sea). Sampling in the pelagial during a stable midsummer clear-sky period served to search for basic longitudinal patterns. Cyanobacteria dominated the phytoplankton biomass. The phytoplankton biomass in the innermost basins decreased with increasing proportions of mesotrophic Baltic Sea water. Individual-based phytoplankton diversity reached maximum values at highly productive sites and was not inversely related to biomass concentration. Marked gradients of dissolved plant nutrients were not observed. Nutrient concentrations and element ratios suggested Redfield limitation by phosphorus. In contrast to element ratios in the particulate pool, dissolved iron concentrations indicated potential iron starvation at several sampling sites. The relatively high concentrations of non-reactive soluble phosphate at many sampling sites made chemical interactions of phosphates and iron probable. The availability of photosynthetically active radiation (PAR) limited the photic zone to a water depth of less than 2 m in highly productive areas, but a gradual acclimation response of phytoplankton to the longitudinal gradient in irradiance was undetectable. Significant correlations of chl a-normalised carotenoid content and saturation irradiance of photosynthesis (E_k) as well as chl a-normalised carotenoid content and daily incident PAR (sunrise to sampling time) suggest that high photon flux densities (PFDs) in midsummer clear-sky periods prevent effective photosynthetic acclimation of phytoplankton to average low irradiance availability in the turbid water columns. Low variable photosystem II fluorescence after dark incubation indicates inhibitory cross-effects of severe nutrient limitation and stress due to high PFDs at the water surface and/or high oxygen oversaturation in the pelagial. Thus, the photosynthetic machinery may be hampered under certain weather conditions, even in a highly eutrophicated estuary.
机译:沿着穿过浅Darss-Zingst河口(波罗的海南部)的纵向断面调查了浮游植物的多样性,养分和辐照度。在稳定的仲夏晴空时期的中上层采样有助于寻找基本的纵向模式。蓝细菌占主导地位的浮游植物生物量。随着中营养波罗的海海水比例的增加,最内流域的浮游植物生物量减少。基于个体的浮游植物多样性在高产地点达到最大值,与生物量浓度没有反相关。没有观察到明显的溶解的植物养分梯度。营养物浓度和元素比例表明,磷限制了红场。与颗粒池中的元素比率相反,溶解的铁浓度表明在几个采样点可能存在铁饥饿的情况。在许多采样点上相对较高浓度的非反应性可溶性磷酸盐使得磷酸盐和铁可能发生化学相互作用。光合有效辐射(PAR)的可用性将高产区的光合带限制在水深小于2 m的区域,但无法检测到浮游植物对辐照度的纵向梯度的逐渐适应。 chl a归一化的类胡萝卜素含量与光合作用的饱和辐照度(E_k)以及chl a归一化的类胡萝卜素含量与日入射PAR(日出至采样时间)的显着相关性表明,盛夏的晴空具有较高的光子通量密度(PFD)期间阻止了浮游植物的有效光合适应,从而使浑浊的水柱中的平均辐照度较低。黑暗孵育后的低可变光系统II荧光表明,由于水表面的高PFD和/或中上层的高氧过饱和度,导致严重的养分限制和胁迫的抑制性交叉效应。因此,即使在富营养化的河口,在某些天气条件下,光合机械也可能受到阻碍。

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