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首页> 外文期刊>Journal of great lakes research >Response of phytoplankton from the metalimnetic chlorophyll maximum to macro- and micro-nutrients amendments in Lake Geneva
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Response of phytoplankton from the metalimnetic chlorophyll maximum to macro- and micro-nutrients amendments in Lake Geneva

机译:浮游植物对日内瓦湖宏观和微营养的植物和微营养修正的反应

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Despite re-oligotrophication and low trace elements concentrations, direct determination of limiting nutrient (s) of the phytoplankton community in Lake Geneva is still missing. Incubation experiments were carried out with either addition of phosphate (+P), nitrate (+N), reactive silica (+Si), iron (+Fe), nickel (+Ni) and molybdenum (+Mo) to surface water collected between 9 and 12 m, during seasonal fieldtrips in 2015. Macro- and micro-nutrients, dissolved concentrations, temperature and irradiance as well as chlorophyll a (Chl a) levels, Chl a:POC ratios, POP:POC ratios and Chl a variable fluorescence parameters were quantified. The rapid phosphorus consumption, elevated inorganic nitrogen to phosphorus ratios and increased Chl a, Chl a:POC and POP:POC, in response to P additions, all indicated a phosphorus limitation in phytoplankton. Moreover, none of the measured parameters differed significantly from the control in the other treatments. These results were also confirmed by the response of Chl a variable fluorescence. The effective photosystem II quantum yield in ambient light, the absolute electron transfer rate and the connectivity, under 53 mu mol photons/m(2)/s illumination, significantly increased while the non-photochemical quenching decreased in the +P treatment. Phytoplankton cells supplemented with phosphate were thus more efficient to capture photons and to drive them into photochemistry at light levels close to in situ levels. This is the first study to demonstrate directly a phosphorus limitation in Lake Geneva, pointing towards the success of its re-oligotrophication process. (C) 2019 Published by Elsevier B.V. on behalf of International Association for Great Lakes Research.
机译:尽管重新渗透和低微量元素浓度,但仍然缺失了在日内瓦湖浮游植物群落的限制营养素的直接测定。通过加入磷酸盐(+ P),硝酸盐(+ N),反应性二氧化硅(+ Si),铁(+ Fe),镍(+ Ni)和钼(+ Mo)进行孵育实验,以到所收集的表面水在2015年的季节性野外技术期间9和12米。宏观和微营养,溶解浓度,温度和辐照度以及叶绿素A(CHL A)水平,CHL A:POC比率,POC比率和CHL可变荧光量化参数。快速磷消耗,升高的无机氮与磷比和增加的CHL A,CHL A:POC和POC:POC,响应于P添加,所有这些都表明了浮游植物中的磷局限。此外,没有任何测量的参数从其他处理中的控制中显着不同。这些结果也通过CHL A可变荧光的响应来证实。环境光的有效电极率II量子产率,绝对电子传递速率和连通性,在53μmol光子/ m(2)/ s照明下,同时+ P处理中的非光化学猝灭而显着增加。因此,补充有磷酸盐的浮游植物细胞捕获光子并将它们驱动到光学水平的光明中,靠近原位水平。这是第一项研究,用于在日内瓦湖直接阐述磷局限,指向其再生营养过程的成功。 (c)2019年由elsevier b.v发表的。代表国际大湖泊研究协会。

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