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Effects of Epilimnetic versus Metalimnetic Fertilization on the Phytoplankton and Periphyton of a Mountain Lake with a Deep Chlorophyll Maxima

机译:表观肥力与金属肥力对深叶绿素最大值高山湖泊浮游植物和附生植物的影响

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摘要

Nutrients can load directly to either the epilimnion or metalimnion of lakes via either differential inflow depths of tributaries or intentional fertilization of discrete strata. We evaluated the differential effects of epilimnetic versus metalimnetic nutrient loading using 17-m-deep mesocosms that extended into the deep chlorophyll layer of oligotrophic Pettit Lake in the Sawtooth Mountains of Idaho. Addition of nitrogen plus phosphorus stimulated primary production nearly identically (2.4- to 4-fold on different dates) in both treatments, with the production peaks occurring in the strata where nutrients were added. The metalimnetic fertilization, however, resulted in equal or greater stimulation of chlorophyll a and phytoplankton biovolume than when nutrients were added directly to the epilimnion. Periphyton growth was stimulated 10–100 times more by epilimnetic fertilization than by metalimnetic fertilization and diverted nutrients from the planktonic autotrophs. These results suggest that the development of deep chlorophyll layers may be influenced by plunging river inflows that carry nutrients to the metalimnion and that metalimnetic lake fertilization may be useful as a tool for increasing lake productivity while reducing the impact on water quality.
机译:营养物质可以通过支流的不同流入深度或离散地层的有意施肥直接加载到湖泊的上层或上层金属上。我们使用深达17 m的中膜,扩展到爱达荷州锯齿山贫化的佩蒂特湖的深叶绿素层中,评估了上层和上层营养负荷的差异作用。氮和磷的添加在两种处理中几乎相同地刺激了初级生产(在不同日期为2.4至4倍),生产峰值出现在添加营养物的地层中。然而,与直接向than虫中添加营养素相比,金属免疫施肥对叶绿素a和浮游植物生物量的刺激作用相等或更大。上层施肥比金属层施肥和浮游自养生物的养分转移对周围植物的生长作用要高10-100倍。这些结果表明,深层叶绿素层的发育可能受到向营养物质输送金属离子的河水暴跌的影响,而金属吸收湖的施肥可能是增加湖泊生产力同时减少对水质影响的有用工具。

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