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The added nutrient treatment simulated background nutrient conditions common in more eutrophicated embayments of the Gulf of Riga.
High nutrient treatment resulted in higher RGR and allocation to asexual reproduction resulting in higher biomass accumulation compared to the low nutrient treatment, which had higher root growth and allocation to sexual reproduction.
Sedimentation ponds are widely believed to act as a primary removal process for phosphorus (P) in nutrient treatment wetlands.
Nutrient treatment was variable, with generally positive removal except for seasonal events with large pulses of release from the swales.
The averaged values of the 3-replicate control samples were subtracted for each probe within each nutrient treatment condition.
A significant response to the nutrient treatment was observed for total soluble solid (TSS) of tomato fruit juice.
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Low nutrient treatments also resulted in early bud set; however, leaves were abscised much earlier.
There were individual effects from site on biomass but not for any interactions with nutrient treatments.
It also led to decreased lignin concentrations in Avena roots in both nutrient treatments, and in Plantago shoots and roots with nutrient addition.
For the hydrolases significant effects were observed between nutrient treatments, while for the oxidases they were observed between tillage treatments.
Data were analyzed as randomized block (stage of lactation) design in a factorial arrangement of nutrient treatments by LPS dose.
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