Agronomic and environmental impacts of phosphorus.pdf

Agronomic and environmental impacts of phosphorus.pdf

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Agronomic and environmental impacts of phosphorus

ORIGINAL ARTICLE Agronomic and environmental impacts of phosphorus fertilization of low input bahiagrass systems in Florida Augustine K. Obour ? Maria L. Silveira ? Joao M. B. Vendramini ? Lynn E. Sollenberger ? George A. O’Connor ? James W. Jawitz Received: 11 May 2010 / Accepted: 30 July 2010 / Published online: 19 August 2010  Springer Science+Business Media B.V. 2010 Abstract Phosphorus management in low input bahiagrass (Paspalum notatum Flugge) systems rep- resents a major challenge of agronomic and environ- mental importance. Concerns over agricultural P transport to surface waters have prompted several revisions in the P fertilizer recommendations for bahiagrass in Florida. This study evaluated the effects of revised P fertilizer recommendations on forage dry matter yield (DMY) and nutritive value and the potential impacts on water quality in bahiagrass pastures growing on a Spodosol. Treatments con- sisted of the factorial combination of three N rates (0, 56, and 112 kg N ha-1) and four P rates (0, 5, 10, and 20 kg P ha-1), replicated three times and applied annually in May of 2007 and 2008. Forage was harvested at 28-d intervals and DMY, tissue P and crude protein concentration, and P uptake were measured. To monitor P leaching potential, suction cup lysimeters were installed at 15-, 30-, 60-, 90-, and 150-cm depths. In 2007, bahiagrass DMY was not affected by P; however, in 2008 there was a linear increase in DMY from 6.9 to 8.2 Mg ha-1 as P rate increased. In both years, tissue P increased linearly from 2.1 to 2.5 g kg-1 as P rates increased from 0 to 20 kg P ha-1. Similarly, P uptake increased from 14 kg P ha-1 for the control to 19 kg P ha-1 for the treatment receiving 20 kg P ha-1. During the 2-year study, P fertilization had no impact on soil Mehlich-1, water-extractable P, and leachate P concentrations. Leachate P concentrations at the 15- and 30-cm depths varied seasonally (from 0.05 to 0.85 mg P l-1), with greater spikes occurring during periods

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