29 research outputs found

    Litter Quality and Nutrient Cycling Affected by Grazing-Induced Species Replacements along a Precipitation Gradient

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    One of the potential mechanisms for the impact of herbivores on nutrient cycling is the effect of selective grazing on litter quality through changes in species composition. However, the scarce evidence collected on this mechanism is controversial and seemingly influenced by site-specific variables. In this paper, we explored the consequences of grazing-induced changes in species composition on litter quality and nitrogen cycling with a regional perspective. Along a 900-mm of mean annual rainfall gradient, we selected species promoted and diminished by grazing from three natural rangelands of Argentina, analyzed their litter quality, and determined their decomposition and nutrient release kinetics under common greenhouse conditions. Litter quality and decomposition rates were strongly associated with plant response to grazing. However, the magnitude and direction of these differences depended on the ecosystem considered. In the wettest site, the species promoted by grazing (forbs) had higher nitrogen and phosphorus contents, faster decomposition rates, and higher release of nitrogen to the soil than species diminished by grazing (C3 and C4 grasses). In the intermediate and dry sites, species promoted by grazing had lower nitrogen and phosphorus contents, and slower decomposition rates than those diminished by grazing (C3 grasses in both cases). Decomposition of the entire group of species was not correlated with mean annual rainfall, but when litter of the species diminished by grazing was analyzed, it was negatively correlated with precipitation. Nitrogen was immobilized more often than mineralized, even after one year of incubation. Immobilization was negatively correlated with precipitation. All these results indicate that grazing may significantly alter nutrient cycling by affecting litter quality through changes in species composition. These effects seem to be larger when species replacements induced by grazing either involve functional groups, as it was the case in our wettest site, or change root to shoot ratios. Therefore, the functional groups involved in the replacement of species as well as shifts between belowground and aboveground allocation should play a key role in grazing-induced changes on nitrogen cycling.Fil: Semmartin, Mar铆a Gisela. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Parque Centenario. Instituto de Investigaciones Fisiol贸gicas y Ecol贸gicas Vinculadas a la Agricultura. Universidad de Buenos Aires. Facultad de Agronom铆a. Instituto de Investigaciones Fisiol贸gicas y Ecol贸gicas Vinculadas a la Agricultura; ArgentinaFil: Aguiar, Martin Roberto. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Parque Centenario. Instituto de Investigaciones Fisiol贸gicas y Ecol贸gicas Vinculadas a la Agricultura. Universidad de Buenos Aires. Facultad de Agronom铆a. Instituto de Investigaciones Fisiol贸gicas y Ecol贸gicas Vinculadas a la Agricultura; ArgentinaFil: Distel, Roberto Alejandro. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Centro Cient铆fico Tecnol贸gico Conicet - Bah铆a Blanca. Centro de Recursos Naturales Renovables de la Zona Semi谩rida. Universidad Nacional del Sur. Centro de Recursos Naturales Renovables de la Zona Semi谩rida; ArgentinaFil: Moretto, Alicia Susana. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Centro Austral de Investigaciones Cient铆ficas; ArgentinaFil: Ghersa, Claudio Marco. Consejo Nacional de Investigaciones Cient铆ficas y T茅cnicas. Oficina de Coordinaci贸n Administrativa Parque Centenario. Instituto de Investigaciones Fisiol贸gicas y Ecol贸gicas Vinculadas a la Agricultura. Universidad de Buenos Aires. Facultad de Agronom铆a. Instituto de Investigaciones Fisiol贸gicas y Ecol贸gicas Vinculadas a la Agricultura; Argentin
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