20,485 research outputs found
Landscape heterogeneity influences on sheep habits under extensive grazing management in Southern Patagonia
In Southern Patagonia, continuous grazing with fixed stocking rates in large paddocks prevails over grazing systems subjected to regular evaluations and rotational rests. Because of this, sheep extensive systems need technologies to improve their production levels under sustainable management. In this context, the aim of this work was to provide knowledge of sheep habits (diet, daily activity and spatial distribution patterns) in seven paddocks at a production scale throughout the year in Southern Patagonia. The area is an extensive ecotone between forest and steppe, characterized by a rugged landscape with valleys and mountains. Three vegetation types were distinguished in each paddock: forest, steppe and wetland. After a two years trial, sheep showed an important array of strategies for facing restrictions imposed by climate and low forage availability. A strong dietary selectivity, a high percentage of time allocated to grazing, large explored areas and opportunistic selection of vegetation types explained the capacity for reproduction under Southern Patagonia harsh conditions. The application of an intensified management involving paddock subdivision and separation of vegetation types should consider how sheep grazing strategies are limited.Fil: Peri, Pablo Luis. Instituto Nacional de TecnologÃa Agropecuaria; Argentina. Universidad Nacional de la Patagonia Austral; Argentina. Consejo Nacional de Investigaciones CientÃficas y Técnicas; Argentin
Exact and efficient calculation of Lagrange multipliers in constrained biological polymers: Proteins and nucleic acids as example cases
In order to accelerate molecular dynamics simulations, it is very common to
impose holonomic constraints on their hardest degrees of freedom. In this way,
the time step used to integrate the equations of motion can be increased, thus
allowing, in principle, to reach longer total simulation times. The imposition
of such constraints results in an aditional set of Nc equations (the equations
of constraint) and unknowns (their associated Lagrange multipliers), that must
be solved in one way or another at each time step of the dynamics. In this work
it is shown that, due to the essentially linear structure of typical biological
polymers, such as nucleic acids or proteins, the algebraic equations that need
to be solved involve a matrix which is banded if the constraints are indexed in
a clever way. This allows to obtain the Lagrange multipliers through a
non-iterative procedure, which can be considered exact up to machine precision,
and which takes O(Nc) operations, instead of the usual O(Nc3) for generic
molecular systems. We develop the formalism, and describe the appropriate
indexing for a number of model molecules and also for alkanes, proteins and
DNA. Finally, we provide a numerical example of the technique in a series of
polyalanine peptides of different lengths using the AMBER molecular dynamics
package.Comment: 29 pages, 10 figures, 1 tabl
Does beak size affect acoustic frequencies in woodcreepers?
We assessed the effect of beak morphology on the acoustic structure of woodcreeper (subfamily Dendrocolaptinae) songs using a comparative analysis of independent contrasts. For the song of each species, we measured the maximum and minimum frequencies, the bandwidth, and the emphasized frequency. Residuals of variationin beak length and acoustic frequencies after controlling for body size and phylogeny were calculated for each species and compared. We found a negative relationship between the residuals of acoustic frequencies and the residuals of beak length. This relationship was significant for emphasized frequency when we excluded two open-habitat species, Scimitar-billed Woodcreeper (Drymornis bridgesii) and Narrow-billed Woodcreeper (Lepidocolaptes angustirostris).This result is consistent with the hypothesis that the suprasyringeal vocal tract has resonating properties that affect the frequency spectrum of the song.Fil: Palacios, MarÃa Gabriela. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales. Departamento de EcologÃa, Genética y Evolución; ArgentinaFil: Tubaro, Pablo Luis. Consejo Nacional de Investigaciones CientÃficas y Técnicas. Oficina de Coordinación Administrativa Parque Centenario. Museo Argentino de Ciencias Naturales ; Argentin
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