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Vincent Careau Jean-François Giroux Dominique Berteaux 《Behavioral ecology and sociobiology》2007,62(1):87-96
Food-hoarding animals are expected to preferentially cache items with lower perishability and/or higher consumption time.
We observed arctic foxes (Alopex lagopus) foraging in a greater snow goose (Anser caerulescens atlanticus) colony where the main prey of foxes consisted of goose eggs, goslings, and lemmings (Lemmus and Dicrostonyx spp.). We recorded the number of prey consumed and cached and the time that foxes invested in these activities. Foxes took
more time to consume a goose egg than a lemming or gosling but cached a greater proportion of eggs than the other prey type.
This may be caused by the eggshell, which presumably decreases the perishability and/or pilfering risk of cached eggs, but
also increases egg consumption time. Arctic foxes usually recached goose eggs but rarely recached goslings or lemmings. We
tested whether the rapid-sequestering hypothesis could explain this recaching behavior. According to this hypothesis, arctic
foxes may adopt a two-stage strategy allowing both to maximize egg acquisition rate in an undefended nest and subsequently
secure eggs in potentially safer sites. Foxes spent more time carrying an egg and traveled greater distances when establishing
a secondary than a primary cache. To gain further information on the location and subsequent fate of cached eggs, we used
dummy eggs containing radio transmitters. Lifespan of primary caches increased with distance from the goose nest. Secondary
caches were generally located farther from the nest and had a longer lifespan than primary caches. Behavioral observations
and the radio-tagged egg technique both gave results supporting the rapid-sequestering hypothesis. 相似文献
54.
Nelzair A. Vianna Daniel Gonçalves Flavia Brandão Roberta P. de Barros Gilberto M. Amado Filho Rodrigo O. Meire João Paulo M. Torres Olaf Malm Argemiro D’Oliveira Júnior Leonardo R. Andrade 《Environmental science and pollution research international》2011,18(3):416-427
Purpose
The aims of this paper were to quantify the heavy metals (HM) in the air of different sites in Rio de Janeiro (RJ) and Salvador (SA) using Tillandsia usneoides (Bromeliaceae) as a biomonitor, and to study the morphology and elemental composition of the air particulate matter (PM) retained on the Tillandsia surface. 相似文献55.
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Francesca R. Grati Denise Molina Gomes Devika Ganesamoorthy Livia Marcato Simona De Toffol Eleonore Blondeel Francesca Malvestiti Laurence Loeuillet Anna Maria Ruggeri Robert Wainer Federico Maggi Azzedine Aboura Celine Dupont Anne Claude Tabet Fabien Guimiot Howard R. Slater Giuseppe Simoni François Vialard 《黑龙江环境通报》2013,33(1):32-41
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J. C. M. Pires A. L. Gonçalves F. G. Martins M. C. M. Alvim-Ferraz M. Simões 《Mitigation and Adaptation Strategies for Global Change》2014,19(7):1109-1117
Carbon dioxide (CO2) is one of the primary greenhouse gases that contribute to climate change. Consequently, emission reduction technologies will be needed to reduce CO2 atmospheric concentration. Microalgae may have an important role in this context. They are photosynthetic microorganisms that are able to fix atmospheric CO2 using solar energy with efficiency ten times higher than terrestrial plants. The objectives of this study were: (i) to analyse the effect of light supply on the growth of Chlorella vulgaris and Pseudokirchneriella subcapitata; (ii) to assess the atmospheric CO2 capture by these microalgae; and (iii) to determine the parameters of the Monod model that describe the influence of irradiance on the growth of the selected microalgae. Both microalgae presented higher growth rates with high irradiance values and discontinuous light supply. The continuous supply of light at the highest irradiance value was not beneficial for C. vulgaris due to photooxidation. Additionally, C. vulgaris achieved the highest CO2 fixation rate with the value of 0.305 g-CO2 L?1 d?1. The parameters of the Monod model demonstrated that C. vulgaris can achieve higher specific growth rates (and higher CO2 fixation rates) if cultivated under higher irradiances than the studied values. The presented results showed that microalgal culture is a promising strategy for CO2 capture from atmosphere. 相似文献