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881.
Francisco?Santiago-QuesadaEmail author José?A.?Masero Sora?M.?Estrella Juan?M.?Sánchez-Guzmán 《Behavioral ecology and sociobiology》2012,66(3):397-405
There is a large literature dealing with daily foraging routines of wild birds during the non-breeding season. While different
laboratory studies have showed that some bird activity patterns are a persistent property of the circadian system, most of
field studies preclude the potential role of an endogenous circadian rhythm in controlling bird’s foraging routines. In this
study we compared the patterns of diurnal foraging activity and intake rates of migrating black-tailed godwits, Limosa limosa (radio-tagged and non-tagged individuals) at two stopover sites (habitats) with different environmental characteristics,
aiming at identifying proximate factors of bird activity routines. To gain insights into the role of food availability in
control of such foraging routines, we also estimated foraging activity patterns in captive godwits subjected to constant food
availability. Captive and wild black-tailed godwits showed a persistent bimodal activity pattern through daylight period.
Food availability had a significant effect on the intake rates, but had a subtler effect on foraging and intake rate rhythms.
Temperature and wind speed (combined in a weather index) showed non-significant effects on both rhythms. Although we could
not discard a role for natural diurnal changes in light intensity, an important timing cue, our findings support the idea
that an endogenous circadian rhythm could be an important proximate factor regulating foraging activity and food items taken
per unit time of wild black-tailed godwits during migration. 相似文献
882.
883.
Spatial closures in the marine environment are widely accepted as effective conservation and fisheries management tools. Given increasing human-derived stressors acting on marine ecosystems, the need for such effective action is urgently clear. Here we explore mechanisms underlying the utility of marine reserves to reinstate trophic dynamics and to increase resilience of kelp beds against climate-driven phase shift to sea urchin barrens on the rapidly warming Tasmanian east coast. Tethering and tagging experiments were used to examine size- and shelter-specific survival of the range-extending sea urchin Centrostephanus rodgersii (Diadematidae) translocated to reefs inside and outside no-take Tasmanian marine reserves. Results show that survival rates of C. rodgersii exposed on flat reef substratum by tethering were approximately seven times (small urchins 10.1 times; large urchins 6.1 times) lower on protected reef within marine reserve boundaries (high abundance of large predatory-capable lobsters) compared to fished reef (large predatory lobsters absent). When able to seek crevice shelter, tag-resighting models estimated that mortality rates of C. rodgersii were lower overall but remained 3.3 times (small urchins 2.1 times; large urchins 6.4 times) higher in the presence of large lobsters inside marine reserves, with higher survival of small urchins owing to greater access to crevices relative to large urchins. Indeed, shelter was 6.3 times and 3.1 times more important to survival of small and large urchins, respectively, on reserved relative to fished reef. Experimental results corroborate with surveys throughout the range extension region, showing greater occurrence of overgrazing on high-relief rocky habitats where shelter for C. rodgersii is readily available. This shows that ecosystem impacts mediated by range extension of such habitat-modifying organisms will be heterogeneous in space, and that marine systems with a more natural complement of large and thus functional predators, as achievable within no-take reserves, will minimize local risk of phase shifts by reinstating size and habitat-specific predator-prey dynamics eroded by fishing. Importantly, our findings also highlight the crucial need to account for the influence of size dynamics and habitat complexity on rates of key predator-prey interactions when managing expectations of ecosystem-level responses within marine reserve boundaries. 相似文献
884.
The life cycle of Lychnorhiza lucerna (Scyphozoa: Rhizostomeae) and the settlement preferences of its larvae were studied using laboratory-based rearing experiments.
Mature medusae of L. lucerna were collected from the beach of the Río de la Plata estuary, Argentina. This species displayed the typical metagenetic,
(i.e. medusoid and polypoid), life cycle reported for other rhizostomes. The fertilized eggs developed into motile and short
lived planulae. The majority of planulae settled on the air-water interface (p < 0.001). Of those that settled on the settlement plates provided, no significant differences were observed between styrene
slides, glass slides and shells of the bivalve Mactra isabelleana (p > 0.05). No planulae settled on stones. Several hours after planulae settled, they metamorphosed into sessile four-tentacled
scyphistomae. Most scyphistomae attached onto the air-water interface. At 19–22°C, the scyphistomae grew up to 22 tentacles
and reached 1,500 μm height. The scyphistomae increased their numbers by means of formation of podocysts from which new polyps
emerged and strobilated. Strobilation occurred 46 days after settlement. Only polydisk strobilation was observed and each
strobila always produced three ephyrae. After releasing ephyrae, strobilae returned to normal scyphistomae and were capable
of repeating strobilation. A single founder polyp was estimated to produce up to 60 ephyrae over 4 months. Ephyrae developed
into metephyrae 15 days after release at 19–22°C. In this paper we describe the morphological and some behavioural features
of L. lucerna in the polypoid and early medusoid stages. 相似文献
885.
Kate S. Boersma Clifford H. Ryer Thomas P. Hurst Selina S. Heppell 《Behavioral ecology and sociobiology》2008,62(12):1959-1968
Animals balance feeding and anti-predator behaviors at various temporal scales. When risk is infrequent or brief, prey can
postpone feeding in the short term and temporally allocate feeding behavior to less risky periods. If risk is frequent or
lengthy, however, prey must eventually resume feeding to avoid fitness consequences. Species may exhibit different behavioral
strategies, depending on the fitness tradeoffs that exist in their environment or across their life histories. North Pacific
flatfishes that share juvenile rearing habitat exhibit a variety of responses to predation risk, but their response to risk
frequency has not been examined. We observed the feeding and anti-predator behaviors of young-of-the-year English sole (Parophrys vetulus), northern rock sole (Lepidopsetta polyxystra), and Pacific halibut (Hippoglossus stenolepis)—three species that exhibit divergent anti-predator strategies—following exposure to three levels of predation risk: no risk,
infrequent (two exposures/day), and frequent (five exposures/day). The English sole responded to the frequent risk treatment
with higher feeding rates than during infrequent risk, following a pattern of behavioral response that is predicted by the
risk allocation hypothesis; rock sole and halibut did not follow the predicted pattern, but this may be due to the limited
range of treatments. Our observations of unique anti-predator strategies, along with differences in foraging and species-specific
ecologies, suggest divergent trajectories of risk allocation for the three species. 相似文献
886.
Experimental and numerical analysis of flow instabilities in rectangular shallow basins 总被引:1,自引:1,他引:0
B. J. Dewals S. A. Kantoush S. Erpicum M. Pirotton A. J. Schleiss 《Environmental Fluid Mechanics》2008,8(1):31-54
Free surface flows in several shallow rectangular basins have been analyzed experimentally, numerically and theoretically.
Different geometries, characterized by different widths and lengths, are considered as well as different hydraulic conditions.
First, the results of a series of experimental tests are briefly depicted. They reveal that, under clearly identified hydraulic
and geometrical conditions, the flow pattern is found to become non-symmetric, in spite of the symmetrical inflow conditions,
outflow conditions and geometry of the basin. This non-symmetric motion results from the growth of small disturbances actually
present in the experimental initial and boundary conditions. Second, numerical simulations are conducted based on a depth-averaged
approach and a finite volume scheme. The simulation results reproduce the global pattern of the flow observed experimentally
and succeed in predicting the stability or instability of a symmetric flow pattern for all tested configurations. Finally,
an analytical study provides mathematical insights into the conditions under which the symmetric flow pattern becomes unstable
and clarifies the governing physical processes. 相似文献
887.
The objective of this study is to cultivate aerobic granules by pure bacterial strain, Bacillus thuringiensis, in a sequencing batch reactor. Stable granules sized 2.0–2.2 mm were formed in the reactor after a five-week cultivation. These granules exhibited excellent settling attributes, and degraded phenol at rates of 1.49 and 1.19 g phenol/(g VSS·d) at 250 and 1500 mg/L of phenol concentration, respectively. Confocal laser scanning microscopic test results show that Bacillus thuringiensis was distributed over the initial small aggregates, and the outer edge of the granule was away from the core regime in the following stage. 相似文献
888.
Dimethylselenide (DMSe) is a highly volatile gas that is produced by indigenous microorganisms in seleniferous soils and sediments; however, little is known about the soil conditions that affect the persistence of DMSe and its transport to the atmosphere. In this study we investigated the effect of moisture content, temperature, and organic amendments on the degradation of soil-applied DMSe. The degradation of DMSe was entirely a result of biological mechanisms, but changes in temperature (20-40 degrees C) and soil moisture content (30-70% of the maximum water holding capacity) had little influence on the degradation rate. In contrast, amending soil with either 1% casein or gluten (by weight) had an inhibitory effect on the degradation of DMSe. After 18 d, 2.1 times more DMSe was present in the casein-amended soil and 2.6 times more DMSe was present in the gluten-amended soil. The transport of DMSe in packed soil columns was also investigated. Increasing the depth to soil surface was found to significantly decrease the amount of DMSe transported to the air. After 6 d, 57% of DMSe injected 10 cm below the soil surface was volatilized. At an injection depth of 20 cm the cumulative emissions were reduced by 38% and at 30 cm the cumulative emissions were reduced by 51%. In columns containing 1% casein or gluten in the top 5 cm of soil the cumulative loss of DMSe was about 9% higher than in unamended soil. Increasing our understanding of the soil conditions that influence the gaseous diffusion of DMSe should help in determining the feasibility of using Se volatilization as a remediation technique. 相似文献
889.
890.
S. K. Jain G. N. Yoganarasimhan S. M. Seth 《Journal of the American Water Resources Association》1992,28(6):1037-1043
ABSTRACT: Many approaches are available for operation of a multipurpose reservoir during flood season; one of them is allocation of storage space for flood control. A methodology to determine a reservoir operation policy based on explicit risk consideration is presented. The objective of the formulation is to maximize the reservoir storage at the end of a flood season while ensuring that the risk of an overflow is within acceptable limits. The Dynamic Programming technique has been used to solve the problem. This approach has been applied to develop operation policies for an existing reservoir. The performance of the policy was evaluated through simulation and was found to be satisfactory. 相似文献