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101.
Vicki?L.?StokesEmail author Peter?B.?Banks Roger?P.?Pech 《Behavioral ecology and sociobiology》2012,66(2):329-338
Residency status of individuals in populations may be an important determinant of the outcomes of interspecific competition
between native and introduced species. We examined direct behavioral interactions between two similarly sized rodents, the
alien Rattus rattus and native Rattus fuscipes when they were respective residents and intruders in a small enclosure. Resident individuals were dominant in their behaviors
toward intruders irrespective of the species that was resident. In contrast, interactive behaviors between conspecifics were
often neutral or amicable, supporting suggestions that R. rattus and R. fuscipes are social animals. We then tested whether rodent species use heterospecific odors to avoid aggressive competitive interactions
and partition space in the field. Neither R. fuscipes nor R. rattus responded to traps scented with the odors of male or female heterospecifics. If R. fuscipes does not recognize the odor of introduced R. rattus, then odors will not be cues to the presence or territorial space of competing heterospecifics. Rather, findings from both
enclosure and field trials suggest that direct aggressive interactions between individual R. rattus and R. fuscipes probably facilitate segregation of space between these two species in wild populations, where resident animals may typically
be the winners and exclude heterospecific intruders. These findings have implications for the invasion success of introduced
rodents such as R. rattus into intact forests, where native populations may have competitive advantage because of their residency status. 相似文献
102.
Zhaoqing Yang Kathryn L. Sobocinski Tarang Khangaonkar Roger Fuller 《Ecological modelling》2010,221(7):1043-319
Along the Pacific Northwest coast, much of the estuarine habitat has been lost over the last century to agricultural land use, residential and commercial development, and transportation corridors. As a result, many of the ecological processes and functions have been disrupted. To protect and improve these coastal habitats that are vital to aquatic species, many projects are currently underway to restore estuarine and coastal ecosystems through dike breaches, setbacks, and removals. Understanding site-specific information on physical processes is critical for improving the success of such restoration actions. In this study, a three-dimensional hydrodynamic model was developed to simulate estuarine processes in the Stillaguamish River estuary, where restoration of a 160-acre parcel through dike setback has been proposed. The model was calibrated to observed tide, current, and salinity data for existing conditions and applied to simulate the hydrodynamic responses to two restoration alternatives. Model results were then combined with biophysical data to predict habitat responses within the restoration footprint. Results showed that the proposed dike removal would result in desired tidal flushing and conditions that would support four habitat types on the restoration footprint. At the estuary scale, restoration would substantially increase the proportion of area flushed with freshwater (<5 ppt) at flood tide. Potential implications of predicted changes in salinity and flow dynamics are discussed relative to the distribution of tidal marsh habitat. 相似文献
103.
Toxizität und Risk Assessment fluvialer Sedimente und Schwebstoffe: Eine kurze Übersicht bisheriger und neuerer Entwicklungen 总被引:1,自引:0,他引:1
M. Brinkmann S. Hudjetz S. Keiter T.-B. Seiler J. Wölz A. V. Hallare H. Hollert C. Cofalla S. Roger H. Schüttrumpf S. U. Gerbersdorf 《Environmental Sciences Europe》2010,22(6):651-655
Background In recent years, sediments have become a central topic of scientific and public discussion as an important factor for determining water quality. While the quality of surface waters in Germany has significantly improved during the past years, highly contaminated sediments still create a considerable threat to the quality of several European catchment areas. Main features Here, we summarize different concepts and methods for the assessment of sediment quality and report on some novel integrative test methods for assessing sediment toxicity including contaminant re-mobilization during simulated re-suspension events. Results and discussion Currently, different approaches for assessment of sediment pollution exist. While instrumental chemical analyses are not suitable to accurately describe sediment toxicity, combinations of biological and chemical test procedures and integrated approaches, for example weight-of-evidence studies and effect-directed analysis (EDA), have the potential to identify key contaminants. Inter-disciplinary studies combining hydrodynamic and toxicological aspects coupled to real exposure of aquatic organisms to contaminants are currently being developed. Conclusions Monitoring and assessment of sediment quality are of increasing importance, not only for national legislation but also for the implementation of the European Water Framework Directive (WFD). Integrated approaches for the determination of sediment stability play a key role in the appropriate sediment-monitoring strategies. 相似文献
104.
Tunnel wash waters characterize all waters that run off after washing procedures of tunnels are performed.These waters represent a wide spectrum of organic and inorganic pollutants,such as polycyclic aromatic hydrocarbons(PAHs)and toxic metals.Removal of such contaminants from water runoff was investigated using laboratory tests after washing procedure was performed on two road tunnels in eastern Norway(Hanekleiv and Bragernes).Due to diverse character of both,treatment media and treated wash waters, the... 相似文献
105.
Lin C Solera Garcia MA Timmis R Jones KC 《Journal of environmental monitoring : JEM》2011,13(3):753-761
A new type of directional passive air sampler (DPAS) is described for collecting particulate matter (PM) in ambient air. The prototype sampler has a non-rotating circular sampling tray that is divided into covered angular channels, whose ends are open to winds from sectors covering the surrounding 360°. Wind-blown PM from different directions enters relevant wind-facing channels, and is retained there in collecting pools containing various sampling media. Information on source direction and type can be obtained by examining the distribution of PM between channels. Wind tunnel tests show that external wind velocities are at least halved over an extended area of the collecting pools, encouraging PM to settle from the air stream. Internal and external wind velocities are well-correlated over an external velocity range of 2.0-10.0 m s?1, which suggests it may be possible to relate collected amounts of PM simply to ambient concentrations and wind velocities. Measurements of internal wind velocities in different channels show that velocities decrease from the upwind channel round to the downwind channel, so that the sampler effectively resolves wind directions. Computational fluid dynamics (CFD) analyses were performed on a computer-generated model of the sampler for a range of external wind velocities; the results of these analyses were consistent with those from the wind tunnel. Further wind tunnel tests were undertaken using different artificial particulates in order to assess the collection performance of the sampler in practice. These tests confirmed that the sampler can resolve the directions of sources, by collecting particulates preferentially in source-facing channels. 相似文献
106.
A common explanation for hunting in groups is that doing so yields a greater per capita caloric benefit than hunting solitarily.
This is logical for social carnivores, which rely exclusively on meat for energy, but arguably not for omnivores, which obtain
calories from either plant or animal matter. The common chimpanzee, Pan troglodytes, is one of the few true omnivores that regularly hunts in groups. Studies to date have yielded conflicting data regarding
the payoffs of group hunting in chimpanzees. Here, we interpret chimpanzee hunting patterns using a new approach. In contrast
to the classical assumption that hunting with others maximizes per capita caloric intake, we propose that group hunting is
favored because it maximizes an individual’s likelihood of obtaining important micronutrients that may be found in small quantities
of meat. We describe a mathematical model demonstrating that group hunting may evolve when individuals can obtain micronutrients
more frequently by hunting in groups than by hunting solitarily, provided that group size is below a certain threshold. Twenty
five years of data from Gombe National Park, Tanzania are consistent with this prediction. We propose that our ‘meat-scrap’
hypothesis is a unifying approach that may explain group hunting by chimpanzees and other social omnivores. 相似文献
107.
Kyle Hamish Elliott Roger D. Bull Anthony J. Gaston Gail K. Davoren 《Behavioral ecology and sociobiology》2009,63(12):1773-1785
How predators vary search patterns in response to prey predictability is poorly known. For example, marine invertebrates may
be predictable but of low energy value, while fish may be of higher energy value but unpredictable at large (pelagic schools)
or small (solitary benthics) spatial scales. We investigated the search patterns of the thick-billed murre (Uria lomvia), an Arctic seabird feeding on invertebrates, pelagic fish, or benthic fish. Foraging ranges at the Coats Island colony are
generally smaller (<240 min per trip) than at larger colonies, and many birds specialize in foraging tactics and diet. Underwater
search times for benthic fish were higher than for pelagic fish or invertebrates while above-water search times for pelagic
fish were higher than for benthic fish or invertebrates. There were few stops during trips. Total trip time, flying time,
number of flights, and number of dives were intercorrelated and increased with prey energy content, suggesting that longer
trips involved fewer prey encounters due to selection of higher-quality, but rarer, prey items. Flight times were not Lévy-distributed
and seabirds may have used area-restricted searches. The high degree of specialization, apparent absence of information center
effects, and reduced above-water searching times may be linked to the relatively small colony size and the resulting short
commuting distances to feeding areas, leading to greater prey predictability. We concluded that prey predictability over various
scales affected predator search patterns. 相似文献
108.
Jana S. Stewart Lizhu Wang John Lyons Judy A. Horwatich Roger Bannerman 《Journal of the American Water Resources Association》2001,37(6):1475-1487
ABSTRACT: Multivariate analyses and correlations revealed strong relations between watershed and riparian‐corridor land cover, and reach‐scale habitat versus fish and macroinvertebrate assemblages in 38 warmwater streams in eastern Wisconsin. Watersheds were dominated by agricultural use, and ranged in size from 9 to 71 km2 Watershed land cover was summarized from satellite‐derived data for the area outside a 30‐m buffer. Riparian land cover was interpreted from digital orthophotos within 10‐, 10‐to 20‐, and 20‐to 30‐m buffers. Reach‐scale habitat, fish, and macroinvertebrates were collected in 1998 and biotic indices calculated. Correlations between land cover, habitat, and stream‐quality indicators revealed significant relations at the watershed, riparian‐corridor, and reach scales. At the watershed scale, fish diversity, intolerant fish and EPT species increased, and Hilsenhoff biotic index (HBI) decreased as percent forest increased. At the riparian‐corridor scale, EPT species decreased and HBI increased as riparian vegetation became more fragmented. For the reach, EPT species decreased with embeddedness. Multivariate analyses further indicated that riparian (percent agriculture, grassland, urban and forest, and fragmentation of vegetation), watershed (percent forest) and reach‐scale characteristics (embeddedness) were the most important variables influencing fish (IBI, density, diversity, number, and percent tolerant and insectivorous species) and macroinvertebrate (HBI and EPT) communities. 相似文献
109.
Axel Strauß Katrin Y. Solmsdorff Roger Pech Jens Jacob 《Behavioral ecology and sociobiology》2008,62(10):1551-1558
Predators can strongly influence the microhabitat use and foraging behaviour of prey. In a large-scale replicated field experiment
in East Gippsland, Australia, we tested the effects of reduced alien red fox (Vulpes vulpes) and alien wild dog (Canis lupus familiaris) abundance (treatment) on native bush rat (Rattus fuscipes) behaviour. Bush rats are exposed to two main guilds of predators, namely mammalian carnivores and birds of prey. Tracking
rat movements using the spool-and-line technique revealed that, in treatment sites, rats used ground cover, which provides
shelter from predators, less often than at unmanipulated fox and wild dog abundance (non-treatment sites). In treatment sites,
rats more frequently moved on logs where they would have been exposed to hunting foxes and dogs than in non-treatment sites.
Furthermore, in treatments, rats showed a preference for understorey but not in non-treatments. Hence, bush rats adapted their
behaviour to removal of alien terrestrial predators. Giving-up densities (GUDs) indicated no treatment effects on the marginal
feeding rate of bush rats. Interestingly, GUDs were higher in open patches than in sheltered patches, suggesting higher perceived
predation risk of bush rats during foraging at low versus high cover. The lack of treatment effects on GUDs but the clear
response of bush rats to cover may be explained by the impact of predators other than foxes and wild dogs. 相似文献
110.
Pere Pons Josep M. Bas Roger Prodon Núria Roura-Pascual Miguel Clavero 《Behavioral ecology and sociobiology》2008,62(8):1217-1228
The study of successional gradients may help to understand the relative influence of habitat structure and competition on
territory characteristics. Here, we evaluate the effects of vegetation cover, conspecific and heterospecific densities, and
distance to the nearest neighbor on territory size, shape, and overlap in insectivorous birds. We studied these effects along
a gradient of postfire habitat regeneration in which foliage cover and densities of focal species varied several-fold. We
delineate 197 territories (minimum convex polygons) of the shrub-dwelling Dartford warbler (Sylvia undata) and 255 of the syntopic Sardinian (Sylvia melanocephala), subalpine (Sylvia cantillans) and melodious (Hippolais polyglotta) warblers at three plots in NE Catalonia (Spain and France) in 1987–2005. After accounting for the effect of the number of
locations used to delineate polygons, generalized linear mixed models (GLMM) showed a reduction in territory area of the Dartford
warbler as conspecific density increased and distance to nearest neighbor decreased, in accordance with the contender pressure
hypothesis for territory size regulation. Heterospecific density was not included in the final model of territory size and
the effect of habitat structure was marginal. Territory roundness was positively correlated with its size and with conspecific
density, probably in relation to energetic constraints, and negatively with heterospecific density. Territorial exclusion
was almost complete among Dartford warblers, whereas interspecific territory overlap was extensive and tended to increase
with heterospecific density and with structural diversity along the gradient. Our results support the hypothesis that Mediterranean
warbler coexistence derives from ecological segregation and not from interspecific territoriality. 相似文献