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101.
An extensive road system with rapidly increasing traffic produces diverse ecological effects that cover a large land area.
Our objective was to evaluate the effect of roads with different traffic volumes on surrounding avian distributions, and its
importance relative to other variables. Grassland bird data (5 years) for 84 open patches in an outer suburban/rural landscape
near Boston were analyzed relative to: distance from roads with 3000–8000 to >30,000 vehicles/day; open-habitat patch size;
area of quality microhabitat within a patch; adjacent land use; and distance to other open patches. Grassland bird presence
and regular breeding correlated significantly with both distance from road and habitat patch size. Distance to nearest other
open patch, irrespective of size, was not significant. Similarly, except for one species, adjacent land use, in this case
built area, was not significant. A light traffic volume of 3000–8000 vehicles/day (local collector street here) had no significant
effect on grassland bird distribution. For moderate traffic of 8000–15,000 (through street), there was no effect on bird presence
although regular breeding was reduced for 400 m from a road. For heavier traffic of 15,000–30,000 (two-lane highway), both
bird presence and breeding were decreased for 700 m. For a heavy traffic volume of ≥30,000 vehicles/day (multilane highway),
bird presence and breeding were reduced for 1200 m from a road. The results suggest that avian studies and long-term surveys
near busy roads may be strongly affected by traffic volume or changes in volume. We conclude that road ecology, especially
the effects extending outward >100 m from roads with traffic, is a sine qua non for effective land-use and transportation policy. 相似文献
102.
Bioassessment of silvicultural impacts in streams and wetlands of the Eastern United States 总被引:1,自引:0,他引:1
John J. Hutchens Jr. Darold P. Batzer Elizabeth Reese 《Water, Air, & Soil Pollution: Focus》2004,4(1):37-53
Bioassessment is a useful tool to determine the impact of logging practices on the biological integrity of streams and wetlands. Measuring biota directly has an intuitive appeal for impact assessment, and biota can be superior indicators to physical or chemical characteristics because they can reflect cumulative impacts over time. Logging can affect stream and wetland biota by increasing sedimentation rates, altering hydrologic, thermal, and chemical regimes, and changing the base of food webs. Biotic impacts of logging on streams compared to wetlands probably differ, and in this paper we review some of those differences. In streams, invertebrates, fishes, amphibians, algae, and macrophytes have been used as indicators of logging impacts. In wetlands, bioassessment is just beginning to be used, and plants and birds are the most promising indicator taxa. Various best management practices (BMPs) have been developed to reduce the impacts of logging on stream and wetland biota, and we review quantitative studies that have evaluated the efficacy of some of these techniques in streams and wetlands in the eastern United States. Remarkably few studies that address the overall efficacy of BMPs in limiting biotic changes in streams and wetlands after BMP implementation have been published in scientific journals, although some work exists in reports or is unpublished. We review these works, and compile conclusions about BMP efficacy for biota from this body of research. 相似文献
103.
D. Martin Fleming Wilfried F. Wolff Donald L. DeAngelis 《Environmental management》1994,18(5):743-757
Declines in populations of and reproductive success of wood storks and other wading birds have occurred in the Florida Everglades
over the past several decades. These declines have been concurrent with major changes in the Everglades’ landscape characteristics.
Among the plausible hypotheses that relate to landscape change are the following: (1) general loss of habitat; (2) heavy loss
of specific habitat, namely, short-hydroperiod wetlands that provide high prey availability early in the breeding season;
and (3) an increase in frequency of major drying out of the central slough areas, which can affect prey availability late
in the breeding season.
These three hypotheses were compared using an individual-based model of wood stork (Mycteria americana) reproduction. This model simulated the behavior and energetics of each individual wood stork in a breeding colony on 15-min
time intervals. Changes in water depth and prey availability occurred on daily time steps. Simulation results showed a threshold
response in reproductive success to reduction of wetland heterogeneity. Model comparisons in which (1) only short-hydroperiod
wetlands were removed and (2) wetlands of both long and short hydroperiods were removed showed that, for the same loss of
total area, the specific habitat removal caused a much greater reduction in wood stork reproduction, indicating hypothesis
2 may be a more likely explanation than hypothesis 1. Reduction of initial prey availability in the central slough areas (simulating
frequent drying; hypothesis 3) reduced fledging success by an average of more than 90% in the model. 相似文献
104.
105.
Martin Philippe-Lesaffre Martin Thibault Stephane Caut Karen Bourgeois Tristan Berr Andreas Ravache Eric Vidal Franck Courchamp Elsa Bonnaud 《Conservation biology》2023,37(3):e14042
Seabirds have been particularly affected by invasive non-native species, which has led to the implementation of numerous eradication campaigns for the conservation of these keystone and highly vulnerable species. Although the benefits of eradication of invasive non-native species for seabird conservation have been demonstrated, the recovery kinetics of different seabird populations on islands after eradication remains poorly evaluated. We conducted long-term monitoring of the number of breeding pairs of seven seabird species on a small atoll, Surprise Island, New Caledonia (southwestern tropical Pacific). Marine avifauna of the island were surveyed yearly 4 years before to 4 years after rodent eradication (conducted in 2005), and we conducted multiple one-time surveys from ∼10 years before and ∼15 years after eradication. We sought to determine how different seabird species responded to the eradication of invasive rodents in an insular environment. Three species responded positively (two- to 10-fold increase in population size) to eradication with differences in lag time and sensitivity. The number of breeding pairs increased (effect sizes = 0.49–0.95 and 0.35–0.52) for two species over 4 years post-eradication due to immigration. One species had a longer (at least 5 years) response time than all others; breeding pairs increased for over 10 years after eradication. Long-term sampling was necessary to observe the responses of the seabird populations on the island because of the delayed response of a species to eradication not visible in the first years after eradication. Our results confirmed the positive effects of eradication of invasive non-native species on seabirds and emphasize the importance of mid- and long-term pre- and posteradication surveys to decipher the mechanisms of seabird recovery and confirm the benefits of eradication for conservation purposes. 相似文献
106.
Abstract: At present most of the large rivers of South America are impounded. Management plans historically have relied on the construction of fish passages, specifically ladders, to mitigate the impact of these waterway blockages on fisheries and biodiversity. Nevertheless, the design of these facilities is not ecologically sound and they are not monitored continually. Consequently, the real role of South American fish passages in fisheries and biodiversity management is unclear and the results of some studies suggest that ladders are problematic in fish conservation. We examined the characteristics and negative aspects of fish passages within a larger context and considered the notion that these facilities are ecological traps in some Brazilian impoundments. Four conditions are required to characterize a fish passage as an ecological trap: (1) attractive forces leading fish to ascend the passage; (2) unidirectional migratory movements (upstream); (3) the environment above the passage has poor conditions for fish recruitment (e.g., the absence of spawning grounds and nursery areas); and (4) the environment below the passage has a proper structure for recruitment. When these conditions exist individuals move to poor-quality habitats, fitness is reduced, and populations are threatened. To exemplify this situation we analyzed two case studies in the upper Paraná River basin, Brazil, in which the four conditions were met and migratory fish populations were declining. If passages work as ecological traps, regional fisheries will be in danger of collapse and conservation policies toward biodiversity will become more difficult and ineffective. The situation demands the closing of the passage in conjunction with alternative management actions to preserve system functionality, especially the conservation of critical habitats downstream and the restoration of damaged habitats in the region. 相似文献
107.
Human Impacts on Regional Avian Diversity and Abundance 总被引:1,自引:0,他引:1
CHRISTOPHER A. LEPCZYK† CURTIS H. FLATHER‡ VOLKER C. RADELOFF ANNA M. PIDGEON ROGER B. HAMMER§†† JIANGUO LIU† 《Conservation biology》2008,22(2):405-416
Abstract: Patterns of association between humans and biodiversity typically show positive, negative, or negative quadratic relationships and can be described by 3 hypotheses: biologically rich areas that support high human population densities co‐occur with areas of high biodiversity (productivity); biodiversity decreases monotonically with increasing human activities (ecosystem stress); and biodiversity peaks at intermediate levels of human influence (intermediate disturbance). To test these hypotheses, we compared anthropogenic land cover and housing units, as indices of human influence, with bird species richness and abundance across the Midwestern United States. We modeled richness of native birds with 12 candidate models of land cover and housing to evaluate the empirical evidence. To assess which species were responsible for observed variation in richness, we repeated our model‐selection analysis with relative abundance of each native species as the response and then asked whether natural‐history traits were associated with positive, negative, or mixed responses. Native avian richness was highest where anthropogenic land cover was lowest and housing units were intermediate based on model‐averaged predictions among a confidence set of candidate models. Eighty‐three of 132 species showed some pattern of association with our measures of human influence. Of these species approximately 40% were negatively associated, approximately 6% were positively associated, and approximately 7% showed evidence of an intermediate relationship with human influence measures. Natural‐history traits were not closely related to the direction of the relationship between abundance and human influence. Nevertheless, pooling species that exhibited any relationship with human influence and comparing them with unrelated species indicated they were significantly smaller, nested closer to the ground, had shorter incubation and fledging times, and tended to be altricial. Our results support the ecosystem‐stress hypothesis for the majority of individual species and for overall species diversity when focusing on anthropogenic land cover. Nevertheless, the great variability in housing units across the land‐cover gradient indicates that an intermediate‐disturbance relationship is also supported. Our findings suggest preemptive conservation action should be taken, whereby areas with little anthropogenic land cover are given conservation priority. Nevertheless, conservation action should not be limited to pristine landscapes because our results showed that native avian richness and the relative abundance of many species peaked at intermediate housing densities and levels of anthropogenic land cover. 相似文献
108.
为了初步研究有机磷农药二嗪磷对鸟类的毒性作用,采用室内饲喂染毒的方法,分析了二嗪磷对鹌鹑、鹧鸪及斑鸠3种鸟脑组织乙酰胆碱酯酶(AChE)活性的影响。鹌鹑、鹧鸪采用经食饲喂,染毒剂量分别为0、40、80、160、320、600mg·kg-1饲料和0、400、800、1600、3200、6000mg·kg-1饲料,试验周期8d;斑鸠采用拌种饲喂(1mL50%二嗪磷乳油拌500g麦种),染毒剂量为0、1.2、2.0、4.0、8.0mg·kg-1体重,一次性染毒后进行常规饲养,试验周期15d。结果表明,二嗪磷对3种鸟脑组织AChE活性均有一定程度的抑制作用:各染毒组死亡鸟AChE活性较对照降低显著(p<0.05,p<0.01),活性抑制率均超过40%;各染毒组存活鸟AChE活性较对照也有所降低,但活性抑制率均未超过20%.以上结果提示,抑制脑组织AChE活性可能是二嗪磷致鸟类死亡的重要原因。 相似文献
109.
Marine Birds as Indicators of Arctic Marine Ecosystem Health: Linking the Northern Ecosystem Initiative to Long-Term Studies 总被引:1,自引:0,他引:1
Mallory ML Gilchrist HG Braune BM Gaston AJ 《Environmental monitoring and assessment》2006,113(1-3):31-48
Marine birds are sensitive indicators of the condition of marine ecosystems in the Arctic, partly because they feed at the top of the arctic food chain. The Northern Ecosystem Initiative (NEI) recently supported four separate studies that investigated aspects of Arctic marine bird science which simultaneously addressed goals of the NEI to better understand northern ecosystems and their response to environmental stressors. The projects used both scientific and traditional knowledge to examine the relationship between sea-ice, contaminants, and the ecology of marine birds, and to transfer environmental knowledge to students. Results from these investigations confirm that changes are occurring in Arctic environments, and that these are captured through marine bird research. Collectively these studies provided new data that supported NEI objectives of monitoring the health of the Arctic ecosystem, and contributed to Canada's international obligations for Arctic science. 相似文献
110.
Raymond J. O'Connor Tracey E. Walls Robert M. Hughes 《Environmental monitoring and assessment》2000,61(2):207-229
Biological indicators of communitiestypically reflect a common environmental signalreflecting the general condition of the ecosystem, as well asindividual signals by indicators differentiallysensitive to particular environmental conditions. Wedescribe here a method of integrating and interpretingsuch indicators from 19 New England lakes for fivetaxonomic groups (diatoms, benthos, zooplankton, fish,and birds). Our approach provides a systematicstandardized way to integrate multiple metrics fromdifferent taxonomic groups by addressing four elementscrucial to analyzing data from multiple indicators: covariate control, re-scaling of data, standardizing the sign of responses, and dimensional reduction. We evaluated the biologicalmetrics against individual environmental stressors andagainst multivariate physicochemical metricscharacterizing general anthropogenic stress among thelakes. The method detected a response to variationin the gross environmental condition of the lakes thatwas correlated across taxa and metrics. In addition,a differential response to near shore conditions wasdemonstrated for fish. The success of the approach inthis study lends support to its general application toecological monitoring involving complex data sets. 相似文献