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Ecological restoration as a strategy for conserving biological diversity   总被引:1,自引:0,他引:1  
Though the restoration of disturbed ecosystems has so far played a relatively modest role in the effort to conserve biological diversity, there are reasons to suspect that its role will increase and that its contribution to the maintenance of diversity will ultimately prove crucial as techniques are further refined and as pristine areas for preservation become scarcer and more expensive.It is now possible to restore a number of North American communities with some confidence. However, it should be noted that many current efforts to return degraded lands to productive use, like attempts to reclaim land disturbed by mining, try only for rehabilitation to a socially acceptable condition and fall considerably short of actually restoring a native ecological community.Possible uses for restoration in the conservation of biodiversity include not only the creation of habitat on derelict sites, but also techniques for enlarging and redesigning existing reserves. Restoration may even make it possible to move reserves entirely in response to long-term events, such as changes in climate. Restoration in the form of reintroduction of single species to preexisting or restored habitat is also a critical link in programs to conserve species ex situ in the expectation of eventually returning them to the wild. And restoration provides opportunities to increase diversity through activities as diverse as management of utility corridors, transportation rights-of-way, and parks.  相似文献   
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Nearly all research focused on understanding perceptions of climate-related risks to coastal resources has used data collected via mail surveys, online surveys or in-depth qualitative interviews. To compliment previous research, this study focuses on objective perceptions of climate-related risks to coastal resources as measured by respondents’ gaze behavior when viewing images describing or depicting climate-related impacts to coastal resources. We utilize data collected from a survey paired with an eye tracking session to measure perceptions of climate-related risks to coastal resources. We also compare the gaze behavior of liberals and conservatives when viewing an infographic and a digital photograph illustrating climate-related impacts to coastal resources; these included impacts to: 1) abiotic resources; 2) biotic resources; 3) built infrastructure; and 4) recreation opportunities. Survey data indicate liberal participants believed climate-related risks to all four types of impacts were more serious relative to conservative participants. However, eye tracking data revealed both liberal and conservative participants spent an equivalent amount of time viewing the four types of impacts. Consequently, differences in the extent to which liberals and conservatives perceive climate-related risks to coastal resources may be attributable to differences in how the two groups evaluate each of the specific impacts. Eye tracking data also revealed liberal participants noticed impacts to biotic resources faster than conservative participants. Conversely, conservative participants noticed impacts to built infrastructure faster than liberal participants. The practical implications of these findings are noteworthy: climate change communicators should target messages based on the predominant political ideology of their audience or include both biotic and built infrastructure impacts in their messages to capture wider audiences.  相似文献   
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The landscape of the conterminous United States has changed dramatically over the last 200 years, with agricultural land use, urban expansion, forestry, and other anthropogenic activities altering land cover across vast swaths of the country. While land use and land cover (LULC) models have been developed to model potential future LULC change, few efforts have focused on recreating historical landscapes. Researchers at the US Geological Survey have used a wide range of historical data sources and a spatially explicit modeling framework to model spatially explicit historical LULC change in the conterminous United States from 1992 back to 1938. Annual LULC maps were produced at 250-m resolution, with 14 LULC classes. Assessment of model results showed good agreement with trends and spatial patterns in historical data sources such as the Census of Agriculture and historical housing density data, although comparison with historical data is complicated by definitional and methodological differences. The completion of this dataset allows researchers to assess historical LULC impacts on a range of ecological processes.  相似文献   
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When the costs of parental care do not scale with the number of offspring being cared for, inclusion of non-descendant young into broods can be advantageous, leading to systems of alloparental care. However, if the cost of care scales with the number of offspring, selection may act against misdirected parental care. The spiny chromis, Acanthochromis polyacanthus, is a marine fish with extended biparental care, and broods that increase in size over the care period strongly suggest that alloparental care occurs in this species. However, A. polyacanthus parents directly provision their offspring by producing ectodermal mucus for their fry to feed on. The costs of such provisioning may scale with brood size, potentially increasing the costs of parental care. Using wild A. polyacanthus pairs, we tested whether foreign offspring are accepted into established broods, and measured how brood defence effort and mucal feeding scale with brood size. We found that A. polyacanthus discriminate between their own and foreign young, vigorously expelling experimentally introduced foreign offspring. Although defensive effort did not scale with brood size, mucal feeding was strongly dependent on brood size, and this increasing cost of care likely acts as the primary selective force on parental discrimination and rejection of foreign fry in A. polyacanthus.  相似文献   
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Wildlife corridors as a connected subgraph problem   总被引:1,自引:0,他引:1  
Wildlife corridors connect areas of biological significance to mitigate the negative ecological impacts of habitat fragmentation. In this article we formalize the optimal corridor design as a connected subgraph problem, which maximizes the amount of suitable habitat in a fully connected parcel network linking core habitat areas, subject to a constraint on the funds available for land acquisition. To solve this challenging computational problem, we propose a hybrid approach that combines graph algorithms with Mixed Integer Programming-based optimization. We apply this technique to the design of corridors for grizzly bears in the U.S. Northern Rockies, illustrating the underlying computational complexities by varying the granularity of the parcels available for acquisition. The approach that is introduced is general and can be applied to other species or other similar problems, such as those occurring in social networks.  相似文献   
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