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Abstract: Marine protected areas (MPAs) have been highlighted as a means toward effective conservation of coral reefs. New strategies are required to more effectively select MPA locations and increase the pace of their implementation. Many criteria exist to design MPA networks, but generally, it is recommended that networks conserve a diversity of species selected for, among other attributes, their representativeness, rarity, or endemicity. Because knowledge of species’ spatial distribution remains scarce, efficient surrogates are urgently needed. We used five different levels of habitat maps and six spatial scales of analysis to identify under which circumstances habitat data used to design MPA networks for Wallis Island provided better representation of species than random choice alone. Protected‐area site selections were derived from a rarity–complementarity algorithm. Habitat surrogacy was tested for commercial fish species, all fish species, commercially harvested invertebrates, corals, and algae species. Efficiency of habitat surrogacy varied by species group, type of habitat map, and spatial scale of analysis. Maps with the highest habitat thematic complexity provided better surrogates than simpler maps and were more robust to changes in spatial scales. Surrogates were most efficient for commercial fishes, corals, and algae but not for commercial invertebrates. Conversely, other measurements of species‐habitat associations, such as richness congruence and composition similarities provided weak results. We provide, in part, a habitat‐mapping methodology for designation of MPAs for Pacific Ocean islands that are characterized by habitat zonations similar to Wallis. Given the increasing availability and affordability of space‐borne imagery to map habitats, our approach could appreciably facilitate and improve current approaches to coral reef conservation and enhance MPA implementation.  相似文献   
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Based on a study of Little Saigon, an ethnic enclave in Westminster, California, this paper examines the physical, social, symbolic and emotional significance of such places in the lives of immigrants. We focus on three specific aspects of the ethnic enclave: architectural elements, everyday social interaction within the enclave, and public ritual events. We highlight how the built architectural environment and the immigrants' social, commercial, and ritual activities interact to create and sustain a sense of place, foster community identity, and structure social relations. We conclude that ethnic enclaves constitute an important aspect of an immigrant's place identity enabling him/her to simultaneously remain connected to the places left behind and yet appropriating and forging significant new place ties.  相似文献   
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本研究依托复旦大学意愿—习惯垃圾分类行为理论对上海市不同区域、不同类型的55个社区进行大范围调研,识别出包括设施、志愿者、保洁员、启动、定时定点、租户、管理和绿色账号在内的8个社区内影响居民垃圾分类效果的关键措施指标,并且通过指标与社区实际分类效果的相关性结果证明了该指标体系的有效性。研究结果还表明,上海市社区内影响垃圾分类效果的最主要的措施指标是硬件设施、保洁人员、“定时定点”制度和志愿者。研究结果一方面可以供上海市基层政府人员使用指标体系来进行监督,另一方面也为社区因地制宜地采取措施来提高和巩固社区垃圾分类效果提供了具体的科学支撑。  相似文献   
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This study examined the toxicity of irgarol, individually and in binary mixtures with three other pesticides (the fungicide chlorothalonil, and the herbicides atrazine and 2,4-D), to the marine phytoplankton species Dunaliella tertiolecta. Standard 96-h static algal bioassays were used to determine pesticide effects on population growth rate. Irgarol significantly inhibited D. tertiolecta growth rate at concentrations ≥ 0.27 μ g/L. Irgarol was significantly more toxic to D. tertiolecta than the other pesticides tested (irgarol 96 h EC50 = 0.7 μ g/L; chlorothalonil 96 h EC50 = 64 μ g/L; atrazine 96 h EC50 = 69 μ g/L; 2,4-D 96 h EC50 = 45,000 μ g/L). Irgarol in mixture with chlorothalonil exhibited synergistic toxicity to D. tertiolecta, with the mixture being approximately 1.5 times more toxic than the individual compounds. Irgarol and atrazine, both triazine herbicides, were additive in mixture. The toxicity threshold of 2,4-D was much greater than typical environmental levels and would not be expected to influence irgarol toxicity. Based on these interactions, overlap of certain pesticide applications in the coastal zone may increase the toxicological risk to resident phytoplankton populations.  相似文献   
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Abstract:  Human activities continue to eliminate or degrade wetlands that provide rich habitat for many species. Compensatory mitigation, including creation of new wetlands, restoration of previously degraded wetlands, or preservation of existing wetlands, is one policy option that seeks to maintain no net loss of wetland habitat. Public support of wetland mitigation is essential because the public incurs the cost for many mitigation projects in the form of higher taxes. Therefore, public preferences should be considered when decisions are made about wetland mitigation options. We used a contingent-choice survey in Rhode Island to identify factors affecting public support for different types of compensatory wetland mitigation. Results were based on 640 survey responses. The amount of wetland lost during the original development project had no significant effect on the preferred mitigation alternative. Preferences for preservation, restoration, and no-action alternatives varied according to respondents' gender, education, and income. Certain general considerations applied, however, regardless of mitigation type. Respondents were willing to incur increases in taxes and fees for most mitigation projects. The larger the mitigation project and the lower the cost, the more likely it was to gain public support. The presence of endangered species contributed to public support, but less significantly than public access. Public access can be critical to public support, particularly if the size of the wetland is small or the cost is high. If the cost of providing public access, such as a boardwalk or viewing tower, is relatively small, the gain in public support for mitigation expenditures may well allow a substantial expansion of the area involved in mitigation projects and thus a greater increase in the amount of habitat conservation.  相似文献   
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The Population Dynamics and Conservation of Primate Populations   总被引:4,自引:0,他引:4  
Abstract: Primates are among the most threatened taxa, with more than half of all species in jeopardy. In this paper we develop population models to use the kind of data on wild primates that primatologists actually collect. Our survey of recentprimate journals suggests that the average field study uses 1.5 years of data from 50 animals The models are based on the simple Leslie-Lefkovitch matrix. They suggest a simple method that allows assessment from a few years'data, of whether a population is collapsing and requires intervention To a good approximation, populations will collapse when adult survival, per inter-birth interval, is less than 70 percent.
Modifications of the basic model incorporate more realistic assumptions about social organization and densitydependent resource limitation. These allow us to identify population densities at which potential Allee effects operate, and permit more precise estimates of the minimum population sizes and compositions required for successful reintroductions to the wild The most important result is that populations of primates that live in small family groups may be more prone to "demographic" extinction than are more promiscuous species that live in more extended groups.  相似文献   
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Abstract: Assessing conservation strategies requires reliable estimates of abundance. Because detecting all individuals is most often impossible in free‐ranging populations, estimation procedures have to account for a <1 detection probability. Capture–recapture methods allow biologists to cope with this issue of detectability. Nevertheless, capture–recapture models for open populations are built on the assumption that all individuals share the same detection probability, although detection heterogeneity among individuals has led to underestimating abundance of closed populations. We developed multievent capture–recapture models for an open population and proposed an associated estimator of population size that both account for individual detection heterogeneity (IDH). We considered a two‐class mixture model with weakly and highly detectable individuals to account for IDH. In a noninvasive capture–recapture study of wolves we based on genotypes identified in feces and hairs, we found a large underestimation of population size (27% on average) occurred when IDH was ignored.  相似文献   
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