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91.
JOEL BERGER STEVEN L. CAIN ELLEN CHENG PETER DRATCH KEVIN ELLISON JOHN FRANCIS HERBERT C. FROST SCOTT GENDE CRAIG GROVES WILLIAM A. KARESH ELAINE LESLIE GARY MACHLIS RODRIGO A. MEDELLIN REED F. NOSS KENT H. REDFORD MICHAEL SOUKUP DAVID WILCOVE STEVE ZACK 《Conservation biology》2014,28(1):4-12
Public agencies sometimes seek outside guidance when capacity to achieve their mission is limited. Through a cooperative agreement and collaborations with the U.S. National Park Service (NPS), we developed recommendations for a conservation program for migratory species. Although NPS manages ~36 million hectares of land and water in 401 units, there is no centralized program to conserve wild animals reliant on NPS units that also migrate hundreds to thousands of kilometers beyond parks. Migrations are imperiled by habitat destruction, unsustainable harvest, climate change, and other impediments. A successful program to counter these challenges requires public support, national and international outreach, and flourishing migrant populations. We recommended two initial steps. First, in the short term, launch or build on a suite of projects for high‐profile migratory species that can serve as proof to demonstrate the centrality of NPS units to conservation at different scales. Second, over the longer term, build new capacity to conserve migratory species. Capacity building will entail increasing the limited knowledge among park staff about how and where species or populations migrate, conditions that enable migration, and identifying species’ needs and resolving them both within and beyond parks. Building capacity will also require ensuring that park superintendents and staff at all levels support conservation beyond statutory borders. Until additional diverse stakeholders and a broader American public realize what can be lost and do more to protect it and engage more with land management agencies to implement actions that facilitate conservation, long distance migrations are increasingly likely to become phenomena of the past. Optimismo y Retos para la Conservación Científicamente Basada de Especies Migratorias Dentro y Fuera de Parques Nacionales de E.U.A. 相似文献
92.
93.
Indirect Effects of Biological Control on Plant Diversity Vary across Sites in Montana Grasslands 总被引:3,自引:0,他引:3
Abstract: Biological control with specialist, nonindigenous, herbivorous insects is an important option for controlling invasive exotic plants in wildlands and nature reserves. It is assumed that biological control agents will reduce the dominance of the target weed, thereby increasing the native diversity of the associated plant community. However, this hypothesis has rarely been tested. We introduced Aphthona nigriscutis into grassland sites infested with the invasive exotic species Euphorbia esula L. on a nature reserve in Montana (U.S.A.). Two sites with better soil had been treated previously with herbicide, whereas two other sites had not. We measured the density and biomass of Euphorbia vegetative and flowering stems and number of native and exotic shrubs, grass-like plants, and forbs in 48 microplots in Aphthona release and control macroplots at each site. After 5 years, Aphthona release was associated with a 33–39% decline in Euphorbia aboveground biomass compared with controls at all sites. Other effects of the biocontrol depended on the site. Biocontrol slowed the recovery of species diversity at the sites previously treated with herbicide but slowed the loss of diversity at sites without a history of herbicide. Biocontrol introduction was not associated with a disproportionate increase in nontarget exotic species. Release of Aphthona caused a decline in the biomass of flowering stems relative to controls at good-soil, previous-herbicide sites but was associated with a relative increase in flower stem mass at poor-soil, no-herbicide sites. Our results suggest that biocontrol reductions in weed dominance will not always be associated with increased species diversity. More emphasis should be placed on conserving desirable communities and less on simple weed control. Monitoring of community-level effects should accompany biocontrol introductions on nature reserves. 相似文献
94.
PETER A. RONA 《Natural resources forum》1983,7(4):329-338
The theory of plate tectonics is briefly reviewed with reference to the recognized association between types of mineral (metals) and energy (hydrocarbons, geothermal) resources that may occur at sites along plate boundaries submerged beneath the oceans. An immense gap in knowledge, technology and economics exists between the potential for mineral or energy resources to occur and the development of the resource as a commercial prospect. The real benefit of mineral discoveries such as polymetallic sulfides at submerged plate boundaries is to feed back information from the seabed to guide exploration for analogous deposits on land. A world map is presented showing the location of submerged plate boundaries and a 200 nautical mile-wide offshore zone. La théorie de la tectonique en plaques est examinée brièvement à la lumière d'associations connues entre les types de mineraux (métaux) et les ressources énergétiques (hydrocarbures, géothermie) qui peuvent se manifester sur des sites au long des plaques submergées par les océans. Il existe une lacune importante en matière de connaissances et de données techniques et économiques entre, d'une part, la presence potentielle de ressources minerales ou energétiques, et d'autre part, la développment de ces ressources dans une perspective de commercialisation. Le benefice réel de découvertes de mineraux tels que les sulfures polymetalliques au long des plaques est celui de fournir des données en provenance du fond de la mer pour l'orientation d'explorations de gisements analogues sur terre ferme. La teoría de placas tectónicas son revisadas brevemente con referencia a la conocida asociación que existe entre tipos de minerales (metales) y energía (hidrocarburos, geotermia) que puedan existir a lo largo de los bordes de placas sumergidas bajo los océanos. Existe un gran vacío de conocimiento, tecnológico y económico, entre el potencial de recursos que pueden existir y el desarrollo comercial de estos recursos. Se espera que los descubrimientos de minerales tales como el de los sulfuros polometálicos en placas sumergidas proveerá información para la exploración de depoAsitos análogos en tierra firme. 相似文献
95.
Individual- and Assemblage-Level Effects of Anthropogenic Sedimentation on Snails in Lake Tanganyika 总被引:5,自引:0,他引:5
PETER B. McINTYRE † ELLINOR MICHEL‡ KRISTIN FRANCE§ ADAM RIVERS‡‡ PAUL HAKIZIMANA†† ANDREW S. COHEN 《Conservation biology》2005,19(1):171-181
Abstract: Human impacts on aquatic biodiversity are often measured at the assemblage or community level, although it has been suggested that individual-level measures are more sensitive. We evaluated the effects of anthropogenic sedimentation on endemic snails in Lake Tanganyika, East Africa, by comparing assemblage-level (i.e., species richness, evenness, and abundance) and individual-level (i.e., frequencies of predation and parasitism, fecal organic content, life history) data between sediment-disturbed and reference sites. Previous studies have indicated that sedimentation kills snails and reduces mollusc diversity in this system, but we found little evidence of changes in species richness, evenness, or snail abundance at the levels of sedimentation recorded. In contrast, individual-level data revealed a variety of differences associated with sedimentation. Frequencies of shell scarring by predatory crabs and castration by parasitic trematodes were significantly lower at disturbed sites, indicating shifts in interspecific interactions. Snails ingested large amounts of inorganic sediments at disturbed sites, suggesting a reduction in food quality. In addition, sedimentation was associated with a large downward shift in size distribution within some species and reproduction at smaller size. These strong patterns in individual-level data contrast with the lack of effects at the assemblage level. We argue that incorporating individual-level measures will often enhance the sensitivity of impact surveys and may reveal effects of disturbance on important interspecific interactions. 相似文献
96.
Abstract: Globally, ecosystems are under increasing anthropogenic pressure; thus, many are at risk of elimination. This situation has led the International Union for Conservation of Nature (IUCN) to propose a quantitative approach to ecosystem‐risk assessment. However, there is a need for their proposed criteria to be evaluated through practical examples spanning a diverse range of ecosystems and scales. We applied the IUCN's ecosystem red‐list criteria, which are based on changes in extent of ecosystems and reductions in ecosystem processes, to New Zealand's 72 naturally uncommon ecosystems. We aimed to test the applicability of the proposed criteria to ecosystems that are naturally uncommon (i.e., those that would naturally occur over a small area in the absence of human activity) and to provide information on the probability of ecosystem elimination so that conservation priorities might be set. We also tested the hypothesis that naturally uncommon ecosystems classified as threatened on the basis of IUCN Red List criteria contain more threatened plant species than those classified as nonthreatened. We identified 18 critically endangered, 17 endangered, and 10 vulnerable ecosystems. We estimated that naturally uncommon ecosystems contained 145 (85%) of mainland New Zealand's taxonomically distinct nationally critical, nationally endangered, and nationally vulnerable plant species, 66 (46%) of which were endemic to naturally uncommon ecosystems. We estimated there was a greater number of threatened plant species (per unit area) in critically endangered ecosystems than in ecosystems classified as nonthreatened. With their high levels of endemism and rapid and relatively well‐documented history of anthropogenic change, New Zealand's naturally uncommon ecosystems provide an excellent case‐study for the ongoing development of international criteria for threatened ecosystems. We suggest that interactions and synergies among decline in area, decline in function, and the scale of application of the criteria be used to improve the IUCN criteria for threatened ecosystems. 相似文献
97.
ALEXANDER M. VON BENDA‐BECKMANN PAUL J. WENSVEEN PETTER H. KVADSHEIM FRANS‐PETER A. LAM PATRICK J. O. MILLER PETER L. TYACK MICHAEL A. AINSLIE 《Conservation biology》2014,28(1):119-128
Ramp‐up or soft‐start procedures (i.e., gradual increase in the source level) are used to mitigate the effect of sonar sound on marine mammals, although no one to date has tested whether ramp‐up procedures are effective at reducing the effect of sound on marine mammals. We investigated the effectiveness of ramp‐up procedures in reducing the area within which changes in hearing thresholds can occur. We modeled the level of sound killer whales (Orcinus orca) were exposed to from a generic sonar operation preceded by different ramp‐up schemes. In our model, ramp‐up procedures reduced the risk of killer whales receiving sounds of sufficient intensity to affect their hearing. The effectiveness of the ramp‐up procedure depended strongly on the assumed response threshold and differed with ramp‐up duration, although extending the duration of the ramp up beyond 5 min did not add much to its predicted mitigating effect. The main factors that limited effectiveness of ramp up in a typical antisubmarine warfare scenario were high source level, rapid moving sonar source, and long silences between consecutive sonar transmissions. Our exposure modeling approach can be used to evaluate and optimize mitigation procedures. Modelado de la Efectividad de los Incrementos Graduales en el Nivel de la Fuente para Mitigar Efectos de Sonar sobre Mamíferos Marinos 相似文献
98.
99.
Post-project appraisals (PPAs) can evaluate river restoration schemes in relation to their compliance with design, their short-term
performance attainment, and their longer-term geomorphological compatibility with the catchment hydrology and sediment transport
processes. PPAs provide the basis for communicating the results of one restoration scheme to another, thereby improving future
restoration designs. They also supply essential performance feedback needed for adaptive management, in which management actions
are treated as experiments. PPAs allow river restoration success to be defined both in terms of the scheme attaining its performance
objectives and in providing a significant learning experience. Different levels of investment in PPA, in terms of pre-project
data and follow-up information, bring with them different degrees of understanding and thus different abilities to gauge both
types of success. We present four case studies to illustrate how the commitment to PPA has determined the understanding achieved
in each case. In Moore's Gulch (California, USA), understanding was severely constrained by the lack of pre-project data and
post-implementation monitoring. Pre-project data existed for the Kitswell Brook (Hertfordshire, UK), but the monitoring consisted
only of one site visit and thus the understanding achieved is related primarily to design compliance issues. The monitoring
undertaken for Deep Run (Maryland, USA) and the River Idle (Nottinghamshire, UK) enabled some understanding of the short-term
performance of each scheme. The transferable understanding gained from each case study is used to develop an illustrative
five-fold classification of geomorphological PPAs (full, medium-term, short-term, one-shot, and remains) according to their potential as learning experiences. The learning experience is central to adaptive management but rarely
articulated in the literature. Here, we gauge the potential via superimposition onto a previous schematic representation of
the adaptive management process by Haney and Power (1996). Using PPAs wisely can lead to cutting-edge, complex solutions to
river restoration challenges. 相似文献
100.
PETER KEHRER 《Natural resources forum》1978,2(2):157-169
World fossil energy resources are estimated at about 12,500 times 109 tons of coal equivalent (t.c.e.) of which 900 times 109 t.c.e. are classed as presently recoverable reserves. Future exploration will transform a substantial part of the resources into reserves. Coal is by far the dominant fossil energy. Oilshales and tarsands represent a large energy potential, whose utilization depends on a high energy price level and progress in production technologies. Limits in the availability of oil and gas are visible now for the first time. Low-cost, high-grade uranium reserves are also limited. However, there are large amounts of low-grade uranium resources, which might become recoverable in the future. The use of geothermal energy is currently troubled by problems of technology, costs and environment. 相似文献