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211.
The foundation for the creation of eco-efficiency metrics for industrial impacts on biodiversity is considered. Because biodiversity is the essence of life itself, these metrics are essential for effectiveness in the theory and practice of eco-efficiency, particularly in the case of primary natural resource extraction industries such as fishing and forestry. The case of fishing is examined, with particular attention to by-catch, lost nets, and habitat damage caused by mobile fishing gears. It is appropriate to examine fishing because industrial era impacts on marine biodiversity have been severe and are driving large and deleterious changes in marine ecosystems. For discarded by-catch, it is proposed that an eco-efficient metric for the value per unit mass of discarded fish can be set to be equivalent to that of the market value of the utilized catch. In estimating the eco-efficient value of the catch, the value of the discarded fish is then subtracted from the market value of the catch. Fish killed in lost nets can be treated similarly. It is more difficult to address marine habitat damage by mobile fishing gear, which has the highest potential for ecological injury.By using the approach proposed, negative eco-efficiencies are obtained under circumstances in which the collateral damage to biodiversity exceeds the economic benefit obtained. This is a logical outcome given the long-term effects of biodiversity decline. A metric is also proposed for assessing whether avoidance of harm to biodiversity, in the form of switching fishing gear, is required. Lastly it is proposed that metrics might be developed to provide eco-efficiency credit for companies taking effective actions to improve, or actively participate in, ecosystem-based fisheries management. 相似文献
212.
Kathrin Baumann Harald Maurer Gabriele Rau Martin Piringer Ulrike Pechinger Andr Prvt Markus Furger Bruno Neininger Umberto Pellegrini 《Atmospheric environment (Oxford, England : 1994)》2001,35(36):897
During the Mesoscale Alpine Programme (MAP) special observation period (SOP) between 7 September and 15 November 1999, ground-based and airborne measurements have been conducted in the Rhine valley south of the Lake of Constance to investigate the unstationary aspects of Foehn and related phenomena, like the impact of Foehn on the ozone concentrations in the valley. Foehn events occurred with above-average frequency and high diversity. Foehn induced ozone peaks in October and November are found to be much lower than the September Foehn case of the period. An inversion layer in the lake area with ozone concentrations below 10 ppb often shields the monitoring stations from the Foehn air aloft. Trajectory calculations for the Foehn period between 19 and 24 October 1999 reveal that the Foehn air originated from below 1 to 1.5 km above the Po Basin and the Mediterranean Sea. Tethered balloon soundings in the source area south of the Alps, ozone measurements at the mountain station Jungfraujoch (3580 m a.s.l.) and airborne measurements across the Alpine crests reveal that the ozone levels found in the Foehn air correspond to the concentrations just above the mixing height in the Po Basin and are transported across the Alpine crest within the lowest flow layer. 相似文献
213.
Hegyi Gergely Jenni-Eiermann Susanne Boross Nóra Garamszegi László Zsolt Laczi Miklós Kötél Dóra Krenhardt Katalin Jablonszky Mónika Markó Gábor Nagy Gergely Rosivall Balázs Szász Eszter Török János 《Behavioral ecology and sociobiology》2019,73(6):1-14
Behavioral Ecology and Sociobiology - Cooperation plays a crucial role in primate social life. However, the evolution of large-scale human cooperation from the cognitive fundamentals found in other... 相似文献
214.
Male ornamentation is assumed to have evolved primarily from selection by female mate choice. Yet this is only one possible
reason for ornament evolution. Ornaments might also be useful in aggressive competition by improving opponent assessment between
males, or they might function to enhance signal detection by making males more conspicuous in the environment. We tested both
these ideas in territorial Anolis lizards in which female choice is either absent or secondary to males competing for territories that overlap female home
ranges. Male tail crests only evolved in species in which territory neighbors were distant, consistent with the signal detection
hypothesis. Once the tail crest had evolved, however, it seems to have become a signal in itself, with variation in the frequency
and size of tail crests within species correlating with variables predicted by the aggressive competition hypothesis. Our
study presents an apparent example of a male ornament in which the selection pressure leading to variation among species in
ornament expression is different from the selection pressure acting on variation within species. The Anolis tail crest is therefore likely to be an exaptation. We caution that conclusions made on the evolution of male ornaments are
dependent on the phylogenetic perspective adopted by a study. Studies restricted to single species are useful for identifying
selection pressures in contemporary settings (i.e., the current utility of traits), but may lead to erroneous conclusions
on the factors that initially lead to the origin of traits. 相似文献
215.
Multi-scale marine biodiversity patterns inferred efficiently from habitat image processing 总被引:1,自引:0,他引:1
Mellin C Parrott L Andréfou?t S Bradshaw CJ MacNeil MA Caley MJ 《Ecological applications》2012,22(3):792-803
Cost-effective proxies of biodiversity and species abundance, applicable across a range of spatial scales, are needed for setting conservation priorities and planning action. We outline a rapid, efficient, and low-cost measure of spectral signal from digital habitat images that, being an effective proxy for habitat complexity, correlates with species diversity and requires little image processing or interpretation. We validated this method for coral reefs of the Great Barrier Reef (GBR), Australia, across a range of spatial scales (1 m to 10 km), using digital photographs of benthic communities at the transect scale and high-resolution Landsat satellite images at the reef scale. We calculated an index of image-derived spatial heterogeneity, the mean information gain (MIG), for each scale and related it to univariate (species richness and total abundance summed across species) and multivariate (species abundance matrix) measures of fish community structure, using two techniques that account for the hierarchical structure of the data: hierarchical (mixed-effect) linear models and distance-based partial redundancy analysis. Over the length and breadth of the GBR, MIG alone explained up to 29% of deviance in fish species richness, 33% in total fish abundance, and 25% in fish community structure at multiple scales, thus demonstrating the possibility of easily and rapidly exploiting spatial information contained in digital images to complement existing methods for inferring diversity and abundance patterns among fish communities. Thus, the spectral signal of unprocessed remotely sensed images provides an efficient and low-cost way to optimize the design of surveys used in conservation planning. In data-sparse situations, this simple approach also offers a viable method for rapid assessment of potential local biodiversity, particularly where there is little local capacity in terms of skills or resources for mounting in-depth biodiversity surveys. 相似文献
216.
Early onset of vegetation growth vs. rapid green-up: impacts on juvenile mountain ungulates 总被引:2,自引:0,他引:2
Seasonal patterns of climate and vegetation growth are expected to be altered by global warming. In alpine environments, the reproduction of birds and mammals is tightly linked to seasonality; therefore such alterations may have strong repercussions on recruitment. We used the normalized difference vegetation index (NDVI), a satellite-based measurement that correlates strongly with aboveground net primary productivity, to explore how annual variations in the timing of vegetation onset and in the rate of change in primary production during green-up affected juvenile growth and survival of bighorn sheep (Ovis canadensis), Alpine ibex (Capra ibex), and mountain goats (Oreamnos americanus) in four different populations in two continents. We indexed timing of onset of vegetation growth by the integrated NDVI (INDVI) in May. The rate of change in primary production during green-up (early May to early July) was estimated as (1) the maximal slope between any two successive bimonthly NDVI values during this period and (2) the slope in NDVI between early May and early July. The maximal slope in NDVI was negatively correlated with lamb growth and survival in both populations of bighorn sheep, growth of mountain goat kids, and survival of Alpine ibex kids, but not with survival of mountain goat kids. There was no effect of INDVI in May and of the slope in NDVI between early May and early July on juvenile growth and survival for any species. Although rapid changes in NDVI during the green-up period could translate into higher plant productivity, they may also lead to a shorter period of availability of high-quality forage over a large spatial scale, decreasing the opportunity for mountain ungulates to exploit high-quality forage. Our results suggest that attempts to forecast how warmer winters and springs will affect animal population dynamics and life histories in alpine environments should consider factors influencing the rate of changes in primary production during green-up and the timing of vegetation onset. 相似文献
217.
Rochelle Constantine Debbie Steel Judy Allen Megan Anderson Olive Andrews C. Scott Baker Peta Beeman Daniel Burns Jean-Benoît Charrassin Simon Childerhouse Michael Double Paul Ensor Trish Franklin Wally Franklin Nick Gales Claire Garrigue Nadine Gibbs Peter Harrison Nan Hauser Amanda Hutsel Curt Jenner Micheline-Nicole Jenner Greg Kaufman Anne Macie David Mattila Carlos Olavarría Adrian Oosterman David Paton Michael Poole Jooke Robbins Natalie Schmitt Peter Stevick Alden Tagarino Kirsten Thompson Juney Ward 《Marine Biology》2014,161(5):1087-1093
Understanding the dynamics of population recovery is particularly complex when an organism has multiple, remote breeding and feeding grounds separated by one of the longest known migration routes. This study reports on the most comprehensive assessment of humpback whale (Megaptera novaeangliae) movements between remote Antarctic waters south of New Zealand and east Australia (EA), and the migratory corridors and breeding grounds of Australia and Oceania. A total of 112 individual whales were identified; 57 from microsatellites and 61 by fluke with 23 % (n = 26) matched to sites outside Antarctica. Despite large datasets from other southern regions being included in the comparison, the whales were predominantly linked to EA (n = 24). Only two matches to the Oceania catalogues directly north was surprising; therefore the primary feeding grounds of these endangered whales still remain unknown. The confirmation of the Balleny Islands as an important feeding ground for EA whales could provide an insight into reasons behind the rapid recovery of this population. Determining the feeding grounds of Oceania’s whales may explain whether prey energetics or migration length are limiting factors to their recovery and will allow an understanding of future ecosystem changes in these whales. 相似文献
218.
Eva Landová Jitka Jančúchová-Lásková Veronika Musilová Štěpánka Kadochová Daniel Frynta 《Behavioral ecology and sociobiology》2013,67(7):1113-1122
Ontogenetic changes in antipredator behavior optimize survival of growing animals. Leopard geckos (Eublepharis macularius) respond to a simulated predator either by postural and vocal threats, sometimes followed by biting, or alternatively by a rapid escape. The former “confrontational” and the latter “avoidance” behavior rarely occurs in a sequence; in fact, they represent mutually exclusive defensive strategies. We examined 552 individuals of a leopard gecko (E. macularius) of various ages, from hatching up to adulthood (31 months). Each experimental animal was exposed to a sequence of five “water-spraying” and ten “stick” (stick poking on base of the tail) stimuli, and the emitted behavior was recorded. We analyzed the effects of age, body size, body condition, adult–juvenile coloration, and sex on observed behavioral traits. The results showed that in the case of water-spraying stimulus, the usage of deterrent vocalization or escape tactic was affected by age and condition. In addition to that, using deterrent vocalization was influenced by the coloration of the animal. Stick stimulus evokes antipredator strategies that correspond with age and coloration (deterrent vocalization) and also with standardized body size (escape). Thus, leopard geckos exhibit clear ontogenetic change of defensive strategies, from threat–vocalization–bite strategy prevailing in juveniles to an escape strategy typical for adults. This behavioral change is accompanied by the ontogenetic switch of coloration from presumably warning contrasting light–dark banded pattern of juveniles to a cryptic spotted coloration of the adults. 相似文献
219.
Within the natural world, diversity refers to the variety and variability among living organisms and the ecological complexes in which they occur. Its complexity is measured in terms of variations at genetic, species and ecosystem levels. It plays a critical role in meeting human needs while maintaining the ecological processes upon which our survival depends. This paper agues that such a natural metaphor should be considered in industrial systems in order to realise sustainable development. This article begins by describing natural biodiversity, emphasising its definition and value, and its maintenance. Next, the paper discusses the rationale and mechanisms for encouraging industrial diversity. The authors suggest that this natural metaphor provides a useful guide on how businesses in an industrial system can evolve towards greater resilience and sustainability. 相似文献
220.