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141.
142.
Chelsea L. Wood Margaret Summerside Pieter T. J. Johnson 《Ecology and evolution》2019,9(17):9748-9758
Manipulation experiments are a cornerstone of ecological research, but can be logistically challenging to execute—particularly when they are intended to isolate the ecological role of large, vagile species, like birds. Despite indirect evidence that birds are influential in many ecosystems, large‐scale, multi‐year bird manipulation experiments are rare. When these studies are conducted, they are typically realized with caged or netted exclosures, an approach that can be expensive, risky for wildlife, and difficult to maintain. In cases where caged exclosures are not appropriate, alternate approaches are needed to allow rigorous empirical studies on the ecological role of birds. Here, we present and validate a method for experimentally increasing the abundance and richness of birds at the scale of entire aquatic ecosystems. Unlike bird exclusion, this approach is experimentally tractable, appealing to land managers, and possible to deploy over large spatial scales. We tested the efficacy of our approach for increasing bird abundance and species richness at 16 central California ponds. Based on bird visitation data obtained by summer camera trapping, our approach significantly increased bird species richness and abundance at manipulated ponds compared to control ponds. Attractant treatments mitigated the negative effects of a major drought on bird species richness and generated a near doubling of bird abundance in the presence of attractants. Treatments had no effect on most mammal species, with the exception of ground squirrels, which increased in abundance in the presence of attractants. These results suggest that attractants are effective in increasing bird abundance and richness. We encourage researchers to consider this approach for experimentally isolating the ecological role of birds in aquatic and open terrestrial ecosystems, especially in cases where cost or logistical constraints preclude the use of caged or netted exclosures. 相似文献
143.
Basin-Wide Effects of Game Harvest on Vertebrate Population Densities in Amazonian Forests: Implications for Animal-Mediated Seed Dispersal 总被引:3,自引:0,他引:3
Vertebrate responses to hunting are widely variable for target and nontarget species depending on the history of hunting and productivity of any given site and the life history traits of game species. We provide a comprehensive meta-analysis of changes in population density or other abundance estimates for 30 mid-sized to large mammal, bird and reptile species in 101 hunted and nonhunted, but otherwise undisturbed, Neotropical forest sites. The data set was analyzed using both an unnested approach, based on population density estimates, and a nested approach in which pairwise comparisons of abundance metrics were restricted to geographic groups of sites sharing similar habitat and soil conditions. This resulted in 25 geographic clusters of sites within which 1811 population abundance estimates were compared across different levels of hunting pressure. Average nested changes in abundance across increasingly greater levels of hunting pressure ranged from moderately positive to highly negative. Populations of all species combined declined across greater differences in hunting pressure by up to 74.8 percent from their numeric abundance in less intensively hunted sites, but harvest-sensitive species faired far worse. Of the 30 species examined, 22 declined significantly at high levels of hunting. Body size significantly affected the direction and magnitude of abundance changes, with large-bodied species declining faster in overhunted sites. Frugivorous species showed more marked declines in abundance in heavily hunted sites than seed predators and browsers, regardless of the effects of body size. The implications of hunting for seed dispersal are discussed in terms of community dynamics in semi-defaunated tropical forests. 相似文献
144.
To study the influence of the carbohydrate-moiety of ovalbumin on the formation of the heat-stable conformer S-ovalbumin, ovalbumin is deglycosylated with PNGase-F under native conditions. Although the enzymatic deglycosylation procedure resulted in a complete loss of the ability to bind to Concavalin A column-material, only in about 50% the proteins lost their complete carbohydrate moiety, as demonstrated by mass spectrometry and size exclusion chromatography. Thermal stability and conformational changes were determined using circular dichroism and differential scanning calorimetry and demonstrated at ambient temperature no conformational changes due to the deglycosylation. Also the denaturation temperature of the processed proteins remained the same (77.4 +/- 0.4 degrees C). After heat treatment of the processed protein at 55 degrees C and pH 9.9 for 72 h, the condition that converts native ovalbumin into the heat-stable conformer (S-ovalbumin), only the material with the intact carbohydrate moiety forms this heat-stable conformer. The material that effectively lost its carbohydrate moiety appeared fully denatured and aggregated due to these processing conditions. These results indicate that the PNGase-F treatment of ovalbumin prohibits the formation and stabilization of the heat-stable conformer S-ovalbumin. Since S-ovalbumin in egg protein samples is known to affect functional properties, this work illustrates a potential route to control the quality of egg protein ingredients. 相似文献
145.
Tunneling nanotubes: a new route for the exchange of components between animal cells 总被引:3,自引:0,他引:3
Recently, highly sensitive nanotubular structures mediating membrane continuity between mammalian cells have been discovered. With respect to their peculiar architecture, these membrane channels were termed tunneling nanotubes (TNTs). TNTs could form de novo between animal cells leading to the generation of complex cellular networks. They have been shown to facilitate the intercellular transfer of organelles as well as, on a limited scale, of membrane components and cytoplasmic molecules. It has been proposed that TNTs represent a novel and general biological principle of cell-to-cell communication and it becomes increasingly apparent that they fulfill important functions in the physiological processes of multicellular organisms. 相似文献
146.
Exclusion effects on vegetation characteristics and their correlation to soil factors in the semi-arid rangeland of Mu Us Sandland, China 总被引:1,自引:0,他引:1
Exclusion has been applied as a main measure for re-vegetation all over the world. This paper, by comparing the results of
year-round exclusion, seasonal exclusion, and non-exclusion, quantified the vegetation variations under three different exclusion
measures and their correlation to soil factors. The analysis results for community species component and plant diversity using
multi-response permutation procedures (MRPPs) showed that exclusion did change the species component and increase plant diversity
remarkably, while the period of exclusion had no significant influence on these two community features. The indicator species
analysis and calculation of similarity indices indicated that community for year-round exclusion were becoming xerophytization
and unpalatability, and showed highly spatial heterogeneity of plant species distribution, whereas community for seasonal
exclusion was under stable non-equilibrium condition. Detrended correspondence analysis (DCA) and detrend canonical correspondence
analysis (DCCA) results of relationship between plant species and soil variables demonstrated that soil moisture was a controlling
factor for plant species component, microbiotic soil crust cover, soil organic matter, and soil bulk density had significant
effects on soil moisture, among which microbiotic soil crust was a leading factor owing to its limitation to rainfall infiltration
on the one hand, and its constraints to entrance of herbaceous seeds into soil or to germination of soil seeds on the other
hand. As a result of long-term removal of animal grazing, crust kept intact in year-round exclusion community, which was a
main reason of community xerophytization. It was also obvious from ordination results that some important environmental factors,
such as tempo-spatial change of rainfall and corresponding tempo-spatial change of soil moisture, were neglected during direct
gradient analysis. In addition, biodiversity was close related to soil nutrients as well as to soil moisture condition (soil
water content and crust cover), and it had positive relation to available N, and negative relation to available P. Higher
soil N had advantage to non-leguminous plants growth on nutrition-poor sand land definitely. The impact of P to community
component was unclear and should be studied from plant physiology. Further researches on non-equilibrium theory in semi-arid
rangeland will provide a scientific and flexible animal development paradigm for being implementing livestock fen-raising
and grazing-forbidden policies in China.
__________
Translated from Acta Ecologica Sinica, 2005, 25(12): 3212–3219 [译自: 生态学报] 相似文献
147.
Exclusion has been applied as a main measure for re-vegetation all over the world.This paper,by comparing the results of year-round exclusion,seasonal exclusion,and non-exclusion,quantified the vegetation variations under three different exclusion measures and their correlation to soil factors.The analysis results for community species component and plant diversity using multi-response permutation procedures (MRPPs)showed that exclusion did change the species component and increase plant diversity remarkably,while the period of exclusion had no significant influence on these two community features.The indicator species analysis and calculation of similarity indices indicated that community for year-round exclusion were becoming xerophytization and unpalatability,and showed highly spatial heterogeneity of plant species distribution,whereas community for seasonal exclusion was under stable non-equilibrium condition.Detrended correspondence analysis (DCA)and detrend canonical correspondence analysis (DCCA)results of relationship between plant species and soil variables demonstrated that soil moisture was a controlling factor for plant species component,microbiotic soil crust cover,soil organic matter,and soil bulk density had significant effects on soil moisture,among which microbiotic soil crust was a leading factor owing to its limitation to rainfall infiltration on the one hand,and its constraints to entrance of herbaceous seeds into soil or to germination of soil seeds on the other hand.As a result of long-term removal of animal grazing,crust kept intact in year-round exclusion community,which was a main reason of community xerophytization.It was also obvious from ordination results that some important environmental factors,such as tempo-spatial change of rainfall and corresponding tempo-spatial change of soil moisture,were neglected during direct gradient analysis.In addition,biodiversity was close related to soil nutrients as well as to soil moisture condition (soil water content and crust cover),and it had positive relation to available N,and negative relation to available P.Higher soil N had advantage to non-leguminous plants growth on nutrition-poor sand land definitely.The impact of P to community component was unclear and should be studied from plant physiology.Further researches on nonequilibrium theory in semi-arid rangeland will provide a scientific and flexible animal development paradigm for being implementing livestock fen-raising and grazing-forbidden policies in China. 相似文献
148.
Replicate harvest simulations were conducted in a large natural population of Panax quinquefolius L.␣(Araliaceae) to determine the selective effects of harvest. We investigated how minimum size requirements and the influence
of size on apparency to human harvesters could result in preferential removal of large plants. To determine which plants were
encountered in the large population, harvesters were tracked using GPS as they searched for every legally harvestable, adult
plant they could find. Plants were assigned stage-specific fitness measures based on their contributions to population growth
rate (λ) under three demographically based harvest regimes: no harvest, harvest and harvest removing seeds. Plant size was
codified into a size-index equal to the product of total leaf area and stem height. Heterogeneity of slopes was tested to
determine if the selection gradients (β) describing the relationship between fitness and size varied among the three harvest
regimes. Harvest differentially reduced the fitness of larger plants in one of four individual harvest simulations. The combined
harvest simulation significantly altered the selection regime for size in the population of juvenile and adult (harvestable)
plants. Seed removal by harvesters intensified fitness declines for larger plants. Because larger plants contribute most to
population growth, the selective effects of harvest could result in a shift in the evolutionary dynamics of this species with
significant conservation implications. 相似文献
149.
Ecological knowledge is considered an important factor in environmental policy-making. However, the opportunity for ecologists to influence policy can often occur within discrete time policy windows, and seizing these opportunities has been heavily emphasized as a recent global conservation need. In 2017 the Natura 2000 Conservation Measures have been finalized in Italy, and delineated the management policy and institutional responsibilities of Natura 2000 Sites, after obligations of the EU Habitat Directive. In this timeframe, we developed a multi-scalar hierarchical habitat selection model for wolf reproductive-sites to identify potentially favorable habitat for wolf reproduction in the western Italian Alps, based on 19 years of data. This habitat suitability model was useful for the definition of species conservation requirements within the Natura 2000 Sites, and has been adopted in legislation processes, representing a successful example of ecological modelling fitting into a relevant policy window and informing legal instruments to achieve nature conservation goals. 相似文献
150.
Habitat banking in its many iterations is an established and popular mechanism to deliver environmental offsets. The United States can look back at over 30 years of banking experience with the underlying framework and policies being consistently updated and improved. Given the increased demand in habitat banking, we provide insights into how bank area capacity is distributed across the United States for four different bank targets (wetlands, streams, multiple ecosystems, species) based on information extracted from the Regulatory In-lieu Fee and Bank Information Tracking System, as well as, estimating future capacities and area reserves through a predictive modeling approach based on data from the past 26 years. Future predictions indicate a decrease in available reserves for banks targeting wetlands or multiple ecosystems, with potential bottlenecks relating to large reserves being limited to the southeast and release schedules not catching up to the current and anticipated demand. Banks targeting species or streams are predicted to meet future demand, with species banks (conservation banks) following a different legislative and operational approach based on the listing of endangered species and pro-active approaches with anticipated future demand. Most current reserves for all four bank types are restricted to very few service areas with around one-third of all bank areas still awaiting release, limiting their availability on a broader scale. Strategic planning networks are necessary to meet future demand on a national scale and to identify areas suitable for banking or likely to experience future environmental or developmental stress. 相似文献