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131.
Comparisons of forager distributions from matched honey bee colonies in suburban environments 总被引:4,自引:0,他引:4
Keith D. Waddington Thomas J. Herbert P. Kirk Visscher Monica Raveret Richter 《Behavioral ecology and sociobiology》1994,35(6):423-429
We conducted experiments designed to examine the distribution of foraging honey bees (Apis mellifera) in suburban environments with rich floras and to compare spatial patterns of foraging sites used by colonies located in the same environment. The patterns we observed in resource visitation suggest a reduced role of the recruitment system as part of the overall colony foraging strategy in habitats with abundant, small patches of flowers. We simultaneously sampled recruitment dances of bees inside observation hives in two colonies over 4 days in Miami, Florida (1989) and from two other colonies over five days in Riverside, California (1991). Information encoded in the dance was used to determine the distance and direction that bees flew from the hive for pollen and nectar and to construct foraging maps for each colony. The foraging maps showed that bees from the two colonies in each location usually foraged at different sites, but occasionally they visited the same patches of flowers. Each colony shifted foraging effort among sites on different days. In both locations, the mean flight distances differed between colonies and among days within colonies. The flight distances observed in our study are generally shorter than those reported in a similar study conducted in a temperate deciduous forest where resources were less dense and floral patches were smaller. 相似文献
132.
The present paper describes the isolation and identification of a new metabolite of hexachlorobenzene (HCB), which is N-acetyl-S-(pentachlorophenyl)cysteine (PCC), frequently named pentachlorophenylmercapturic acid or 2-acetamido-3-(pentachlorophenylmercapto)propionic acid. PCC has been detected in and identified from rat urine. The syntheses of PCC and the isomeric tetrachlorophenylmercapturic acids (TCC) are described in the following paper. 相似文献
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134.
Topp R Cyrys J Gebefügi I Schnelle-Kreis J Richter K Wichmann HE Heinrich J;INGA Study Group 《Journal of environmental monitoring : JEM》2004,6(10):807-812
Studies on health effects of air pollutants ideally define exposure through the collection of air samples in the participants' homes. Concentrations derived from these samples are then considered as an estimate for the average concentration of air pollutants in the homes. Conclusions drawn from such studies therefore depend very much on the validity of the measured air pollution concentrations. In this paper we analysed repeated BTEX and NO(2) measurements with a time period of several months lying between the two conducted home visits. We investigated the variability of their concentrations over time by determining correlation coefficients and calculating within- and between-home variances. Our population consisted of 631 homes of participants from two cohort studies within the framework of the German study on Indoor Factors and Genetics in Asthma. Air pollutants were measured using passive samplers both indoors and outdoors. The measured BTEX concentrations were poorly correlated, with Pearson's correlation coefficient r ranging from -0.19 to 0.27. Additionally, a considerable seasonal effect could be observed. A higher correlation was found for the NO(2) concentrations with r ranging between 0.24 and 0.55. For the BTEX, the between-home variance was bigger than the within-home variance, for NO(2) both variances were of about the same order. Our results indicate that in a setting of moderate climate like in Germany, the variability of BTEX and NO(2) concentrations over time is high and a single measurement is a poor surrogate for the long-term concentrations of these air pollutants. 相似文献
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136.
The Science of Nature - 相似文献
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138.
Mooshammer M Wanek W Schnecker J Wild B Leitner S Hofhansl F Blöchl A Hämmerle I Frank AH Fuchslueger L Keiblinger KM Zechmeister-Boltenstern S Richter A 《Ecology》2012,93(4):770-782
Resource stoichiometry (C:N:P) is an important determinant of litter decomposition. However, the effect of elemental stoichiometry on the gross rates of microbial N and P cycling processes during litter decomposition is unknown. In a mesocosm experiment, beech (Fagus sylvatica L.) litter with natural differences in elemental stoichiometry (C:N:P) was incubated under constant environmental conditions. After three and six months, we measured various aspects of nitrogen and phosphorus cycling. We found that gross protein depolymerization, N mineralization (ammonification), and nitrification rates were negatively related to litter C:N. Rates of P mineralization were negatively correlated with litter C:P. The negative correlations with litter C:N were stronger for inorganic N cycling processes than for gross protein depolymerization, indicating that the effect of resource stoichiometry on intracellular processes was stronger than on processes catalyzed by extracellular enzymes. Consistent with this, extracellular protein depolymerization was mainly limited by substrate availability and less so by the amount of protease. Strong positive correlations between the interconnected N and P pools and the respective production and consumption processes pointed to feed-forward control of microbial litter N and P cycling. A negative relationship between litter C:N and phosphatase activity (and between litter C:P and protease activity) demonstrated that microbes tended to allocate carbon and nutrients in ample supply into the production of extracellular enzymes to mine for the nutrient that is more limiting. Overall, the study demonstrated a strong effect of litter stoichiometry (C:N:P) on gross processes of microbial N and P cycling in decomposing litter; mineralization of N and P were tightly coupled to assist in maintaining cellular homeostasis of litter microbial communities. 相似文献
139.
Jeanny?Richter Sophie?Helbing Silvio?Erler H.?Michael?G.?LattorffEmail author 《Behavioral ecology and sociobiology》2012,66(5):791-796
Social insects are prone to attack by parasites as they provide numerous resources of food and brood, homeostatic nest conditions
and a high density of individuals, enhancing the transmission of parasites. The defence of social insects might occur at different
levels, the individual and the group. Individual defence occurs in part via the innate immune system resulting in the expression
of antimicrobial substances. Group level defences, summarised as ‘social immunity’, represent a suite of behavioural and organisational
features. Here, all effects contributing to social immunity except for the social context were removed from bumblebee (Bombus terrestris) workers, kept either in groups or solitarily. The gene expression of six effector molecules of the immune system was monitored
in both groups and in controls from the same source colonies. The social treatment has a highly significant effect on immune
gene expression, with groups exhibiting higher levels of two antimicrobial peptides (AMPs) and two lysozymes. Phenoloxidase
is affected at the regulatory level, with a strong upregulation of its suppressor Spn27A in groups suggesting a trade-off
with antimicrobial activity. AMPs are strongly upregulated in groups, whereas lysozymes are strongly downregulated in solitary
treatments suggesting another trade-off. Clearly, social immunity impacts elements of individual immunity. 相似文献
140.
Andries Richter Daan van Soest Johan Grasman 《Journal of Environmental Economics and Management》2013
Real world observations suggest that social norms of cooperation can be effective in overcoming social dilemmas such as the joint management of a common pool resource—but also that they can be subject to slow erosion and sudden collapse. We show that these patterns of erosion and collapse emerge endogenously in a model of a closed community harvesting a renewable natural resource in which individual agents face the temptation to overexploit the resource, while a cooperative harvesting norm spreads through the community via interpersonal relations. We analyze under what circumstances small changes in key parameters (including the size of the community, and the rate of technological progress) trigger catastrophic transitions from relatively high levels of cooperation to widespread norm violation—causing the social–ecological system to collapse. 相似文献