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Peter B. Banks  Fiona Powell 《Oikos》2004,106(1):176-184
There is strong debate over whether the intrinsic traits of individuals or the extrinsic environment exert the greater influence on small mammal population dynamics. We test the roles of maternal effects (an intrinsic factor) and predation risk (an extrinsic factor) in the population dynamics of wild strain house mice using a 2-factor enclosure experiment. Pre-release supplemental feeding with a high-fat diet created female treatment founders that were 6–10% heavier than controls, a condition that we predicted would be passed on as a maternal effect. Predation risk was enhanced using regular application of predator (red fox Vulpes vulpes ) scats. Founder populations of six females and six males released into eight, 15×15 m enclosures showed near exponential population growth over 17 weeks (maximum 3 generations). But there were no responses to either treatment in terms of survival, inherited body weights, fecundity or population size. We suggest that elevated maternal condition may have only minor and transient intergenerational effects with little long-term consequence. We also suggest that the general significance of predator scats as a cue to predation risk to alter prey behaviour may have been overestimated. Hence our results question the role of either factor in causing long-term responses that influence condition to affect population processes.  相似文献   
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Purine alkaloid catabolism pathways in young, mature and agedleaves of tea (Camellia sinensis L.) were investigated by incubatingleaf sections with 14C-labelled theobromine, caffeine, theophyllineand xanthine. Incorporation of label into CO2 was determinedand methanol-soluble metabolites were analysed by high-performanceliquid chromatography-radiocounting and thin layer chro-matography.The data obtained demonstrate that theobromine is the immediateprecursor of caffeine, which accumulates in tea leaves becauseits conversion to theophylline is the rate limiting step inthe purine alkaloid catabolism pathway. The main fate of [8-14C]theophyllineincubated with mature and aged leaves, and to a lesser extentyoung leaves, is conversion to 3-methylxanthine and onto xanthinewhich is degraded to 14CO2 via the purine catabolism pathway.However, with young leaves, sizable amounts of [8-14C]-theophyllinewere salvaged for the synthesis of caffeine via a 3-methylxanthine  相似文献   
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There are too many kinds of organisms to be able to study and manage each, yet the loss of a single species can sometimes unravel an ecosystem. Such `fusewire species'– critical in the same sense that an electrical fuse can cut out a whole circuit – would be a rewarding focus for research and management effort. However, this approach can only be effective if these `fusewires' represent but a small proportion of the number of species in the system.  

Aim


To demonstrate methods for measuring what proportion of the species in a system are critical to ecosystem function.  

Methods


The prevalence of fusewire species was measured in manipulative experiments on an aquatic microcosm.  

Results


No single genus deletion caused changes in key characteristics of the system.  

Main conclusions


Comparison of these results with other published studies shows that the proportion of critical fusewire species varies amongst different ecosystems. The oxidation pond microcosms were shown to contain no single species indispensable to system function. They appear to be ill-suited to a management strategy which focuses on priority eukaryote species. However, a single study provides no evidence that this result is general or even typical of other kinds of ecosystems; it is presented here as an empirical model. Other methods of investigation are available; they are less experimentally rigorous but more practical. These could provide important guidance in planning an approach to management in a particular ecosystem.  相似文献   
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Junctional communication has long been suggested to play a role in coordinating the development of multicellular tissues. A better understanding of the patterns of communication between cells in such tissues is important for the identification of areas where this process may have a role. We have investigated the patterns of communication in cultures of human epidermal keratinocytes by iontophoretic injection of Lucifer Yellow CH, using involucrin expression as a marker of cells undergoing terminal differentiation. Cells that lack involucrin (i.e., the basal, proliferating cells) transfer dye preferentially to other involucrin-negative cells, whereas involucrin-positive cells either are not coupled or transfer dye with similar frequency to involucrin-positive and involucrin-negative neighbors. This decrease in communication associated with terminal differentiation was observed in both the presence and the absence of assembled desmosomes. Our observations lead us to speculate that loss of junctional communication may influence the commitment of basal keratinocytes to terminal differentiation.  相似文献   
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Females of the polyphagous, ectoparasitoid, Exeristes roborator (F.) (Hymenoptera: Ichneumonidae), learned an olfactory stimulus associated with an artificial host microhabitat in the laboratory. In a two-choice olfactometer, females previously given hosts only in association with one stimulus showed a greater tendency to visit exclusively, and spend time in, chambers containing a source of that stimulus, than control females. Learning of olfactory cues could act in conjunction with learning of visual cues to allow the parasitoid to identify accurately microhabitats that experience has taught it contain hosts. It could also allow the parasitoid to identify these resources when visual cues are not available.
Résumé Nous avons supposé que les femelles polyphages de l'ichneumonide ectoparasite, E. roborator (F.), pourraient apprendre les stimuli olfactifs liés au microhabitat artificiel dans lequel elles avaient attaqué leur hôte. 4 lots de femelles ont été placés dans des conditions différentes: le microhabitat des hôtes du premier lot était du Parafilm imprégné d'odeur de pomme; celui des hôtes du second était un Parafilm non traité. Les hôtes des lots témoins 3 et 4 étaient présentés respectivement avec les deux microhabitats et sans aucun microhabitat. Placées dans un olfactomètre statique contenant du Parafilm traité à la pomme et du Parafilm vierge, des femelles du lot 1 ont eu tendance à ne visiter que l'enceinte contenant du Parafilm traité à la pomme, elles ont passé environ 75% de leur temps dans cette enceinte. A l'opposé, les femelles des 3 autres lots ont eu tendance à ne visiter que l'enceinte sans odeur de pomme, et elles n'ont passé que 34 à 46% de leur temps dans l'enceinte traitée à la pomme. Les différences entre les réactions du lot 1 et des autres lots sont significatives, mais entre les lots 2, 3 et 4, elles ne le sont pas. Une expérience témoin confirme que les préférences des femelles du lot 1 ne sont pas innées; E. roborator a donc appris à reconnaitre les stimuli olfactifs du microhabitat sentant la pomme. L'apprentissage des signaux olfactifs liés au microhabitat de l'hôte pourrait s'effectuer seul ou en relation avec l'apprentissage de signaux visuels permettant au parasitoïde d'identifier avec précision les microhabitats d'un hôte convenable.
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