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961.
962.
Uncoupling the effects of shade and food resources of vegetation on Mediterranean ants: an experimental approach at the community level 总被引:1,自引:0,他引:1
Vegetation is one of the main factors affecting the composition and structure of ant communities. The effect of vegetation is both by offering food resources and by modifying the proportion of ground cover exposed to shade conditions. However, it is difficult in field studies to uncouple the effects of food resources and shade on animal communities. The goal of this study was to analyze experimentally the effects of vegetation through food and shade supply on the structure and composition of a Mediterranean ant community. We have crossed these two factors in a factorial design where we have eliminated vegetation in experimental treatments and we have simulated the effects of vegetation by manipulating separately the supply of food resources and shade. The expected decrease in ant abundance and richness in plots without food resources but with shade was only partially confirmed by the results, because there was a decrease in the number of ant species but not a significant decrease in overall ant abundance in plots without food resources. We did not confirm the second hypothesis that the decrease in shade while maintaining food resources resulted in an increase of heat-tolerant, subordinate species and, consequently, ant richness. Species composition differed in the different experimental treatments. Stress-tolerant species were abundant in areas without shade and without food resources. Heat-tolerant species were mainly present in plots without shade but with food resources. Finally, species with high requirements of shade and/or food resources were associated to control plots with both shade and food resources from vegetation. Overall, this study provides an experiment that uncouples experimentally shade and food resources and dissects their effects on the whole ant community, and shows that the effects of the two factors are independent and affect different components of ant community structure and composition. 相似文献
963.
964.
Javier Ruiz Lilia Montoya Valle López Ricardo Amils 《Origins of life and evolution of the biosphere》2007,37(3):287-295
Europa’s chaos and lenticulae features may have originated by thermal diapirs related to convective plumes. Warm ice plumes
could be habitable, since their temperature is close to the ice melting temperature. Moreover, thermal plumes intruding into
the lower stagnant lid warm several kilometers of country ice above 230 K for periods of 105 years, and hundreds of meters above 240 K for periods of 104 years. Diapir coalescence generating chaos areas should provide a large zone with temperature above ∼240 K for thousands
of years. A temperature above ∼230 K is potentially interesting for astrobiology, since it corresponds to the lowest temperature
at which microbial metabolic activity in Antarctic ice has been reported. So, the warming by thermal plumes could cause an
aureole of biological activation/reactivation in the country ice. Adaptation of life to either high salinity or low temperature
is similar: it requires the synthesis of compatible solutes, like trehalose or glycerol, which are efficient cryoprotectants.
We therefore propose that the future astrobiological exploration of Europa should include the search for compatible solutes
in chaos and lenticulae features. 相似文献
965.
966.
It is not clear whether males in all mammalian species adjust their copulatory behavior when faced with risk of sperm competition
(RSC). Previous work on meadow voles, Microtus pennsylvanicus, indicated that males increase their sperm expenditure but not the number of ejaculations in the presence of odors of a conspecific
male. The present study follows up on this work and asks whether male meadow voles modify any aspect of their copulatory behavior
when they face a RSC. We examined 46 variables of copulatory behavior and found that the presence of odors from a conspecific
male did not affect any of these variables. Thus, male meadow voles, unlike some other species of mammals, do not adjust their
copulatory behavior when exposed to cues associated with an elevated RSC. 相似文献
967.
Lyly G. Luhachack Orane Visvikis Amanda C. Wollenberg Adam Lacy-Hulbert Lynda M. Stuart Javier E. Irazoqui 《PLoS pathogens》2012,8(7)
Understanding host defense against microbes is key to developing new and more effective therapies for infection and inflammatory disease. However, how animals integrate multiple environmental signals and discriminate between different pathogens to mount specific and tailored responses remains poorly understood. Using the genetically tractable model host Caenorhabditis elegans and pathogenic bacterium Staphylococcus aureus, we describe an important role for hypoxia-inducible factor (HIF) in defining the specificity of the host response in the intestine. We demonstrate that loss of egl-9, a negative regulator of HIF, confers HIF-dependent enhanced susceptibility to S. aureus while increasing resistance to Pseudomonas aeruginosa. In our attempt to understand how HIF could have these apparently dichotomous roles in host defense, we find that distinct pathways separately regulate two opposing functions of HIF: the canonical pathway is important for blocking expression of a set of HIF-induced defense genes, whereas a less well understood noncanonical pathway appears to be important for allowing the expression of another distinct set of HIF-repressed defense genes. Thus, HIF can function either as a gene-specific inducer or repressor of host defense, providing a molecular mechanism by which HIF can have apparently opposing roles in defense and inflammation. Together, our observations show that HIF can set the balance between alternative pathogen-specific host responses, potentially acting as an evolutionarily conserved specificity switch in the host innate immune response. 相似文献
968.
969.
970.
Localization of eukaryotic initiation factor 2 in neuron primary cultures and established cell lines
Maria V. T. Lobo F. Javier M. Alonso Susana Rodriguez Alberto Alcazar Elena Martin Francisco Munoz Rafael G-Santander Matilde Salinas Juan L. Fando 《The Histochemical journal》1997,29(6):453-468
Eukaryotic initiation factor 2 (eIF-2) is a heterotrimeric protein with subunits α, β and γ that forms a ternary complex with
Met-tRNA and GTP. It promotes the binding of Met-tRNA to ribosomes and controls translational rates via phosphorylation/dephosphorylation
mechanisms. By means of immunofluorescence and post-embedding immunocytochemistry of intact cells and quantitative immunoblotting
of cell extracts, the cellular distribution of the initiation factor has been examined in primary neuronal cultures as well
as in two established cell lines: PC12 phaeochromocytoma cells and rat pituitary GH4C1 cells. Our results indicated that the
initiation factor is located not only in the cytoplasm but also in the nuclei of the cultured neurons and cell lines. In the
cytoplasm, immunocytochemical studies reveal that the factor is present mainly in those areas that are rich in ribosomes.
In the nucleus, the immunolabelling of eukaryotic initiation factor 2 verified the presence of gold particles in both nucleolar
and extranucleolar areas. The specific distribution of this factor on both sides of the nuclear envelope suggests that it
might have some nuclear-related function(s) besides its already known role in the control of translation 相似文献