308 resultados para SUBSTRATE INTERACTIONS


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Dans le chapitre « Les paradoxes de l'argumentation en contexte d'éducation: s'accorder sur les désaccords », Muller Mirza part de l'idée qu'à la différence des situations ordinaires de désaccords, les dispositifs utilisant l'argumentation dans des contextes d'éducation demandent aux participants précisément de résoudre ces désaccords. Leur sont donc interdites, par contrat plus ou moins implicite, les échappatoires auxquelles nous recourons volontiers dans les discours quotidiens qui permettent d'éviter de problématiser la question en discussion. C'est dire qu'elle aborde directement une difficulté souvent signalée dans les études sur l'argumentation en contexte éducatif : la tension entre d'une part l'expression de points de vue différents, étape nécessaire à la construction des connaissances, et d'autre part la préservation de la relation entre les interlocuteurs, de leurs faces. Le chapitre propose comme objet de discussion le rôle de cette tension dans des situations d'apprentissage en analysant des productions argumentatives réalisées dans le cadre d'un dispositif particulier. Il invite ainsi à une réflexion non seulement sur les ingrédients des dispositifs pédagogiques qui permettraient de prendre en compte cette tension mais aussi sur les méthodes d'analyse des interactions argumentatives. L'étude de cas met en scène des étudiants de master en psychologie sociale, dans le cadre d'un jeu de rôle : ils sont placés dans la perspective de leur futur métier, et figurent des psychologues conseillant des éducateurs face à des jeunes qui utilisent des insultes racistes entre eux. Le dispositif mis en oeuvre satisfait quatre exigences d'ordre théorique, favorables selon l'auteure à une bonne résolution des désaccords : le ménagement des faces des interlocuteurs en fixant des rôles ne correspondant pas nécessairement aux positions de chacun ; la construction de connaissances,préalable à la discussion ; la médiation de l'échange par un outil, ici un « chat », qui permet d'échanger les points de vue et d'apporter une dimension réflexive en cours d'interaction sur les points de vue exprimés ; le fait de donner du sens à l'activité, en simulant une situation professionnelle potentielle. L'analyse des échanges a été réalisée sur onze corpus constitués par les étudiants en petits groupes de trois ou quatre travaillant sur un logiciel de « chat ». Les questions abordées étaient les suivantes : Comment les interlocuteurs négocient-ils les désaccords qui apparaissent au cours des échanges? Ces désaccords sont-ils propices à une problématisation? Les participants mettent-ils en oeuvre des dynamiques d'« exploration » du désaccord relevé? Cette analyse, inspirée d'une approche socioculturelle reprise en partie des travaux de Neil Mercer sur les « discours exploratoires », met en évidence des dynamiques argumentatives de qualité au cours desquels les désaccords sont non seulement exprimés mais également problématisés au sein des groupes. Elle met entre autres en évidence que le sens de l'activité pour les étudiants est en partie tributaire d'un contrat didactique et pédagogique : leurs échanges sont la base de leur évaluation universitaire. Néanmoins la similitude entre situation d'enseignement et situation professionnelle a largement été perçue par les étudiants et motivante pour eux, ce qui a certainement concouru également à la qualité des échanges.

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Following perturbation, an ecosystem (flora, fauna, soil) should evolve as a function of time at a rate conditioned by external variables (relief, climate, geology). More recently, biogeomorphologists have focused upon the notion of co-development of geomorphic processes with ecosystems over very short through to very long (evolutionary) timescales. Alpine environments have been a particular focus of this co-development. However, work in this field has tended to adopt a simplified view of the relationship between perturbation and succession, including: how the landform and ecosystem itself conditions the impact of a perturbation to create a complex spatial response impact; and how perturbations are not simply ecosystem destroyers but can be a significant source of ecosystem resources. What this means is that at the within landform scale, there may well be a complex and dynamic topographic and sedimentological template that co-develops with soil, flora and fauna. Here, we present and test a conceptual model of this template for a subalpine alluvial fan. We combine detailed floristic inventory with soil inventory, determination of edaphic variables and analysis of historical aerial imagery. Spatial variation in the probability of perturbation of sites on the fan surface was associated with down fan variability in the across-fan distribution of fan ages, fan surface channel characteristics and fan surface sedimentology. Floristic survey confirmed that these edaphic factors distinguished site floristic richness and plant communities up until the point that the soil-vegetation system was sufficiently developed to sustain plant communities regardless of edaphic conditions. Thus, the primary explanatory variable was the estimated age of each site, which could be tied back into perturbation history and its spatial expression due to the geometry of the fan: distinct plant communities were emergent both across fan and down fan, a distribution maintained by the way in which the fan dissipates potentially perturbing events.

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Among invasive species, ants are a particularly prominent group with enormous impacts on native biodiversity and ecosystem functioning. Globalization and on-going climate change are likely to increase the rate of ant invasions in the future, leading to simultaneous introductions of several highly invasive species within the same area, Here, we investigate pairwise interactions among four highly invasive species, Linepithema humile,Lashis neglectus, Pheidole megacephala and Wasmannia auropunctata, at the whole colony level, using a laboratory set-up. :Each colony consisted of 300 workers and one queen. The number of surviving workers in the competing colonies was recorded daily over 7 weeks. We modelled the survival of each colony during pairwise colony interactions, using a nonlinear model characterizing the survival dynamics of each colony individually. The least dominant species was P. megacephala, which always went extinct. Interactions among the three other species showed more complex dynamics, rendering the outcome of the interactions less predictable. Overall, W auropunctata and L neglectus were the most dominant species. This study shows the importance of scaling up to the colony level in order to gain realism in predicting the outcome of multiple invasions.

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Clines in phenotypes and genotype frequencies across environmental gradients are commonly taken as evidence for spatially varying selection. Classical examples include the latitudinal clines in various species of Drosophila, which often occur in parallel fashion on multiple continents. Today, genomewide analysis of such clinal systems provides a fantastic opportunity for unravelling the genetics of adaptation, yet major challenges remain. A well-known but often neglected problem is that demographic processes can also generate clinality, independent of or coincident with selection. A closely related issue is how to identify true genic targets of clinal selection. In this issue of Molecular Ecology, three studies illustrate these challenges and how they might be met. Bergland et al. report evidence suggesting that the well-known parallel latitudinal clines in North American and Australian D. melanogaster are confounded by admixture from Africa and Europe, highlighting the importance of distinguishing demographic from adaptive clines. In a companion study, Machado et al. provide the first genomic comparison of latitudinal differentiation in D. melanogaster and its sister species D. simulans. While D. simulans is less clinal than D. melanogaster, a significant fraction of clinal genes is shared between both species, suggesting the existence of convergent adaptation to clinaly varying selection pressures. Finally, by drawing on several independent sources of evidence, Bo?ičević et al. identify a functional network of eight clinal genes that are likely involved in cold adaptation. Together, these studies remind us that clinality does not necessarily imply selection and that separating adaptive signal from demographic noise requires great effort and care.

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PURPOSE: The goal of this study was to explore the effect of lifelong aerobic exercise (i.e., chronic training) on skeletal muscle substrate stores (intramyocellular triglyceride [IMTG] and glycogen), skeletal muscle phenotypes, and oxidative capacity (ox), in older endurance-trained master athletes (OA) compared with noncompetitive recreational younger (YA) athletes matched by frequency and mode of training. METHODS: Thirteen OA (64.8 ± 4.9 yr) exercising 5 times per week or more were compared with 14 YA (27.8 ± 4.9 yr) males and females. IMTG, glycogen, fiber types, succinate dehydrogenase, and capillarization were measured by immunohistochemistry in vastus lateralis biopsies. Fat-ox and carbohydrate (CHO)-ox were measured by indirect calorimetry before and after an insulin clamp and during a cycle ergometer graded maximal test. RESULTS: V˙O2peak was lower in OA than YA. The OA had greater IMTG in all fiber types and lower glycogen stores than YA. This was reflected in greater proportion of type I and less type II fibers in OA. Type I fibers were similar in size, whereas type II fibers were smaller in OA compared with YA. Both groups had similar succinate dehydrogenase content. Numbers of capillaries per fiber were reduced in OA but with a higher number of capillaries per area. Metabolic flexibility and insulin sensitivity were similar in both groups. Exercise metabolic efficiency was higher in OA. At moderate exercise intensities, carbohydrate-ox was lower in OA but with similar Fat-ox. CONCLUSIONS: Lifelong exercise is associated with higher IMTG content in all muscle fibers and higher metabolic efficiency during exercise that are not explained by differences in muscle fibers types and other muscle characteristics when comparing older with younger athletes matched by exercise mode and frequency.