211 resultados para Savart, Nic.-Pierre-Ant.
Resumo:
Fin observateur des mutations du religieux au cours des trente dernières années, Pierre Gisel fait l'objet, dans ce livre, d'analyses sur les enjeux qui marquent ses recherches fondamentales : la mise à l'épreuve des religions par leurs confrontations avec la science, la culture et le politique. La pensée de Pierre Gisel est l'une des rares à prendre en compte les défis que pose la sécularisation aux postulats des traditions religieuses en général, et au christianisme en particulier. Le statut des textes sacrés, la légitimité des institutions religieuses, les généalogies des monothéismes : autant d'objets auxquels Pierre Gisel adresse des questions exigeantes et « théologiquement incorrectes », pour le meilleur des débats actuels sur les transformations et les valeurs de nos sociétés. Dans ce livre, sociologues, philosophes, théologiens, historiens, journalistes ainsi qu'une représentante politique rendent compte de la réception qu'ils accordent aux travaux de Pierre Gisel, pour les prolonger, les déplacer et les critiquer, tout en soulignant leur incontestable pertinence.
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The amount of nitrogen required to complete an insect's life cycle may vary greatly among species that have evolved distinct life history traits. Myrmecophilous caterpillars in the Lycaenidae family produce nitrogen-rich exudates from their dorsal glands to attract ants for protection, and this phenomenon has been postulated to shape the caterpillar's host-plant choice. Accordingly, it was postulated that evolution towards myrmecophily in Lycaenidae is correlated with the utilization of nitrogen-rich host plants. Although our results were consistent with the evolutionary shifts towards high-nutrient host plants serving as exaptation for the evolution of myrmecophily in lycaenids, the selection of nitrogen-rich host plants was not confined to lycaenids. Butterfly species in the nonmyrmecophilous family Pieridae also preferred nitrogen-rich host plants. Thus, we conclude that nitrogen is an overall important component in the caterpillar diet, independent of the level of myrmecophily, as nitrogen can enhance the overall insect fitness and survival. However, when nitrogen can be obtained through alternative means, as in socially parasitic lycaenid species feeding on ant brood, the selective pressure for maintaining the use of nutrient-rich host plants is relaxed, enabling the colonization of nitrogen-poor host plants.
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BACKGROUND: Animal societies are diverse, ranging from small family-based groups to extraordinarily large social networks in which many unrelated individuals interact. At the extreme of this continuum, some ant species form unicolonial populations in which workers and queens can move among multiple interconnected nests without eliciting aggression. Although unicoloniality has been mostly studied in invasive ants, it also occurs in some native non-invasive species. Unicoloniality is commonly associated with very high queen number, which may result in levels of relatedness among nestmates being so low as to raise the question of the maintenance of altruism by kin selection in such systems. However, the actual relatedness among cooperating individuals critically depends on effective dispersal and the ensuing pattern of genetic structuring. In order to better understand the evolution of unicoloniality in native non-invasive ants, we investigated the fine-scale population genetic structure and gene flow in three unicolonial populations of the wood ant F. paralugubris. RESULTS: The analysis of geo-referenced microsatellite genotypes and mitochondrial haplotypes revealed the presence of cryptic clusters of genetically-differentiated nests in the three populations of F. paralugubris. Because of this spatial genetic heterogeneity, members of the same clusters were moderately but significantly related. The comparison of nuclear (microsatellite) and mitochondrial differentiation indicated that effective gene flow was male-biased in all populations. CONCLUSION: The three unicolonial populations exhibited male-biased and mostly local gene flow. The high number of queens per nest, exchanges among neighbouring nests and restricted long-distance gene flow resulted in large clusters of genetically similar nests. The positive relatedness among clustermates suggests that kin selection may still contribute to the maintenance of altruism in unicolonial populations if competition occurs among clusters.
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Plan du travail Nous traiterons de cet aspect historique et contextuel dans la première partie. Les trois premiers chapitres décrivent les fondements antiques et médiévaux de la philosophie naturelle seiziémiste et évoquent l'influence du De animalibus d'Albert le Grand sur les médecins naturalistes. Nous en arriverons alors aux liens qui unissent ces derniers (chapitre IV) et aux conditions matérielles et intellectuelles qui entourent et parfois entravent la parution des ouvrages (chapitre V). Nous nous pencherons ensuite sur l'identité des lecteurs susceptibles d'être intéressés par les traités d'histoire naturelle. Ces lecteurs ont des attentes qui méritent aussi un examen quant à leur origine, car elles conditionnent pour une part variable, mais importante, le contenu des oeuvres (chapitre VI). Confrontés à des critiques, à des obstacles institutionnels parfois séculaires, les médecins naturalistes se défendent pour une part en reprenant les arguments de leurs prédécesseurs médiévaux. Mais nous les verrons mettre en place de nouvelles stratégies, en relation étroite avec le renouveau bien connu de la dialectique et de la rhétorique, qui trouve ses racines en Italie du nord à la fin du XVe siècle. Ce point sera développé dans la seconde partie, qui servira de transition essentielle dans notre exposé. C'est là que nous découvrirons que la rhétorique ne s'impose pas uniquement comme un rituel renouvelé de la dispute médiévale : elle n'entre pas seulement en jeu lorsqu'il s'agit de défendre ses intérêts contre des rivaux ou des adversaires académiques (chapitre VII). Les médecins naturalistes mettent au contraire au point des instruments au service d'un processus heuristique qui s'inspire des nouveaux canons de la rhétorique, dont Rudolph Agricola est un des théoriciens principaux (chapitre VIII). Ces observations nous amèneront à repréciser ce qu'il faut entendre par philosophie naturelle au XVIe siècle, notamment au travers de l'autorité de personnages comme Théodore Gaza (chapitre IX) et à définir les fondements généraux de l'histoire naturelle seiziémiste, en adoptant des points de vue divers : examen des tables des matières d'ouvrages, des réflexions des médecins naturalistes, avec à leur tête Conrad Gesner, ou encore étude de la pénétration de l'histoire naturelle dans quelques récits des voyageurs aux Amériques (chapitre X et XI). Arrivé à ce point de l'exposé, le lecteur aura constaté que la solidité de l'histoire naturelle seiziémiste tient à une stratégie discursive soigneusement élaborée. Le développement détaillé et l'application de ce nouveau processus, qui s'ancre au plus profond du discours descriptif de la nature, seront décrits dans la troisième partie. Nous commencerons par y rappeler quels sont les instruments antiques de la description des particulares, l'accident et la différence, que les médecins naturalistes adaptent à leurs exigences heuristiques (chapitre XII). Nous verrons le rôle de "nota", outil discursif méconnu, qui désigne les éléments décisifs ou arguments par lesquels les médecins naturalistes identifient les espèces décrites par les anciens en les confrontant aux espèces réelles (chapitre XIII). Une fois présenté l'instrument descriptif, se pose la question de son utilisation par les médecins naturalistes et de son évaluation par rapport au fonctionnement de la taxonomie moderne (chapitre XIV). La différence entre les deux regards sur la nature apparaîtra comme fondamentale : les médecins naturalistes assignent à leurs investigations des limites, inhérentes à l'origine sacrée de leur quête, qui relève de la philosophie, elle-même subordonnée à la théologie. Cela se percevra par exemple dans la description des animaux du Nouveau Monde. Les conséquences de cette constatation sont considérables : elles remettent en cause le statut du "savant" du XVIe siècle, qui ne saurait être assimilé à l'observateur extérieur tel que l'érige la science des Lumières. Belon et ses collègues se disent plutôt des "contemplateurs" et des interprètes, ce qui les rapprochent de la figure du poète, avec qui ils entretiennent des rapports ambivalents. C'est la relation même du médecin naturaliste au langage de la nature qui s'en trouve affectée : le savant n'a pas la maîtrise du discours, dans la mesure où les signes qu'il interprète et, dans une certaine mesure, ordonne, du latin : les noms d'espèces, entre autres dans les titres de notices descriptives, pour mieux cerner la relation entre la langue antique et la vernaculaire, ainsi que la notion de langue originelle chez les médecins naturalistes (chapitre XVIII). Les points communs qui émergeront de cette confrontation feront disparaître le clivage anachronique entre langue latine et langue vernaculaire, de même que l'hypothèse de l'insuffisance lexicale de la seconde, dont les médecins naturalistes auraient en vain voulu faire l'instrument de la science moderne (chapitre XIX). Le chapitre XX aura pour but d'établir le lien et l'adéquation entre les caractéristiques du discours descriptif ainsi mises en évidence et les fondements véritables de l'histoire naturelle seiziémiste.
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Division of labor is central to the organization of insect societies. Within-colony comparisons between subfamilies of workers (patrilines or matrilines) revealed genetic effects on division of labor in many social insect species. Although this has been taken as evidence for additive genetic effects on division of labor, it has never been experimentally tested. To determine the relative roles of additive and nonadditive genetic effects (e.g., genetic compatibility, epistasis, and parent-of-origin imprinting effects) on worker behavior, we performed controlled crosses using the Argentine ant Linepithema humile. Three of the measured behaviors (the efficiency to collect pupae, the foraging propensity, and the distance between non-brood-tenders and brood) were affected by the maternal genetic background and the two others (the efficiency to feed larvae and the distance between brood-tenders and brood) by the paternal genetic background. Moreover, there were significant interactions between the maternal and paternal genetic backgrounds for three of the five behaviors. These results are most consistent with parent-of-origin and genetic compatibility effects on division of labor. The finding of nonadditive genetic effects is in strong contrast with the current view and has important consequences for our understanding of division of labor in insect societies.
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Males in many animal species differ greatly from females in morphology, physiology and behaviour. Ants, bees and wasps have a haplodiploid mechanism of sex determination whereby unfertilized eggs become males while fertilized eggs become females. However, many species also have a low frequency of diploid males, which are thought to develop from diploid eggs when individuals are homozygous at one or more sex determination loci. Diploid males are morphologically similar to haploids, though often larger and typically sterile. To determine how ploidy level and sex-locus genotype affect gene expression during development, we compared expression patterns between diploid males, haploid males and females (queens) at three developmental timepoints in Solenopsis invicta. In pupae, gene expression profiles of diploid males were very different from those of haploid males but nearly identical to those of queens. An unexpected shift in expression patterns emerged soon after adult eclosion, with diploid male patterns diverging from those of queens to resemble those of haploid males, a pattern retained in older adults. The finding that ploidy level effects on early gene expression override sex effects (including genes implicated in sperm production and pheromone production/perception) may explain diploid male sterility and lack of worker discrimination against them during development.
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Social organisation of colonies was examined in the ant Formica cinerea by estimating the coefficient of genetic relatedness among worker nest mates. The estimates based on microsatellite genotypes at three loci ranged from values close to zero to 0.61 across the populations studied in Finland. These results showed that a fundamental feature of colonies, the number of reproductive queens, varied greatly among the populations. Colonies in some populations had a single queen, whereas the nests could have a high number number of queens in other populations. There was a weak but non-significant correlation between the genetic and metric distance of nests within two populations with intermediate level of relatedness. Differentiation among nearby populations (within the dispersal distance of individuals) in one locality indicated limited dispersal or founder effects. This could occur when females are philopatric and stay in the natal polygynous colony which expands by building a network of nest galleries within a single habitat patch.
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The reproductive ground plan hypothesis (RGPH) proposes that the physiological pathways regulating reproduction were co-opted to regulate worker division of labor. Support for this hypothesis in honeybees is provided by studies demonstrating that the reproductive potential of workers, assessed by the levels of vitellogenin (Vg), is linked to task performance. Interestingly, contrary to honeybees that have a single Vg ortholog and potentially fertile nurses, the genome of the harvester ant Pogonomyrmex barbatus harbors two Vg genes (Pb_Vg1 and Pb_Vg2) and nurses produce infertile trophic eggs. P. barbatus, thus, provides a unique model to investigate whether Vg duplication in ants was followed by subfunctionalization to acquire reproductive and non-reproductive functions and whether Vg reproductive function was co-opted to regulate behavior in sterile workers. To investigate these questions, we compared the expression patterns of P. barbatus Vg genes and analyzed the phylogenetic relationships and molecular evolution of Vg genes in ants. qRT-PCRs revealed that Pb_Vg1 is more highly expressed in queens compared to workers and in nurses compared to foragers. By contrast, the level of expression of Pb_Vg2 was higher in foragers than in nurses and queens. Phylogenetic analyses show that a first duplication of the ancestral Vg gene occurred after the divergence between the poneroid and formicoid clades and subsequent duplications occurred in the lineages leading to Solenopsis invicta, Linepithema humile and Acromyrmex echinatior. The initial duplication resulted in two Vg gene subfamilies preferentially expressed in queens and nurses (subfamily A) or in foraging workers (subfamily B). Finally, molecular evolution analyses show that the subfamily A experienced positive selection, while the subfamily B showed overall relaxation of purifying selection. Our results suggest that in P. barbatus the Vg gene underwent subfunctionalization after duplication to acquire caste- and behavior- specific expression associated with reproductive and non-reproductive functions, supporting the validity of the RGPH in ants.
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In populations of various ant species, many queens reproduce in the same nest (polygyny), and colony boundaries appear to be absent with individuals able to move fi eely between nests (unicoloniality). Such societies depart strongly from a simple family structure and pose a potential challenge to kin selection theory, because high queen number coupled with unrestricted gene flow among nests should result in levels of relatedness among nestmates close to zero. This study investigated the breeding system and genetic structure of a highly polygynous and largely unicolonial population of the wood ant Formica paralugubris. A microsatellite analysis revealed that nestmate workers, reproductive queens and reproductive males (the queens' mates) are all equally related to each other, with relatedness estimates centring around 0.14. This suggests that most of the queens and males reproducing in the study population had mated within or close to their natal nest, and that the queens did not disperse far after mating. We developed a theoretical model to investigate how the breeding system affects the relatedness structure of polygynous colonies. By combining the model and our empirical data, it was estimated that about 99.8% of the reproducing queens and males originated from within the nest, or from a nearby nest. This high rate of local mating and the rarity of long-distance dispersal maintain significant relatedness among nestmates, and contrast with the common view that unicoloniality is coupled with unrestricted gene flow among nests.