939 resultados para Tropical plant species


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Tese de doutoramento, Ciências Biotecnológicas (Biotecnologia Vegetal), Faculdade de Ciências e Tecnologia, Universidade do Algarve, 2010

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Tese de mestrado. Biologia (Ecologia e Gestão Ambiental). Universidade de Lisboa, Faculdade de Ciências, 2014

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Tese de mestrado. Biologia (Biologia Molecular e Genética). Universidade de Lisboa, Faculdade de Ciências, 2014

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Tese de doutoramento, Biologia (Ecologia), Universidade de Lisboa, Faculdade de Ciências, 2014

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Trabalho de projeto para obtenção do grau de Mestre em Engenharia Informática e de Computadores

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Dissertação para a obtenção do grau de doutor em Biologia pelo Instituto de Tecnologia Química e Biológica. Universidade Nova de Lisboa

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Restriction site-associated DNA sequencing (RADseq) provides researchers with the ability to record genetic polymorphism across thousands of loci for nonmodel organisms, potentially revolutionizing the field of molecular ecology. However, as with other genotyping methods, RADseq is prone to a number of sources of error that may have consequential effects for population genetic inferences, and these have received only limited attention in terms of the estimation and reporting of genotyping error rates. Here we use individual sample replicates, under the expectation of identical genotypes, to quantify genotyping error in the absence of a reference genome. We then use sample replicates to (i) optimize de novo assembly parameters within the program Stacks, by minimizing error and maximizing the retrieval of informative loci; and (ii) quantify error rates for loci, alleles and single-nucleotide polymorphisms. As an empirical example, we use a double-digest RAD data set of a nonmodel plant species, Berberis alpina, collected from high-altitude mountains in Mexico.

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Background and Aims The males and females of many dioecious plant species differ from one another in important life-history traits, such as their size. If male and female reproductive functions draw on different resources, for example, one should expect males and females to display different allocation strategies as they grow. Importantly, these strategies may differ not only between the two sexes, but also between plants of different age and therefore size. Results are presented from an experiment that asks whether males and females of Mercurialis annua, an annual plant with indeterminate growth, differ over time in their allocation of two potentially limiting resources (carbon and nitrogen) to vegetative (below-and above-ground) and reproductive tissues.Methods Comparisons were made of the temporal patterns of biomass allocation to shoots, roots and reproduction and the nitrogen content in the leaves between the sexes of M. annua by harvesting plants of each sex after growth over different periods of time.Key Results and Conclusions Males and females differed in their temporal patterns of allocation. Males allocated more to reproduction than females at early stages, but this trend was reversed at later stages. Importantly, males allocated proportionally more of their biomass towards roots at later stages, but the roots of females were larger in absolute terms. The study points to the important role played by both the timing of resource deployment and the relative versus absolute sizes of the sinks and sources in sexual dimorphism of an annual plant.

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Identifying adaptive genetic variation is a challenging task, in particular in non-model species for which genomic information is still limited or absent. Here, we studied distribution patterns of amplified fragment length polymorphisms (AFLPs) in response to environmental variation, in 13 alpine plant species consistently sampled across the entire European Alps. Multiple linear regressions were performed between AFLP allele frequencies per site as dependent variables and two categories of independent variables, namely Moran's eigenvector map MEM variables (to account for spatial and unaccounted environmental variation, and historical demographic processes) and environmental variables. These associations allowed the identification of 153 loci of ecological relevance. Univariate regressions between allele frequency and each environmental factor further showed that loci of ecological relevance were mainly correlated with MEM variables. We found that precipitation and temperature were the best environmental predictors, whereas topographic factors were rarely involved in environmental associations. Climatic factors, subject to rapid variation as a result of the current global warming, are known to strongly influence the fate of alpine plants. Our study shows, for the first time for a large number of species, that the same environmental variables are drivers of plant adaptation at the scale of a whole biome, here the European Alps.

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Although a substantial amount of research has been done on all aspects ofHeliconius biology and their ecological interactions with Passiflora, there has not hitherto been a phylogenetic examination of this association for coevolution. To test the HeliconiuslPassilfora association for coevolutionary congruence, phylogenies for each group were established and compared. The phylogeny for 14 species ofHeliconiinae from Costa Rica was based on combined sequence data from rRNA ITS 2 and partial EF-1a gene regions. For the Passifloraceae, 17 host plant species were utilized to establish a phylogeny based on tRNALeucine and ITS 1/5.8S1 ITS 2 sequence data. The phylogenies for both groups were largely in agreement with current classification (for Passifloraceae) and previously established phylogenies. Associations with the large subgenera Passiflora and Decaloba correspond with the two major Advanced Radiation groups in Heliconius. Although strict congruence above subgenus level was not observed, broad scale congruence was evident. One main host shift as well as other possible explanations for lack of strict congruence are suggested.

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How does fire affect the plant and animal community of the boreal forest? This study attempted to examine the changes in plant composition and productivity, and small mammal demography brought about by fire in the northern boreal environment at Chick Lake, N.W.T. (65053fN, 128°14,W). Two 5*6 ha plots measuring 375m x 150m were selected for study during the summers of 1973 and 197^. One had been unburned for 120 years, the other was part of a fire which burned in the spring of 1969. Grids of 15m x 15m were established in each plot and meter square quadrats taken at each of the 250 grid intersections in order to determine plant composition and density. Aerial primary production was assessed by clipping and drying 80 samples of terminal new production for each species under investigation. Small mammal populations were sampled by placing a Sherman live trap at each grid intersection for ten days in every month. The two plots were similar in plant species composition which suggested that most regrowth in the burned area was from rootstocks which survived the fire. The plant data were submitted to a cluster analysis that revealed nine separate species associations, six of which occured in the burned area and eight of which occured in the control. These were subsequently treated as habitats for purposes of comparison with small mammal distributions. The burned area showed a greater productivity in flowers and fruits although total productivity in the control area was higher due to a large contribution from the non-vascular component. Maximum aerial productivity as dry wieght was measured at 157.1 g/m and 207.8 g/m for the burn and control respectively. Microtus pennsylvanicus and Clethrionomys rutilus were the two most common small mammals encountered; Microtus xanthognathus, Synaptomys borealis, and Phenacomys intermedius also occured in the area. Populations of M. pennsylvanicus and C. rutilus were high during the summer of 1973; however, M. pennsylvanicus was rare on the control but abundant on the burn, while C. rutilus was rare on the burn but abundant in the control. During the summer of 197^ populations declined, with the result that few voles of any species were caught in the burn while equal numbers of the two species were caught in the control. During the summer of 1973 M. pennsylvanicus showed a positive association to the most productive habitat type in the burn which was avoided by C. rutilus. In the control £• rutilus showed a similar positive association to the most productive habitat type which was avoided by M. pennsylvanicus. In all cases for the high population year of 1973# the two species never overlapped in habitat preference. When populations declined in 197^f "both species showed a strong association for the most productive habitat in the control. This would suggest that during a high population year, an abundant species can exclude competitors from a chosen habitat, but that this dominance decreases as population levels decrease. It is possible that M. pennsylvanicus is a more efficient competitor in a recently burned environment, while C. rutilus assumes this role once non-vascular regrowth becomes extensive.

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Le paysage sonore est une forme de perception de notre environnement qui nous permet d’identifier les composantes sonores de notre quotidien. Ce projet de recherche porte sur une thématique particulière, les sons produits par les végétaux et leurs rôles dans les ambiances sonores paysagères. C’est la perspective que nous avons explorée in situ, en comparant les différentes espèces végétales; cette collection d’informations nous permet de proposer une typologie d’ambiances sonores des végétaux. Dans la première partie, des notions rattachées au « monde sonore » telles que l’objet sonore, le paysage sonore et les effets sonores justifient d’établir, dans la méthodologie, une grille d’analyse comportant différentes échelles d’écoute. Une lecture multidisciplinaire propose, d’une part, de réunir de l’information sur le son et les végétaux, la morphologie de ces derniers, l’aménagement au site, les conditions climatiques et, d’autre part, de retrouver ce qui a trait au son dans l’histoire des jardins, dont les jardins sensoriels, thérapeutiques, technologiques, et des sentiers d’interprétation sonore, sous l’angle du son comme projet. De plus, une liste de végétaux recevant les chants et cris de la faune vient introduire la notion de biodiversité sonore. Une enquête sociale de terrain, par la méthode des parcours commentés, et une enquête « experte » ont été réalisées au Jardin botanique de Montréal. Ces deux enquêtes nous ont permis de constituer une grille d’analyse croisée comprenant plusieurs échelles d’écoute : textures, actions sonores, effets sonores... De là, des générateurs d’ambiance (morphologie, organisation, climat) ont été relevés pour déterminer les aspects de récurrences et de différenciations d’un type d’ambiance sonore à l’autre. Des associations se sont formées en fonction de onze types de végétaux, chacun comprenant plusieurs sous-catégories. Celles-ci proposent des ambiances sonores spécifiques, des échelles d’écoute à considérer pour chaque type d’ambiance et l’énumération d’espèces à utiliser. Cette recherche ouvre la voie à un autre type de lecture sonore, par thématique d’ambiance (les sons du végétal dans notre cas), afin d’offrir de nouveaux outils de conception pour les professionnels, en profonde relation avec les perceptions sonores d’usagers sur le terrain et l’agencement spécifique d’un site.

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Les plantes médicinales jouent un rôle central, tant pour la médicine traditionnelle de certaines cultures, que pour la satisfaction d’une demande commerciale, souvent lointaine. Face à la forte pression qui pèse actuellement sur les populations de plantes médicinales - due à l'augmentation de la surexploitation commerciale et à la perte d'habitats - il est crucial de trouver des options qui permettront une gestion durable de cette ressource tout en contribuant à maintenir le bien-être socioéconomique des communautés locales qui en dépendent. Ainsi il est important de comprendre les perceptions que les populations ont des plantes médicinales, de la façon de les exploiter et de les gérer. L’objectif, donc, de ce projet est de mieux comprendre les interactions existantes entre savoir traditionnel et gestion des plantes médicinales. La présente étude de cas constitue une étude géographique et ethnobotanique inductive/exploratoire. Nous dressons dans cette recherche le portrait des dynamiques utilisées par les communautés Nahuas de la Huasteca Potosina pour la gestion des plantes médicinales. L’information qui est présentée a été obtenue par une combinaison de données descriptives, historiques, qualitatives, quelques unes quantitatives, qui sont le produit d’une revue bibliographique et d’un travail de terrain. Notre recherche démontre un éventail de pratiques de gestion, d’intérêts, de valeurs ainsi que de représentations sociales des plantes médicinales au sein d’une même ethnie. Cette étude met en évidence l’importance des pratiques locales de gestion pour élaborer des recommandations dans le domaine de la gestion durable des plantes médicinales.

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Mémoire numérisé par la Division de la gestion de documents et des archives de l'Université de Montréal

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Cette thèse a été codirigée par le Dr. Florent Chazarenc