Literatura científica selecionada sobre o tema "Distribution d'abondance des traits"
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Artigos de revistas sobre o assunto "Distribution d'abondance des traits"
Carbonara, Pierluigi, Teresa Silecchia, Maria Spedicato, Alessandra Acrivulis e Giuseppe Lembo. "A GEOSTATISTICAL APPROACH TO THE ASSESSMENT OF THE SPATIAL DISTRIBUTION OF PARAPENAEUS LONGIROSTRIS (LUCAS, 1846) IN THE CENTRAL-SOUTHERN TYRRHENIAN SEA". Crustaceana 72, n.º 9 (1999): 1093–108. http://dx.doi.org/10.1163/156854099504040.
Texto completo da fonteBach, P., M. Amanieu, T. L. Hoai e G. Lasserre. "Application du modele de distribution d'abondance de Mandelbrot a l'estimation des captures dans l'etang de Thau". ICES Journal of Marine Science 44, n.º 3 (1 de janeiro de 1988): 235–46. http://dx.doi.org/10.1093/icesjms/44.3.235.
Texto completo da fonteSzelag-Wasielewska, E. "Distribution du picoplancton autotrophe dans la zone pélagique d'un lac méromictique (Lac Czane, Pologne)". Revue des sciences de l'eau 18 (12 de abril de 2005): 1–11. http://dx.doi.org/10.7202/705572ar.
Texto completo da fonteSimard, Annie, e Anne de Vernal. "Distribution des kystes du type Alexandrium excavatum dans les sédiments récents et postglaciaires des marges est-canadiennes". Géographie physique et Quaternaire 52, n.º 3 (2 de outubro de 2002): 361–71. http://dx.doi.org/10.7202/004868ar.
Texto completo da fonteNola, M., T. Njine, V. F. Sikati e E. Djuikom. "Distribution de Pseudomonas aeruginosa et Aeromonas hydrophila dans les eaux de la nappe phréatique superficielle en zone équatoriale au Cameroun et relations avec quelques paramètres chimiques du milieu." Revue des sciences de l'eau 14, n.º 1 (12 de abril de 2005): 35–53. http://dx.doi.org/10.7202/705407ar.
Texto completo da fonteBadr, Anas. "Distribution of Nulliparous Fertility Traits". Journal of Animal and Poultry Production 11, n.º 5 (1 de maio de 2020): 193–98. http://dx.doi.org/10.21608/jappmu.2020.104946.
Texto completo da fonteHaarsma, Anne-Jifke, e Henk Siepel. "Macro-evolutionary trade-offs as the basis for the distribution of European bats". Animal Biology 63, n.º 4 (2013): 451–71. http://dx.doi.org/10.1163/15707563-00002424.
Texto completo da fonteRaymond, Anne. "Paleogeographic Distribution of Early Devonian Plant Traits". PALAIOS 2, n.º 2 (1987): 113. http://dx.doi.org/10.2307/3514640.
Texto completo da fonteYao, Qiang, e Shawn Mehlenbacher. "DISTRIBUTION OF QUANTITATIVE TRAITS IN HAZELNUT PROGENIES". Acta Horticulturae, n.º 556 (julho de 2001): 143–62. http://dx.doi.org/10.17660/actahortic.2001.556.21.
Texto completo da fonteMenglin, Li, Zhang Xinbing, Tong Yao, Huang Jihong, Zhang Shichen, Xu Shuyi, Ding Yi et al. "Mean annual temperature mainly drives spatial pattern of plant functional traits in inland arid and semi-arid areas". Annals of Forest Research 67, n.º 2 (31 de dezembro de 2024): 51–66. https://doi.org/10.15287/afr.2024.3467.
Texto completo da fonteTeses / dissertações sobre o assunto "Distribution d'abondance des traits"
Rondeau, Nathan. "Règles d'assemblage et dynamiques des communautés végétales prairiales : apports de l'étude des distributions de traits". Electronic Thesis or Diss., Université Clermont Auvergne (2021-...), 2024. http://www.theses.fr/2024UCFA0175.
Texto completo da fonteUnderstanding and predicting the dynamics of biodiversity under global change is a major scientific challenge. However, biodiversity responses to global change are inherently complex. Drivers of change not only affect species diversity and abundance but also alter biotic interactions between species, which may impact community assembly and dynamics. In this context, studying the diversity of functional traits within communities could lead to significant advances, as traits reflect how species respond to and influence their environment. To make the trait-based approach operational for the study of complex ecological systems, we developed an innovative analytical framework based on the study of the shapes of trait distributions. The shapes of trait distributions can be characterised by an inequality between the skewness and the kurtosis, the Skewness-Kurtosis Relationship (SKR). Using this inequality, we developed two key indicators (Chapter 1): the TADeve, which characterises the evenness of trait distributions, and the TADstab, which characterises the stability of trait distributions.Using permanent grasslands as a study model, we highlighted the relevance of studying the evenness (TADeve) and stability (TADstab) of trait distributions in order to disentangle the influence of deterministic processes (e.g. habitat filtering, niche differentiation), while accounting for the inherent stochasticity of ecological systems (Chapter 1). Using a long-term dataset of managed permanent grasslands (17-years), we demonstrated that the temporal variability of trait distributions was not random, but depended on management practices (Chapter 2). Intensively managed grasslands (high levels of fertilisation) are associated with unstable and uneven trait distributions. These results are consistent with predictions of the “habitat filtering” theory and the occurrence of intense competition between plant species that limit local diversity. Conversely, extensively managed grasslands (no fertilisation) were linked to remarkably even and stable trait distributions over time. Furthermore, we also showed that the cessation of fertilisation in extensively-managed grasslands led to a rapid convergence towards even and stable trait distributions, which promoted the long-term recruitment and persistence of a rich and diverse grassland flora. These findings are consistent with a theoretical scenario of niche differentiation, which predicts a stable coexistence among functionally contrasting species. Finally, we found that the high evenness and stability of trait distributions, in extensively managed grasslands, are explained by a functional complementarity between dominant and subordinate species, facilitating the long-term stabilisation of the functional assemblage and of the entire plant community (Chapter 3). Using observational data from various ecological context, we showed that semi-natural and natural plant communities shared a similar functional organisation. The observation of common functional patterns over space and time suggests the existence of general rules governing the assembly, diversity, and dynamics of plant communities.In conclusion, the SKR approach appears to be a suitable tool to study complex dynamic systems, such as ecological systems in the context of global change. In the Anthropocene era, identifying general assembly rules based on functional traits could enable the design of management methods adapted to the conservation and restoration of biodiversity, as well as the maintenance of ecosystem multifunctionality
Brengdahl, Martin. "Differentiation of dispersive traits under a fluctuating range distribution in Asellus aquaticus". Thesis, Linköpings universitet, Biologi, 2014. http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-108119.
Texto completo da fonteRosmaninho, Teresa Charrua. "Distribution patterns and functional traits of nematode meiofauna assemblages in Sado Estuary (Portugal)". Master's thesis, Universidade de Évora, 2020. http://hdl.handle.net/10174/27092.
Texto completo da fonteMeek, Sarah. "Functional traits as drivers of bryophyte species distribution along a tropical elevation gradient". Thesis, University of Cape Town, 2011. http://hdl.handle.net/11427/26658.
Texto completo da fontePalcy, Chrystèle. "Le nématode trichostrongle Trichostrongylus axei : distribution géographique, traits de vie et résistance aux benzimidazoles". Thesis, Tours, 2008. http://www.theses.fr/2008TOUR3117.
Texto completo da fonteROCCHIA, EMANUEL. "Temporal variation of species distribution and species morphological traits along altitude in the Alps". Doctoral thesis, Università degli Studi di Milano-Bicocca, 2016. http://hdl.handle.net/10281/131144.
Texto completo da fonteKoladjo, Babagnidé François. "Estimation non paramétrique du nombre d'espèces : Application à l'étude de la faune ichtyologique du bassin du fleuve Ouëmé". Thesis, Paris 11, 2013. http://www.theses.fr/2013PA112153.
Texto completo da fonteThis manuscript is structured in two parts. The #rst part composed of Chapters 2to 4 deals with the problem of estimating the number of classes in a population withan application in ecology. The second part, corresponding to Chapter 5, concernsthe application of statistical methods to analyze fisheries data.In the first part, we consider a heterogeneous population split into several classes.From a sample, the numbers of observed individuals per class, also called abun-dances, are used to estimate the total number of classes in the population. In theliterature devoted to the number of classes estimation, methods based on a mix-ture of Poisson distributions seem to be the most effcient (see for example the workof Chao and Bunge (2002) in the parametric framework and that of Wang and Lind-say (2005) in a non-parametric framework). Applications of these approaches to realdata show that the distribution of abundances can be approximated by a convexdistribution. We propose a non-parametric approach to estimate the distribution ofabundances under the constraint of convexity. This constraint defines a theoreticalframework for estimating a discrete density. The problem of estimating the numberof classes is then tackled in two steps.We show on the one hand the existence and uniqueness of an estimator of adiscrete density under the constraint of convexity. Under this constraint, we provethat a discrete density can be written as a mixture of triangular distributions. Usingthe support reduction algorithm proposed by Groeneboom et al. (2008), we proposean exact algorithm to estimate the proportions in the mixture.On the other hand, the estimation procedure of a discrete convex density is usedto estimate the zero-truncated distribution of the observed abundance data. Thezero-truncated distribution estimate is then extended at zero to derive an estimateof the probability that a class is not observed. This extension is made so as tocancel the first component in the mixture of triangular distributions. An estimateof the total number of classes is obtained through a binomial model assuming thateach class appears in a sample by a Bernoulli trial. We show the convergence inlaw of the proposed estimator. On practical view, an application to real ecologicaldata is presented. The method is then compared to other concurrent methods usingsimulations.The second part presents the analysis of fisheries data collected on the Ouémériver in Benin. We propose a statistical approach for grouping species accordingto their temporal abundance profile, to estimate the stock of a species and theircatchability by artisanal fishing gears
Cartier, Valentine. "Chironomus salinarius (KIEFFER) et salinité : structure spatiale, traits d'histoire de vie et dynamique temporelle". Aix-Marseille 3, 2010. http://www.theses.fr/2010AIX30031.
Texto completo da fonteChironomus salinarius is a common species living in coastal lagoons, which are characterized by a strong variability of environmental factors, especially salinity. C. Salinarius is well-known because of its nuisances but the knowledge of its ecological preferences remains incomplete. The aim of this study is to highlight the role of salinity on spatial structure, life history traits and population dynamics of C. Salinarius. The first part focuses on the patchy distribution of C. Salinarius in a coastal lagoon, the Bolmon lagoon. This study highlights the existence of chironomid patches, linked to shallow area and high values of dissolved oxygen, in spite of very low density of larvae. We hypothesize that low density values were linked to the salinity. The second part is a laboratory study. Eleven salinities between 0 and 50 have been tested for both survival and time of development. A very low survival rate at intermediate salinity (10) suggests the existence of an alternation between two physiological strategies (osmoconformer or osmoregulator). Moreover too few adults emerge over 40. For others salinities, between 0 and 35, there was a high survival rate but the time of development increased with the salinity level. In the third part, the population dynamics of C. Salinarius is studied in the Bolmon lagoon with a multi-scale approach. A between years pattern is highlighted, with the increase of densities. Change of environmental factors can partly explain variations of C. Salinarius population. A synthesis of our results is presented in the conclusion, which emphasises the non-exclusive effect of salinity on C. Salinarius population structure
Costard, François. "Distribution et caractéristiques du pergélisol sur Mars : son influence sur certains traits de la géomorphologie". Paris 4, 1990. http://www.theses.fr/1989PA040138.
Texto completo da fonteWilding, Nicholas. "Altitudinal patterns of species distribution : are these related to variation in reproductive life history traits?" Bachelor's thesis, University of Cape Town, 2009. http://hdl.handle.net/11427/26692.
Texto completo da fonteLivros sobre o assunto "Distribution d'abondance des traits"
lantbruksuniversitet, Sveriges, ed. Demography, reproductive biology, and adaptive traits in Gentianella campestris and G. amarella: Evaluating grassland management for conservation by using indicator plant species. Uppsala: Swedish University of Agricultural Sciences, 1997.
Encontre o texto completo da fonteBhasin, M. K. The distribution of genetical, morphological, and behavioural traits among the peoples of Indian region: Bangladesh, Bhutan, India, Maldives, Nepal, Pakistan, Sri Lanka. Delhi, India: Kamla-Raj Enterprises, 1992.
Encontre o texto completo da fonteBenis, A. M. Geographic Distribution of Genetic Character Traits Based on the NPA Theory of Personality. Independently Published, 2017.
Encontre o texto completo da fonteRosbakh, Sergey, Shyam S. Phartyal, Si-Chong Chen e Peter Poschlod, eds. Functional Seed Ecology: From Single Traits to Plant Distribution Patterns, Community Assembly and Ecosystem Processes. Frontiers Media SA, 2022. http://dx.doi.org/10.3389/978-2-88976-647-5.
Texto completo da fonteUniversité de Paris IV: Paris-Sorbonne, ed. Distribution et caractéristiques du Pergelisol sur Mars: Son influence su certains traits de la géomorphologie. 1989.
Encontre o texto completo da fonteDalton, Russell J. The Social Distribution of Cleavage Positions. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198830986.003.0003.
Texto completo da fonteHunt, John, James Rapkin e Clarissa House. The genetics of reproductive behavior. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198797500.003.0002.
Texto completo da fonteRuxton, Graeme D., William L. Allen, Thomas N. Sherratt e Michael P. Speed. Deflecting the point of attack. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780199688678.003.0012.
Texto completo da fonteKreuder-Sonnen, Christian. Emergency Powers of International Organizations. Oxford University Press, 2019. http://dx.doi.org/10.1093/oso/9780198832935.001.0001.
Texto completo da fonteToniolo, Gianni, ed. The Oxford Handbook of the Italian Economy Since Unification. Oxford University Press, 2013. http://dx.doi.org/10.1093/oxfordhb/9780199936694.001.0001.
Texto completo da fonteCapítulos de livros sobre o assunto "Distribution d'abondance des traits"
Haslam, Nick. "Bell-Shaped Distribution of Personality Traits". In Encyclopedia of Personality and Individual Differences, 441–43. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-319-24612-3_1047.
Texto completo da fonteHaslam, Nick. "Bell-Shaped Distribution of Personality Traits". In Encyclopedia of Personality and Individual Differences, 1–2. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-28099-8_1047-1.
Texto completo da fonteForbes, Valery E., e Michael H. Depledge. "Environmental stress and the distribution of traits within populations". In ECOtoxicology: Ecological Dimensions, 71–86. Dordrecht: Springer Netherlands, 1996. http://dx.doi.org/10.1007/978-94-009-1541-1_7.
Texto completo da fonteBoltovskoy, Demetrio. "Distribution and Colonization of Limnoperna fortunei: Special Traits of an Odd Mussel". In Limnoperna Fortunei, 301–11. Cham: Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-13494-9_16.
Texto completo da fonteMartín-Forés, Irene, Samuel C. Andrew, Greg R. Guerin e Gallagher Rachael V. "Linking the Functional Traits of Australian Acacia Species to Their Geographic Distribution and Invasion Status". In Wattles, 74–92. GB: CABI, 2023. http://dx.doi.org/10.1079/9781800622197.0005.
Texto completo da fonteBadalucco, Antonina, Rocco Auriemma, Andrea Bonifazi, Roberta Cimmaruta, Elvira De Matthaeis, Cristina Gioia Di Camillo, Valentina Esposito et al. "Checklist of amphipods of italian seas: baseline for monitoring biodiversity". In Monitoring of Mediterranean Coastal Areas: Problems and Measurement Techniques, 7–13. Florence: Firenze University Press, 2024. https://doi.org/10.36253/979-12-215-0556-6.01.
Texto completo da fonteSoares, Filipa C., Joana M. Hancock, Jorge M. Palmeirim, Hugulay Albuquerque Maia, Tariq Stévart e Ricardo F. de Lima. "Species Ecology in the Gulf of Guinea Oceanic Islands: Distribution, Habitat Preferences, Assemblages, and Interactions". In Biodiversity of the Gulf of Guinea Oceanic Islands, 171–88. Cham: Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-031-06153-0_7.
Texto completo da fonteLiu, Lu-xiang, Yong-dun Xie, Hui-jun Guo, Lin-shu Zhao, Hong-chun Xiong, Jia-yu Gu e Shi-rong Zhao. "New mutation techniques for crop improvement in China." In Mutation breeding, genetic diversity and crop adaptation to climate change, 47–52. Wallingford: CABI, 2021. http://dx.doi.org/10.1079/9781789249095.0005.
Texto completo da fonteDíaz Vélez, M. Celeste, Ana E. Ferreras e Valeria Paiaro. "Seed dispersal interactions promoting plant invasions." In Plant invasions: the role of biotic interactions, 90–104. Wallingford: CABI, 2020. http://dx.doi.org/10.1079/9781789242171.0090.
Texto completo da fonteSchües, Christina. "Intercorporeality: Giving Life from One Body to Another". In Philosophy and Medicine, 213–30. Cham: Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-031-04166-2_15.
Texto completo da fonteTrabalhos de conferências sobre o assunto "Distribution d'abondance des traits"
Liu, Wei. "Temperature field distribution and subgrade deformation of the different traits road in G214". In 4th International Symposium on Power Electronics and Control Engineering (ISPECE 2021), editado por Fengjie Cen e Yinquan Yu. SPIE, 2021. http://dx.doi.org/10.1117/12.2620256.
Texto completo da fonte"Estimation of a joint distribution for several phenotypic traits in breeding or ancient populations". In Bioinformatics of Genome Regulation and Structure/ Systems Biology. institute of cytology and genetics siberian branch of the russian academy of science, Novosibirsk State University, 2020. http://dx.doi.org/10.18699/bgrs/sb-2020-199.
Texto completo da fonteDegol, Jessica. "Do Gender Distribution and Masculine/Feminine Traits in Men and Women Influence Perceptions of STEM Fields?" In AERA 2024. USA: AERA, 2024. http://dx.doi.org/10.3102/ip.24.2105438.
Texto completo da fonteDegol, Jessica. "Do Gender Distribution and Masculine/Feminine Traits in Men and Women Influence Perceptions of STEM Fields?" In 2024 AERA Annual Meeting. Washington DC: AERA, 2024. http://dx.doi.org/10.3102/2105438.
Texto completo da fonteHaberle, Jan. "The Effect of Simulated Distribution of Soil Mineral Nitrogen and Root Traits on Wheat Yield and Grain Nitrogen Concentration". In 2006 International Symposium on Plant Growth Modeling, Simulation, Visualization and Applications (PMA). IEEE, 2006. http://dx.doi.org/10.1109/pma.2006.50.
Texto completo da fonteBrisson Nielsen, Sigrid, Laurits Frøssing, Morten Hvidtfeldt, Kristoffer L. Norheim, Frederik Roager Madsen, Celeste Porsbjerg e Asger Sverrild. "Distribution of type-2 biomarkers and association with disease traits in patients with COPD, Data from the BREATHE Cohort". In ERS Congress 2024 abstracts, PA3979. European Respiratory Society, 2024. http://dx.doi.org/10.1183/13993003.congress-2024.pa3979.
Texto completo da fonteПегливанян, Г. К. "ANALYSIS OF THE DISTRIBUTION OF GENOTYPES OF THE LCORL SNP A503G GENE IN PUSHKINSKAYA CHICKENS AND THEIR INFLUENCE ON EXTERIOR AND LIVE WEIGHT INDICATORS". In Биотехнология в растениеводстве, животноводстве и сельскохозяйственной микробиологии, 51–52. Crossref, 2021. http://dx.doi.org/10.48397/arriab.2021.21.xxi.026.
Texto completo da fonteGang Ge, Yan H. Xu, Lei Zhao, Zhi Q. Wu e Lan Wu. "Notice of Retraction: Spatial distribution traits of soil organic matter and total nitrogen in the wetland of Poyang Lake, China". In 2010 2nd Conference on Environmental Science and Information Application Technology (ESIAT 2010). IEEE, 2010. http://dx.doi.org/10.1109/esiat.2010.5568365.
Texto completo da fonteV.A., Minkin. "Including Information-Physical Quantit ies of Personality Traits into the International System of Units (SI)". In Современная психофизиология. Технология виброизображения. Modern Psychophysiology. The Vibraimage Technology., 235–62. Crossref, 2024. http://dx.doi.org/10.25696/elsys_mpvt_07_en01.
Texto completo da fonteВ.А., Минкин. "Including Information-Physical Quantities of Personality Traits into the International System of Units (SI)". In Современная психофизиология. Технология виброизображения. Modern Psychophysiology. The Vibraimage Technology., 9–39. Crossref, 2024. http://dx.doi.org/10.25696/elsys_mpvt_07_ru01.
Texto completo da fonteRelatórios de organizações sobre o assunto "Distribution d'abondance des traits"
Dubcovsky, Jorge, e T. (Tzion) Fahima. Validation of candidate genes for a QTL responsible for water stress tolerance and their diversity in wheat. Israel: United States-Israel Binational Agricultural Research and Development Fund, 2022. http://dx.doi.org/10.32747/2022.8134149.bard.
Texto completo da fonteFahima, Tzion, e Jorge Dubcovsky. Map-based cloning of the novel stripe rust resistance gene YrG303 and its use to engineer 1B chromosome with multiple beneficial traits. United States Department of Agriculture, janeiro de 2013. http://dx.doi.org/10.32747/2013.7598147.bard.
Texto completo da fonteWaisel, Yoav, Bobbie McMichael e Amram Eshel. Decision Making within Plant Root Systems. United States Department of Agriculture, março de 1996. http://dx.doi.org/10.32747/1996.7613030.bard.
Texto completo da fonteSela, Hanan, Eduard Akhunov e Brian J. Steffenson. Population genomics, linkage disequilibrium and association mapping of stripe rust resistance genes in wild emmer wheat, Triticum turgidum ssp. dicoccoides. United States Department of Agriculture, janeiro de 2014. http://dx.doi.org/10.32747/2014.7598170.bard.
Texto completo da fontePawlowski, Wojtek P., e Avraham A. Levy. What shapes the crossover landscape in maize and wheat and how can we modify it. United States Department of Agriculture, janeiro de 2015. http://dx.doi.org/10.32747/2015.7600025.bard.
Texto completo da fonteCytryn, Eddie, Mark R. Liles e Omer Frenkel. Mining multidrug-resistant desert soil bacteria for biocontrol activity and biologically-active compounds. United States Department of Agriculture, janeiro de 2014. http://dx.doi.org/10.32747/2014.7598174.bard.
Texto completo da fonteBlum, Abraham, Henry T. Nguyen e N. Y. Klueva. The Genetics of Heat Shock Proteins in Wheat in Relation to Heat Tolerance and Yield. United States Department of Agriculture, agosto de 1993. http://dx.doi.org/10.32747/1993.7568105.bard.
Texto completo da fonteGuy, Charles, Gozal Ben-Hayyim, Gloria Moore, Doron Holland e Yuval Eshdat. Common Mechanisms of Response to the Stresses of High Salinity and Low Temperature and Genetic Mapping of Stress Tolerance Loci in Citrus. United States Department of Agriculture, maio de 1995. http://dx.doi.org/10.32747/1995.7613013.bard.
Texto completo da fonte