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  1. 1941
    “…Here, we report preliminary characterization of wFlu, a native Wolbachia from the neotropical mosquito Aedes fluviatilis, and evaluate its potential as a vector control agent by confirming its ability to cause cytoplasmic incompatibility, and measuring its effect on three parameters determining host fitness (survival, fecundity and fertility), as well as vector competence (susceptibility) for pathogen infection. …”
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  2. 1942
    “…BACKGROUND: Amazona vittata is a critically endangered Puerto Rican endemic bird, the only surviving native parrot species in the United States territory, and the first parrot in the large Neotropical genus Amazona, to be studied on a genomic scale. …”
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  3. 1943
    “…Insect macroecology and conservation biogeography studies are disproportionately scarce, especially in the Neotropics. Dung beetles are an ideal focal taxon for biodiversity research and conservation. …”
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  4. 1944
    “…Only cells from nonhuman primates and neotropical fruit bats were moderately permissive. Phylogeographic reconstruction identified the common ancestor of all epidemic SLEV strains to have existed in an area between southern Mexico and Panama ca. 330 years ago. …”
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  5. 1945
    “…RESULTS: Here, we compare the developmental expression of the Optix protein across a large phylogenetic sample of butterflies and infer that its color patterning role originated at the base of the neotropical passion-vine butterfly clade (Lepidoptera, Nymphalidae, Tribe: Heliconiini), shortly predating multiple Optix-driven wing pattern radiations in the speciose Heliconius and Eueides genera. …”
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  6. 1946
    “…The present study aimed to understand the life cycle and growth of Alona iheringula Kotov & Sinev, 2004 (Crustacea, Anomopoda, Chydoridae), a Neotropical species, as well as its DNA barcoding, providing new information on the Aloninae taxonomy. …”
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  7. 1947
    “…This genus has about 150 species of shrubs and trees distributed over the entire Neotropical region. Various biological activities have been identified in these plants, especially antioxidant, antimicrobial and topical and systemic anti-inflammatory activities. …”
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  8. 1948
    “…Interdomain symbioses with bacteria allow insects to take advantage of underutilized niches and provide the foundation for their evolutionary success in neotropical ecosystems. The gut microbiota of 13 micro-allopatric tropical pentatomid species, from a Costa Rican lowland rainforest, was characterized and compared with insect and host plant phylogenies. …”
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  9. 1949
    “…Lineages within the genus dispersed to the Neotropics 26–18 Mya and to Asia 28–15 Mya. Higher speciation rates are found in the Neotropical Manilkara clade than in either African or Asian clades. …”
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  10. 1950
    “…We hypothesize that this increase marked the availability of Central America as an important corridor for Neotropical plant migration. We additionally demonstrate that this high rate of dispersal contributed substantially more to the phylogenetic diversity of Malpighiaceae in Mexico than in situ diversification. …”
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  11. 1951
    por Baker, Timothy R, Pennington, R Toby, Magallon, Susana, Gloor, Emanuel, Laurance, William F, Alexiades, Miguel, Alvarez, Esteban, Araujo, Alejandro, Arets, Eric J M M, Aymard, Gerardo, de Oliveira, Atila Alves, Amaral, Iêda, Arroyo, Luzmila, Bonal, Damien, Brienen, Roel J W, Chave, Jerome, Dexter, Kyle G, Di Fiore, Anthony, Eler, Eduardo, Feldpausch, Ted R, Ferreira, Leandro, Lopez-Gonzalez, Gabriela, van der Heijden, Geertje, Higuchi, Niro, Honorio, Eurídice, Huamantupa, Isau, Killeen, Tim J, Laurance, Susan, Leaño, Claudio, Lewis, Simon L, Malhi, Yadvinder, Marimon, Beatriz Schwantes, Marimon Junior, Ben Hur, Monteagudo Mendoza, Abel, Neill, David, Peñuela-Mora, Maria Cristina, Pitman, Nigel, Prieto, Adriana, Quesada, Carlos A, Ramírez, Fredy, Ramírez Angulo, Hirma, Rudas, Agustin, Ruschel, Ademir R, Salomão, Rafael P, de Andrade, Ana Segalin, Silva, J Natalino M, Silveira, Marcos, Simon, Marcelo F, Spironello, Wilson, ter Steege, Hans, Terborgh, John, Toledo, Marisol, Torres-Lezama, Armando, Vasquez, Rodolfo, Vieira, Ima Célia Guimarães, Vilanova, Emilio, Vos, Vincent A, Phillips, Oliver L, Wiens, John
    Publicado 2014
    “…This relationship is robust to assuming that diversification rates are either constant or decline over time, and occurs in a wide range of Neotropical tree lineages. This finding reveals the crucial role of intrinsic, ecological variation among clades for understanding the origin of the remarkable diversity of Amazonian trees and forests.…”
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  12. 1952
    “…To gain insight into the origins and evolutionary dynamics of endogenous retroviruses in felids, we have identified and characterized partial pro/pol ERV sequences from eight Neotropical wild cat species, belonging to three distinct lineages of Felidae. …”
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  13. 1953
    “…This pattern may be related to the high dispersal ability and wide environmental tolerance of A. omnicolor, highlighting the need for more phylogeographical studies with invertebrates and other generalist taxa, in order to understand the effects of Quaternary climate changes on Neotropical biodiversity.…”
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  14. 1954
    “…In this study, we investigate this hypothesis by analyzing 10 populations of Anemopaegma album (30 individuals per population) distributed through ca. 600 km of Neotropical savanna and covering most of the geographic range of this plant species. …”
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  15. 1955
    “…This article explores the complimentary roles that ecological and geographic filters play in limiting dispersal in aquatic species, and how these factors contribute to the accumulation of species richness over broad geographic and evolutionary time scales. ABSTRACT: The Neotropical freshwater ichthyofauna has among the highest species richness and density of any vertebrate fauna on Earth, with more than 5,600 species compressed into less than 12% of the world's land surface area, and less than 0.002% of the world's total liquid water supply. …”
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  16. 1956
    “…BACKGROUND: The Erythrinidae fish family contains three genera, Hoplias, Erythrinus and Hoplerythrinus widely distributed in Neotropical region. Remarkably, species from this family are characterized by an extensive karyotype diversity, with 2n ranging from 39 to 54 chromosomes and the occurrence of single and/or multiple sex chromosome systems in some species. …”
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  17. 1957
  18. 1958
  19. 1959
    “…The White-breasted Wood-Wren (Henicorhina leucosticta; hereafter “WBWW”) is an abundant Neotropical species with four mitochondrial clades (in Central America, the Darién, the Chocó and the Amazon) that are deeply divergent (~5–16% sequence divergence). …”
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  20. 1960
    “…To characterize shifts in chemical defenses, we chose six species of Inga, a speciose Neotropical tree genus. Focal species represent diverse chemical, morphological, and developmental defense traits and were collected from a single site in the Amazonian rainforest. …”
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