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Titlebook: Avian Malaria and Related Parasites in the Tropics; Ecology, Evolution a Diego Santiago-Alarcon,Alfonso Marzal Book 2020 Springer Nature Sw

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https://doi.org/10.1007/978-4-431-68442-8resembled the human malaria parasites described by Laveran few years before. Since then, bird haemosporidians have represented an excellent model for the study of host–parasite interactions. For many years, important advances in medical parasitology and malaria research, as well as other ecological,
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Phylogenetics and Systematics in a Nutshell,nterpret phylogenetic hypotheses: for instance, to understand nucleotide substitution models, what a molecular clock is, tree selection methods (e.g., Maximum Parsimony, Maximum Likelihood, Bayesian), how to interpret node support values, and testing tree topologies (e.g., Kishino-Hasegawa). Finally
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Diptera Vectors of Avian Haemosporidians: With Emphasis on Tropical Regions,group of parasites. This chapter introduces the Diptera families that are commonly associated with the transmission of avian haemosporidian parasites and describes the sexual and sporogonic processes that ultimately produce sporozoites, the infective stage to vertebrate hosts. A brief historical per
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Ecological Niche Modeling and Other Tools for the Study of Avian Malaria Distribution in the Neotroies that have implemented modeling approaches, particularly correlative methods commonly used in ENM and SDM, to assess questions of either parasites, vectors, or host species in avian malaria. We identify that most commonly approached topics include the description of geographic distributions (biog
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Island Biogeography of Avian Haemosporidians in the Neotropical Region,ces, the first with sequences of the genus . (. = 366, 346 bp) and the second with . (. = 228, 443 bp) sequences, including sequences from the continental Americas as reference. We used lineages representing unique sequence haplotypes with at least one different base pair. We found a positive nonsig
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