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      Surveillance of avian malaria and related haemoparasites in common terns ( Sterna hirundo) on the Atlantic coast of South America

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          Abstract

          Abstract

          Haemosporidia (Apicomplexa, Haemosporida) are protozoa that infect vertebrate blood cells and are transmitted by vectors. Among vertebrates, birds possess the greatest diversity of haemosporidia, historically placed in 3 genera: Haemoproteus, Leucocytozoon and Plasmodium, the causative agent of avian malaria. In South America, existing data on haemosporidia are spatially and temporally dispersed, so increased surveillance is needed to improve the determination and diagnosis of these parasites. During the non-breeding season in 2020 and 2021, 60 common terns ( Sterna hirundo) were captured and bled as part of ongoing research on the population health of migratory birds on the Argentinian Atlantic coast. Blood samples and blood smears were obtained. Fifty-eight samples were screened for Plasmodium, Haemoproteus and Leucocytozoon, as well as for Babesia parasites by nested polymerase chain reaction and by microscopic examination of smears. Two positive samples for Plasmodium were found. The cytochrome b lineages detected in the present study are found for the first time, and are close to Plasmodium lineages found in other bird orders. The low prevalence (3.6%) of haemoparasites found in this research was similar to those reported for previous studies on seabirds, including Charadriiformes. Our findings provide new information about the distribution and prevalence of haemosporidian parasites from charadriiforms in the southernmost part of South America, which remains understudied.

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          popart: full-feature software for haplotype network construction

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            A greedy algorithm for aligning DNA sequences.

            For aligning DNA sequences that differ only by sequencing errors, or by equivalent errors from other sources, a greedy algorithm can be much faster than traditional dynamic programming approaches and yet produce an alignment that is guaranteed to be theoretically optimal. We introduce a new greedy alignment algorithm with particularly good performance and show that it computes the same alignment as does a certain dynamic programming algorithm, while executing over 10 times faster on appropriate data. An implementation of this algorithm is currently used in a program that assembles the UniGene database at the National Center for Biotechnology Information.
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              BioEdit: a user-friendly biological sequences alignment editor and analysis program for Windows 97/98/ NT

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                Author and article information

                Journal
                Parasitology
                Parasitology
                PAR
                Parasitology
                Cambridge University Press (Cambridge, UK )
                0031-1820
                1469-8161
                May 2023
                09 March 2023
                : 150
                : 6
                : 498-504
                Affiliations
                [1 ]Centro de Estudios Parasitológicos y de Vectores (CEPAVE), FCNyM, UNLP, CONICET , Boulevard 120 s/n e/61 y 62, 1900 La Plata, Argentina
                [2 ]Department of Animal Ecology & Systematics, Justus Liebig University , Heinrich-Buff-Ring 26-32, IFZD-35392 Giessen, Germany
                [3 ]Oniris, INRAE, BIOEPAR , 44300, Nantes, France
                [4 ]Departamento de Ecofisiología y Ecotoxicología, Instituto Antártico Argentino (DNA) , 25 de Mayo 1143, San Martín, Buenos Aires, Argentina
                [5 ]Reserva Natural Bahía Samborombón, Dirección de Áreas Protegidas, Ministerio de Ambiente , Buenos Aires, Argentina
                Author notes
                Author for correspondence: Sofía Capasso, E-mail: capasso.sofia@ 123456gmail.com
                Author information
                https://orcid.org/0000-0002-7512-7458
                https://orcid.org/0000-0001-5095-3414
                Article
                S0031182023000185
                10.1017/S0031182023000185
                10260293
                36892015
                78086b60-8ba3-4c9e-ba69-ef50a665b105
                © The Author(s) 2023

                This is an Open Access article, distributed under the terms of the Creative Commons Attribution licence ( http://creativecommons.org/licenses/by/4.0/), which permits unrestricted re-use, distribution and reproduction, provided the original article is properly cited.

                History
                : 05 August 2022
                : 18 February 2023
                : 21 February 2023
                Page count
                Figures: 2, Tables: 1, References: 57, Pages: 7
                Funding
                Funded by: Universidad Nacional de La Plata, doi http://dx.doi.org/10.13039/501100003947;
                Award ID: N859
                Funded by: Fondo para la Investigación Científica y Tecnológica
                Award ID: PICT-2019-3115
                Funded by: Consejo Nacional de Investigaciones Científicas y Técnicas, doi http://dx.doi.org/10.13039/501100002923;
                Award ID: PIP-1787
                Funded by: German Academic Exchange Services
                Award ID: DAAD
                Categories
                Research Article

                Parasitology
                argentine atlantic coast,avian blood parasites,charadriiformes,cytochrome b gene,migratory birds,plasmodium

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