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Geometric morphometrics for the taxonomy of 11 species of Anopheles (Nyssorhynchus) mosquitoes
Authors:N JARAMILLO‐O  J‐P DUJARDIN  D CALLE‐LONDOÑO  I FONSECA‐GONZÁLEZ
Institution:1. Instituto de Biología, Facultad de Ciencias Exactas y Naturales, Universidad de Antioquia UdeA, Medellín, Colombia;2. Institut de Recherche pour le Développement (IRD), UMR 177 IRD‐CIRAD INTERTRYP, Montpellier, France
Abstract:The subgenus Anopheles (Nyssorhynchus) (Diptera: Culicidae) includes the primary vectors of Plasmodium spp. in Colombia. Most adult females of this subgenus are difficult to identify in the field using the available keys. With the objective of further investigating the discriminatory power of modern morphometrics, both landmark‐based and outline‐based approaches were explored using the wing venation geometry of 11 Anopheles (Nyssorhynchus) species. Wing shape was able to separate the closest species of the subgenus. When the 11 species were analysed together, validated classification scores on average 5.3–8.6 times higher than those expected by chance were observed. These scores computed from the total sample of 11 species were not satisfactory for the recognition of Anopheles benarrochi B, Anopheles oswaldoi s.l. and Anopheles strodei. These sibling species were captured in sympatry. To improve the identification power of the morphometric tool, it was necessary to analyse these species separately from the remaining species. The best classification scores were obtained using a combination of 12 landmarks collected not only on the intersections of wing veins, but also on spots. An outline approach also gave excellent reclassification scores. Another pair of sibling species, collected in allopatry, Anopheles nuneztovari and Anopheles rangeli, also showed high classification scores.
Keywords:Elliptic Fourier analysis  generalized Procrustes analysis  malaria vectors  shape  size  taxonomy  Colombia
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