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Discrimination of four Culex (Culex) species from the Neotropics based on geometric morphometrics

机译:基于几何形态计量学从新热带地区区分四种库蚊(Culex)物种

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Achieving correct identification of Culex species is difficult because many anatomical characters of larvae and females are polymorphic or overlap among distinct species. The overlapping is known to occur between Culex bidens, Cx. interfor, Cx. mollis and Cx. tatoi, from the subgenus Culex. The first three were incriminated in viruses' transmission in Argentina. The purpose was to distinguish between specimens of four species using geometric morphometric procedures. From field and entomological collections, 10 type I and 10 type II landmarks on the wings of females and the dorsomentum of larvae, respectively, were defined. The free morphometric software modules by J.P. Dujardin were used. Landmark coordinates were submitted to Procrustes and TPS analyses to generate size (centroid size, CS) and shape (partial warps, PW) variables. Size analysis was performed by nonparametric comparisons of CS measurements based on permutations, and shape, by submission of PW to discriminant analysis. Re-identification and identification of external specimens were also realized. Wing and Dm shapes gave similar results. The individuals arranged into three groups coinciding with Cx. bidens + Cx. interfor, Cx. mollis and Cx. tatoi. The latter two had a very different wing and Dm shapes. The accurate re-identification was greater than or equal to 77 % in all cases, and the identification of external specimens was achieved for all the species and both structures. Larval characters are more informative than female features. Geometric morphometrics, as a complementary tool, will facilitate identification in junction with others, such as DNA sequence analysis.
机译:实现对库蚊属物种的正确鉴定是困难的,因为幼虫和雌性的许多解剖特征是多态的或在不同物种之间重叠。已知重叠发生在库克斯伯德氏菌Cx之间。 interfor,Cx。 mollis和Cx。 tatoi,来自库克斯(Culex)属。前三个罪名是病毒在阿根廷的传播。目的是使用几何形态计量学方法区分四个物种的标本。从野外和昆虫学收集中,分别定义了雌性翅膀和幼虫背膜上的10个I型和II型地标。使用了J.P. Dujardin的免费形态测量软件模块。将地标坐标提交给Procrustes和TPS分析,以生成尺寸(质心尺寸,CS)和形状(局部变形,PW)变量。通过基于排列和形状的CS测量的非参数比较来进行大小分析,方法是将PW提交给判别分析。还实现了对外部标本的重新识别和识别。机翼和Dm形状给出了相似的结果。个人分为与Cx一致的三组。 bidens + Cx。 interfor,Cx。 mollis和Cx。塔塔伊。后两者的机翼和Dm形状非常不同。在所有情况下,准确的重新鉴定均大于或等于77%,并且对所有物种和两种结构均实现了外部标本的鉴定。幼虫的性格比女性特征更丰富。几何形态计量学作为一种辅助工具,将有助于与其他分子结合的鉴定,例如DNA序列分析。

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