寄生蜂诱导双翅虫壳形可塑性的相对翘曲分析

E. Vasallo, J. Gorospe, M. Torres, R. Amparado, C. Demayo
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引用次数: 0

摘要

寄生常常影响腹足类动物的表型。导致的许多变化是由于感染引起的资源分配的变化。本研究量化了尾蚴及其中间寄主Bithynia sp.之间的寄主关系的某些方面。利用该方法研究了被寄生和未被寄生的Bithynia sp.蜗牛壳形状的显著差异。相对翘曲分析、判别分析和Kruskal-Wallis分析来确定两个种群的壳形差异。这些形状差异占壳形态相对于平均形状差异的35%以上。显然,可能是更宽的体螺、更大的孔、锥形到球形和更大的蜗牛更容易感染Bithynia sp.,或者是窄锥形、更小的孔、相对于壳形状较小的蜗牛更能抵抗寄生虫感染。因此,使用基于地标的几何形态计量学方法被证明对Bithynia sp.蜗牛的表征更为深刻,即使是在微妙的程度上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Relative Warp Analysis of Parasite–Induced Plasticity in the Shell Shape of Bithynia sp. (Bithyniidae)
Parasitism often influences the phenotype of gastropods. Many of the resulting changes are due to changes in resource allocation that come with infection. This investigation quantifies some aspects of the parasite-host relationship between cercariae and its intermediate host Bithynia sp. Noticeable differences in the shell shape of parasitized and uninfected Bithynia sp. snails were investigated using. Relative Warp Analysis, Discriminant analysis, and Kruskal-Wallis to determine shell shape divergence of the two populations. These shape divergence accounted for more than 35% of the variance in shell morphology relative to mean shape. Apparently, it may be that broader body whorl, wider aperture, conic to globose shape and bigger snails are more likely to become infected with Bithynia sp., or that narrowly conic, reduced aperture, small-sized relative to the shell shape are more resistant to parasite infections. Hence, the methodology using landmark-based geometric morphometric methods proved to be more profound for the characterization of Bithynia sp. snails even at a subtle degree.
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