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通过系统发育比较方法对Agathemera Stål属(昆虫纲:竹节虫目)八个物种的卵进行比较形态学研究。

Comparative morphology of the eggs from the eight species in the genus <br />Agathemera Stål (Insecta: Phasmatodea), through phylogenetic comparative method approach.

作者信息

Cubillos Claudio, Vera Alejandro

机构信息

Landcare Research, Private Bag 92170, Auckland, New Zealand..

出版信息

Zootaxa. 2020 Jun 29;4803(3):zootaxa.4803.3.8. doi: 10.11646/zootaxa.4803.3.8.

Abstract

Morphology of Phasmatodea eggs is remarkably diverse and highly valuable in taxonomic research. Two alterative hypotheses have been proposed to describe the phylogenetic relationship of the species from the genus Agathemera Stål. Additionally, descriptions of the egg morphology within Agathemera have been done based on the eggs of two species. This small sample size does not represent the diverse egg morphology along the genus, thus we attempt to describe the eggs from all the known Agathemera species. The main goal of the present study is to determine whether the evolution of the eggs occurred through either divergent or convergent evolution. We based our descriptions on morphometrics, morphology and the ultrastructure. For data analysis, principal component analysis (PCA) was performed on morphometric variables and the characters emerged from the morphological and ultrastructure were mapped over the molecular phylogeny. The results show that it is possible to discriminate among species using the morphology of the different egg structures, and furthermore, a divergent event at the base of the tree, differentiate the overall egg shape and the internal micropylar plate shape. Finally, we conclude that both divergent and convergent evolution are shaping the different structures of the Agathemera eggs.

摘要

竹节虫目昆虫卵的形态极为多样,在分类学研究中具有很高的价值。关于阿加西美拉属(Agathemera Stål)物种的系统发育关系,已提出两种不同的假说。此外,对阿加西美拉属昆虫卵形态的描述仅基于两个物种的卵。如此小的样本量并不能代表该属多样的卵形态,因此我们试图描述所有已知阿加西美拉属物种的卵。本研究的主要目的是确定卵的进化是通过趋异进化还是趋同进化发生的。我们基于形态测量学、形态学和超微结构进行描述。在数据分析方面,对形态测量变量进行主成分分析(PCA),并将从形态学和超微结构中得出的特征映射到分子系统发育树上。结果表明,利用不同卵结构的形态可以区分物种,此外,在系统发育树基部的一次趋异事件,使整体卵的形状和内部卵孔板的形状产生了差异。最后,我们得出结论,趋异进化和趋同进化都在塑造阿加西美拉属昆虫卵的不同结构。

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