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基于地标点的三种甲虫(鞘翅目,金龟总科)翅形态测量学

Landmark-Based Wing Morphometrics for Three Beetle Species (Coleoptera, Scarabaeoidea).

作者信息

Pan Pengliang, Guo Shibao, Zhang Fangmei, Zhou Zhou

机构信息

College of Agronomy, Xinyang Agriculture and Forestry University, Xinyang 464000, China.

出版信息

Biology (Basel). 2025 Mar 20;14(3):317. doi: 10.3390/biology14030317.

Abstract

The scarab beetle is an herbivorous pest that causes considerable damage to various agricultural crops. The characteristics of the hind wings have rarely been utilized as indicators for species identification, particularly within the genus . To evaluate the potential of hind wing traits in species identification and gender differentiation, we extracted 25 landmarks from 125 samples of three beetle species (, , and ) using TPSDig2 v2.31, with each hind wing image analyzed three times. These landmarks were employed to analyze variations in wing size and shape among species and sexes, and a cross-validation test was conducted in MorphoJ v1.06 to assess classification accuracy. The results demonstrate that both female and male samples exhibit significant differences in wing size and shape variations across species, but not between sexes. Allometry accounts for 16.92% and 25.35% of total shape variation in females and males, separately. After correcting for allometric effects, classification accuracy improves for these beetles. From further analysis, it can be observed that female wings exhibit a wider and shorter morphology in comparison to the more slender and elongated wings of males. In terms of interspecific differences, females displayed narrow and elongated wings, whereas females had a more rectangular wing shape. Among males, the degree of wing narrowness decreased in the order of , , and .

摘要

金龟子是一种食草害虫,会对多种农作物造成严重损害。后翅的特征很少被用作物种鉴定的指标,尤其是在该属内。为了评估后翅特征在物种鉴定和性别区分中的潜力,我们使用TPSDig2 v2.31从三种甲虫(、和)的125个样本中提取了25个地标点,每个后翅图像分析三次。这些地标点用于分析不同物种和性别的翅膀大小和形状变化,并在MorphoJ v1.06中进行交叉验证测试以评估分类准确性。结果表明,不同物种的雌性和雄性样本在翅膀大小和形状变化上均存在显著差异,但性别之间没有差异。异速生长分别占雌性和雄性总形状变化的16.92%和25.35%。在校正异速生长效应后,这些甲虫的分类准确性有所提高。通过进一步分析可以观察到,与雄性更细长的翅膀相比,雌性翅膀的形态更宽更短。在种间差异方面,雌性翅膀窄而长,而雌性翅膀形状更接近矩形。在雄性中,翅膀变窄的程度按、和的顺序递减。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e222/11939931/19997d0c5013/biology-14-00317-g001.jpg

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