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首页> 外文期刊>Arthropod Systematics & Phylogeny >Integrative taxonomy of genus Electrogena (Ephemeroptera: Heptageniidae): the role of innovative morphological analyses for species delimitation
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Integrative taxonomy of genus Electrogena (Ephemeroptera: Heptageniidae): the role of innovative morphological analyses for species delimitation

机译:电属(Ephemeroptera:Heptageniidae)的综合分类学:创新形态学分析对物种划界的作用

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The easy, fast and correct identification of species is a crucial aspect of biology and its applications, such as biomonitoring and nature conservation. One of the groups that are common but not easily to identify are mayflies at the larval stage. In recent years, many attempts to species identification using modern and non-traditional methods have been made. Two different approaches are used in most cases: i) DNA taxonomy and ii) modern image processing and classification. In this study, we combined both to describe the intrageneric genetical and morphological variability of the Central European representatives of the genus Electrogena Zurwerra & Tomka, 1985 – one of several mayfly groups with unclear taxonomy. We compared the classical morphometric method for Electrogena species identification with non-traditional Fourier shape descriptor analysis. In particular, we used Linear Discriminant Analysis and Fourier analysis to distinguish among operational taxonomic units defined by generalised mixed Yule-coalescent (GMYC) approach based on cytochrome c oxidase subunit I (cox1) barcoding gene. Our results demonstrate that the use of modern morphometric methods can significantly improve the proportion of correctly identified individuals to species level. Moreover, the Fourier shape descriptor based analysis revealed with a remarkably low error rate the geographically separated sub-species within the genus Electrogena. Our findings show the possibility of computer-aided mayfly (and possibly other insect orders) taxa identification based on selected body part shapes. These approaches might significantly improve routine invertebrate identification and comparability of identification results across different countries and/or among research teams. Better identification can in turn lead to higher robustness of metacommunity studies, ecological status assessment and other science and practice targeted studies based on invertebrate sampling and identification.
机译:轻松,快速和正确地识别物种是生物学及其应用(如生物监测和自然保护)的关键方面。幼虫阶段常见但不容易识别的群之一。近年来,已经进行了许多尝试使用现代和非传统方法进行物种鉴定。大多数情况下使用两种不同的方法:i)DNA分类法; ii)现代图像处理和分类。在这项研究中,我们将两者结合起来描述1985年Electrogena Zurwerra和Tomka属的中欧代表的内在遗传和形态变异-这是分类学不清楚的几个may类之一。我们将经典的形态计量学方法与非传统的傅立叶形状描述符分析相比较,以进行电属物种识别。特别是,我们使用线性判别分析和傅里叶分析来区分由基于细胞色素C氧化酶亚基I(cox1)条形码基因的广义混合Yule-coalescent(GMYC)方法定义的操作分类单位。我们的结果表明,使用现代形态计量学方法可以显着提高正确识别的个体与物种水平的比例。此外,基于傅立叶形状描述符的分析以极低的错误率揭示了电子属中地理上分离的亚种。我们的发现表明,可以根据选定的身体部位形状,对计算机辅助的may蝇(可能还有其他昆虫纲)分类群进行识别。这些方法可能会显着改善常规无脊椎动物的鉴定以及不同国家和/或研究团队之间鉴定结果的可比性。更好的识别反过来又可以提高基于无脊椎动物采样和识别的元社区研究,生态状况评估以及其他科学和实践针对性研究的可靠性。

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