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首页> 外文期刊>Journal of Basic and Applied Sciences >Lifescience Global :: Abstract : Detecting Intraspecific Character Displacement by Morphological Markers in Riverine-Dwelling Invertebrate Larvae: The Case Study of Head Shape Variability in Leuctra fusca (Plecoptera: Leuctridae)
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Lifescience Global :: Abstract : Detecting Intraspecific Character Displacement by Morphological Markers in Riverine-Dwelling Invertebrate Larvae: The Case Study of Head Shape Variability in Leuctra fusca (Plecoptera: Leuctridae)

机译:生命科学全球::摘要:通过形态标记在河栖无脊椎动物幼虫中检测种内字符的位移:真角实(Lectra fusca)(Plecoptera:Leuctridae)的头部形状变异性的案例研究

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 Since morphological markers are recognized as useful tools to evaluate events of anthropic disturbances, we performed a preliminary study on head shape variability in the riverine-dwelling Leuctra fusca larvae as early alarm systems in running waters. Particularly, heads of 32 larvae were collected from two localities of River Aniene (central Italy) and photographed for digitizing landmarks and semilandmarks. The Cartesian x-y coordinates of all points were firstly converted to shape coordinates by Procrustes superimposition, and then analyzed for exploring the full potential of the application of geometric morphometric techniques. Where the principal component analysis revealed a clear pattern of variation between the 2 sampling sites, the Procrustes ANOVA highlighted this variation as highly associated with fluctuating asymmetry, the latter being traditionally connected with developmental accidents due to environmental conditions. No directional asymmetry was observed. Finally we didna??t find any pattern of allometric variation in the studied structure. Our study indicates that further studies ought to be employed to use geometric morphometrics as a valid tool for detecting and describing morphological variation as biomarkers in invertebrate organism such as stoneflies.
机译:由于形态标记被认为是评估人为干扰事件的有用工具,因此,我们对居住在河中的Leuctra fusca幼虫的头部形状变异性进行了初步研究,以此作为自来水的早期警报系统。特别是,从阿尼内河(意大利中部)的两个地方收集了32个幼虫的头,并拍照以对地标和半地标进行数字化处理。首先通过Procrustes叠加将所有点的笛卡尔x-y坐标转换为形状坐标,然后进行分析,以探索利用几何形态计量学技术的全部潜力。当主成分分析显示出两个采样点之间存在明显的变化模式时,Procrustes方差分析强调了这种变化与不对称波动高度相关,后者通常与环境条件引起的发展事故有关。没有观察到方向不对称。最终,我们在研究的结构中没有找到任何异速变化的模式。我们的研究表明,应进一步开展研究,以使用几何形态计量学作为检测和描述无脊椎动物(如石蝇)中生物标志物形态变化的有效工具。

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