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利用几何形态测量学研究微观水生无脊椎动物的运动:蛭形轮虫模型物种摄食过程中的“模式”和运动模式

Exploring motion using geometric morphometrics in microscopic aquatic invertebrates: 'modes' and movement patterns during feeding in a bdelloid rotifer model species.

作者信息

Cardini Andrea, Melone Giulio, O'Higgins Paul, Fontaneto Diego

机构信息

Dipartimento di Scienze Chimiche e Geologiche, Università di Modena e Reggio Emilia, Via Campi 103, 41125, Modena, Italy.

School of Anatomy, Physiology and Human Biology, The University of Western Australia, 35 Stirling Highway, Crawley, WA, 6009, Australia.

出版信息

Mov Ecol. 2024 Jul 13;12(1):50. doi: 10.1186/s40462-024-00491-9.

Abstract

BACKGROUND

Movement is a defining aspect of animals, but it is rarely studied using quantitative methods in microscopic invertebrates. Bdelloid rotifers are a cosmopolitan class of aquatic invertebrates of great scientific interest because of their ability to survive in very harsh environment and also because they represent a rare example of an ancient lineage that only includes asexually reproducing species. In this class, Adineta ricciae has become a model species as it is unusually easy to culture. Yet, relatively little is known of its ethology and almost nothing on how it behaves during feeding.

METHODS

To explore feeding behaviour in A. ricciae, as well as to provide an example of application of computational ethology in a microscopic invertebrate, we apply Procrustes motion analysis in combination with ordination and clustering methods to a laboratory bred sample of individuals recorded during feeding.

RESULTS

We demonstrate that movement during feeding can be accurately described in a simple two-dimensional shape space with three main 'modes' of motion. Foot telescoping, with the body kept straight, is the most frequent 'mode', but it is accompanied by periodic rotations of the foot together with bending while the foot is mostly retracted.

CONCLUSIONS

Procrustes motion analysis is a relatively simple but effective tool for describing motion during feeding in A. ricciae. The application of this method generates quantitative data that could be analysed in relation to genetic and ecological differences in a variety of experimental settings. The study provides an example that is easy to replicate in other invertebrates, including other microscopic animals whose behavioural ecology is often poorly known.

摘要

背景

运动是动物的一个决定性特征,但在微观无脊椎动物中,很少使用定量方法进行研究。蛭形轮虫是一类世界性分布的水生无脊椎动物,具有很高的科学研究价值,因为它们能够在非常恶劣的环境中生存,而且它们代表了一个古老谱系的罕见例子,该谱系仅包括无性繁殖的物种。在这一类中,里氏阿迪纳轮虫已成为一种模式物种,因为它异常易于培养。然而,人们对其行为学了解相对较少,对于它在进食过程中的行为几乎一无所知。

方法

为了探究里氏阿迪纳轮虫的进食行为,并提供计算行为学在微观无脊椎动物中的应用实例,我们将普氏运动分析与排序和聚类方法相结合,应用于在进食过程中记录的实验室培育的个体样本。

结果

我们证明,进食过程中的运动可以在一个简单的二维形状空间中准确描述,有三种主要的运动“模式”。身体保持笔直时的足部伸缩是最常见的“模式”,但在足部大部分缩回时,会伴随着足部的周期性旋转以及弯曲。

结论

普氏运动分析是一种相对简单但有效的工具,用于描述里氏阿迪纳轮虫进食过程中的运动。这种方法的应用产生了定量数据,可以在各种实验环境中与遗传和生态差异相关联进行分析。该研究提供了一个易于在其他无脊椎动物中复制的实例,包括其他行为生态学往往鲜为人知的微观动物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d10/11245788/25d789f06d41/40462_2024_491_Fig1_HTML.jpg

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