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具有明显体重差异的柄眼目腹足动物(软体动物)的齿舌力量表现。

Radular force performance of stylommatophoran gastropods (Mollusca) with distinct body masses.

机构信息

Department of Mammalogy and Palaeoanthropology, Center of Natural History (CeNak), Universität Hamburg, Martin-Luther-King-Platz 3, 20146, Hamburg, Germany.

Department of Functional Morphology and Biomechanics, Zoological Institute, Christian-Albrechts-Universität zu Kiel, Am Botanischen Garten 9, 24118, Kiel, Germany.

出版信息

Sci Rep. 2021 May 18;11(1):10560. doi: 10.1038/s41598-021-89892-z.

Abstract

The forces exerted by the animal's food processing structures can be important parameters when studying trophic specializations to specific food spectra. Even though molluscs represent the second largest animal phylum, exhibiting an incredible biodiversity accompanied by the establishment of distinct ecological niches including the foraging on a variety of ingesta types, only few studies focused on the biomechanical performance of their feeding organs. To lay a keystone for future research in this direction, we investigated the in vivo forces exerted by the molluscan food gathering and processing structure, the radula, for five stylommatophoran species (Gastropoda). The chosen species and individuals have a similar radular morphology and motion, but as they represent different body mass classes, we were enabled to relate the forces to body mass. Radular forces were measured along two axes using force transducers which allowed us to correlate forces with the distinct phases of radular motion. A radular force quotient, AFQ = mean Absolute Force/bodymass, of 4.3 could be determined which can be used further for the prediction of forces generated in Gastropoda. Additionally, some specimens were dissected and the radular musculature mass as well as the radular mass and dimensions were documented. Our results depict the positive correlation between body mass, radular musculature mass, and exerted force. Additionally, it was clearly observed that the radular motion phases, exerting the highest forces during feeding, changed with regard to the ingesta size: all smaller gastropods rather approached the food by a horizontal, sawing-like radular motion leading to the consumption of rather small food particles, whereas larger gastropods rather pulled the ingesta in vertical direction by radula and jaw resulting in the tearing of larger pieces.

摘要

当研究特定食物光谱的营养特化时,动物的食物加工结构所施加的力可能是重要的参数。尽管软体动物是第二大动物门,具有令人难以置信的生物多样性,并建立了独特的生态位,包括对各种食源类型的觅食,但只有少数研究关注其摄食器官的生物力学性能。为了为今后在这一方向的研究奠定基础,我们研究了 5 种柄眼目腹足纲软体动物的食物采集和加工结构——齿舌所产生的体内力。选择的物种和个体具有相似的齿舌形态和运动,但由于它们代表不同的体重类别,我们能够将力与体重联系起来。使用力传感器沿两个轴测量齿舌力,这使我们能够将力与齿舌运动的不同阶段相关联。可以确定齿舌力商(AFQ=平均绝对力/体重)为 4.3,可进一步用于预测腹足纲动物产生的力。此外,一些标本被解剖,记录了齿舌肌肉质量以及齿舌质量和尺寸。我们的结果描绘了体重、齿舌肌肉质量和施力之间的正相关关系。此外,还清楚地观察到,在摄食过程中施加最高力的齿舌运动阶段会因食物大小而发生变化:所有较小的腹足动物通过水平、锯状的齿舌运动接近食物,导致消耗较小的食物颗粒,而较大的腹足动物则通过齿舌和颚将食物拉入垂直方向,导致较大的食物撕裂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/870e/8131350/55b8ec3a1f41/41598_2021_89892_Fig1_HTML.jpg

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