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Fused Traditional and Geometric Morphometrics Demonstrate Pinniped Whisker Diversity

机译:融合的传统形态学和几何形态计量学展示了夹式晶须多样性

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摘要

Vibrissae (whiskers) are important components of the mammalian tactile sensory system, and primarily function as detectors of vibrotactile information from the environment. Pinnipeds possess the largest vibrissae among mammals and their vibrissal hair shafts demonstrate a diversity of shapes. The vibrissae of most phocid seals exhibit a beaded morphology with repeating sequences of crests and troughs along their length. However, there are few detailed analyses of pinniped vibrissal morphology, and these are limited to a few species. Therefore, we comparatively characterized differences in vibrissal hair shaft morphologies among phocid species with a beaded profile, phocid species with a smooth profile, and otariids with a smooth profile using traditional and geometric morphometric methods. Traditional morphometric measurements (peak-to-peak distance, crest width, trough width and total length) were collected using digital photographs. Elliptic Fourier analysis (geometric morphometrics) was used to quantify the outlines of whole vibrissae. The traditional and geometric morphometric datasets were subsequently combined by mathematically scaling each to true rank, followed by a single eigendecomposition. Quadratic discriminant function analysis demonstrated that 79.3, 97.8 and 100% of individuals could be correctly classified to their species based on vibrissal shape variables in the traditional, geometric and combined morphometric analyses, respectively. Phocids with beaded vibrissae, phocids with smooth vibrissae, and otariids each occupied distinct morphospace in the geometric morphometric and combined data analyses. Otariids split into two groups in the geometric morphometric analysis and gray seals appeared intermediate between beaded- and smooth-whiskered species in the traditional and combined analyses. Vibrissal hair shafts modulate the transduction of environmental stimuli to the mechanoreceptors in the follicle-sinus complex (F-SC), which results in vibrotactile reception, but it is currently unclear how the diversity of shapes affects environmental signal modulation.
机译:触须(须须)是哺乳动物触觉感觉系统的重要组成部分,主要起检测环境中触觉信息的作用。 Pinnipeds在哺乳动物中拥有最大的触须,其触须毛干表现出多种多样的形状。大多数phoicd海豹的触须表现出呈串珠状的形态,在其长度上具有波峰和波谷的重复序列。但是,很少有关于夹缝式纤毛形态的详细分析,并且这些分析仅限于几种。因此,我们使用传统的和几何形态计量学方法,比较了具有串珠轮廓的phocid物种,具有平滑轮廓的phocid物种和具有平滑轮廓的otariids的纤毛发干形态的差异。使用数字照片收集传统的形态测量值(峰到峰距离,峰顶宽度,谷宽和总长度)。椭圆傅里叶分析(几何形态计量学)用于量化整个触须的轮廓。随后通过对数学形态学数据集和数学形态学数据集进行数学缩放,将其按比例缩放到真实等级,然后进行单个特征分解。二次判别函数分析表明,在传统的,几何的和组合的形态分析中,可以分别基于振动形状变量将79.3%,97.8%和100%的人正确地分类为他们的物种。在几何形态计量学和组合数据分析中,带有串珠触须的触角,带有光滑触须的触角和otariids各自占据不同的形态空间。在几何形态分析中,Otariids分为两组,在传统分析和组合分析中,灰色印章出现在串珠和平滑晶须物种之间。纤维状毛干调节卵泡-窦复合物(F-SC)中机械感受器的环境刺激传导,从而导致触觉感受,但目前尚不清楚形状的多样性如何影响环境信号调制。

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