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螨虫卓越的奔跑和转向性能。

Exceptional running and turning performance in a mite.

作者信息

Rubin Samuel, Young Maria Ho-Yan, Wright Jonathan C, Whitaker Dwight L, Ahn Anna N

机构信息

Department of Chemical and Systems Biology, Stanford University School of Medicine, Stanford, CA 94305, USA.

Department of Biology, Pomona College, Claremont, CA 91711, USA.

出版信息

J Exp Biol. 2016 Mar;219(Pt 5):676-85. doi: 10.1242/jeb.128652. Epub 2016 Jan 19.

Abstract

The Southern California endemic mite Paratarsotomus macropalpis was filmed in the field on a concrete substrate and in the lab to analyze stride frequency, gait and running speed under different temperature conditions and during turning. At ground temperatures ranging from 45 to 60 °C, mites ran at a mean relative speed of 192.4 ± 2.1 body lengths (BL) s(-1), exceeding the highest previously documented value for a land animal by 12.5%. Stride frequencies were also exceptionally high (up to 135 Hz), and increased with substrate temperature. Juveniles exhibited higher relative speeds than adults and possess proportionally longer legs, which allow for greater relative stride lengths. Although mites accelerated and decelerated rapidly during straight running (7.2 ± 1.2 and -10.1 ± 2.1 m s(-2), respectively), the forces involved were comparable to those found in other animals. Paratarsotomus macropalpis employs an alternating tetrapod gait during steady running. Shallow turns were accomplished by a simple asymmetry in stride length. During tight turns, mites pivoted around the tarsus of the inside third leg (L3), which thus behaved like a grappling hook. Pivot turns were characterized by a 42% decrease in turning radius and a 40% increase in angular velocity compared with non-pivot turns. The joint angle amplitudes of the inner L2 and L3 were negligible during a pivot turn. While exceptional, running speeds in P. macropalpis approximate values predicted from inter-specific scaling relationships.

摘要

南加州特有的螨类物种大足拟壁螨(Paratarsotomus macropalpis)在野外的混凝土基质上以及实验室中被拍摄,以分析其在不同温度条件下以及转弯时的步频、步态和奔跑速度。在地面温度为45至60°C的范围内,螨类的平均相对速度为192.4±2.1体长(BL)/秒,比之前记录的陆地动物的最高值高出12.5%。步频也异常高(高达135赫兹),并且随着基质温度的升高而增加。幼螨的相对速度比成螨更高,且腿部比例更长,这使得它们的相对步幅更大。尽管螨类在直线奔跑时加速和减速都很快(分别为7.2±1.2米/秒²和 -10.1±2.1米/秒²),但所涉及的力与其他动物的力相当。大足拟壁螨在稳定奔跑时采用交替四足步态。浅转弯通过步长的简单不对称来完成。在急转弯时,螨类围绕内侧第三条腿(L3)的跗节旋转,因此该跗节的作用类似于一个抓钩。与非旋转转弯相比,旋转转弯的特点是转弯半径减小42%,角速度增加40%。在旋转转弯过程中,内侧L2和L3的关节角度幅度可以忽略不计。尽管大足拟壁螨的奔跑速度异常,但它接近从种间比例关系预测的值。

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