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如何让你的配偶展开——巨型药丸马陆(倍足纲:球马陆目)的“求偶之歌”

How to uncoil your partner--"mating songs" in giant pill-millipedes (Diplopoda: Sphaerotheriida).

作者信息

Wesener Thomas, Köhler Jörn, Fuchs Stefan, van den Spiegel Didier

机构信息

Research Museum Alexander Koenig, Sektion Myriapoda, Adenauerallee 160, 53113, Bonn, Germany.

出版信息

Naturwissenschaften. 2011 Nov;98(11):967-75. doi: 10.1007/s00114-011-0850-8. Epub 2011 Oct 5.

Abstract

The stridulation of the giant pill-millipede genus Sphaerotherium from South Africa, one of only three groups of millipedes that produce sounds, was studied. One hundred one stridulation series of a total of nine different species (Sphaerotherium dorsaloide, Sphaerotherium hanstroemi, Sphaerotherium mahaium, Sphaerotherium similare, Sphaerotherium punctulatum, Sphaerotherium convexitarsum, Sphaerotherium dorsale, Sphaerotherium rotundatum, and Sphaerotherium perbrincki) were analyzed. Stridulation sounds are produced only with a special field of ribs on the posterior surface of the posterior telopod, which is actively moved over a field of sclerotized nubs on the inner margin of the anal shield. The Sphaerotherium male usually stridulates only when in contact with a female to initiate mating. This seems to prevent the female from volvating into a ball or stimulate the female to uncoil when already rolled in. The sound analyzes revealed a broad frequency spectrum in all stridulation sounds produced, without obvious differences in frequency distribution among species. However, the temporal pattern of the stridulation varies greatly between species and seems to be species-specific, arguing for a species recognition function of the stridulation during courtship behavior. A single species (S. punctulatum) was found to stridulate during mating while three species also show postcopulatory stridulation. Apparently, pill-millipedes are not capable of acoustic perception, as no hearing organs are known, indicating that the communication is mainly based on perception of temporal vibration patterns, and not of the acoustic signal itself. The need to overcome the rolling-in reflex of the female is developed as a hypothesis why stridulation exists only in millipedes able to coil into a ball, and apparently evolved four times independently in the superorder Oniscomorpha.

摘要

对来自南非的巨型丸甲属球马陆进行了研究,球马陆是仅有的三组能发出声音的马陆之一。分析了总共9个不同物种(背状球马陆、汉氏球马陆、马海球马陆、相似球马陆、 punctulatum球马陆、凸跗球马陆、背球马陆、圆球马陆和佩氏球马陆)的101个发声系列。发声仅通过后足后部表面上的一个特殊肋条区域产生,该区域在肛盾内缘的硬化瘤区域上主动移动。球马陆雄性通常仅在与雌性交配接触时才发声。这似乎可防止雌性卷成球状或者在其已经卷成球状时刺激雌性展开。声音分析显示,所有产生的发声声音都有很宽的频谱,物种间的频率分布没有明显差异。然而,发声的时间模式在物种间有很大差异,似乎具有物种特异性,这表明发声在求偶行为中具有物种识别功能。发现单个物种( punctulatum球马陆)在交配时发声,还有三个物种在交配后也发声。显然,丸甲没有听觉感知能力,因为尚未发现听觉器官,这表明其交流主要基于对时间振动模式的感知,而非声音信号本身。作为一种假设,提出了克服雌性卷缩反射的需求,用以解释为什么发声仅存在于能够卷成球状的马陆中,并且显然在 Oniscomorpha 总目中独立进化了四次。

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