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[社会互动过程中的间歇性放电:亚洲胡子鲶的一个例子]

[Episodic electric discharges in the course of social interactions: an example of Asian clariid catfish].

作者信息

Ol'shnskiî V M, Soldatova O A, Nguen Tkhi Nga

出版信息

Zh Obshch Biol. 2011 May-Jun;72(3):198-213.

Abstract

Function of weak electric discharges is conclusively proved only for two fish orders - Mormyriformes and Gymnotiformes. Every specimen of the two groups emits electric discharges continuously or quite regularly for location, orientation and communication. The function of weak episodic electric discharges in other groups of weakly electric fish - Rajiformes, Uranoscopidae and Siluriformes, remains the puzzle since Darwin. Recent experiments made it possible to expand the list of weakly electric fish with episodic discharges. The range of behavioral situations accompanied with electric emission has been expanded as well. For instance, Asian catfish, Clarias macrocephalus, emit episodic discharges while in aggressive and spawning behavior. Asian catfish females emit the special burst of electrical discharges as a part of mating ritual. This burst cannot serve as an invitation to spawning or synchronization of reproductive products release, because females emit it after the sperm ejection. If females would need males' help for eggs release, it could be suggested that discharges assist in their mutual efforts. Since the electric field strength near fish is higher than fish's non-specialized electrical sensitivity thresholds, other hypotheses are possible. For example, it could be suggested that electric fields would make sperm or eggs more active. To proceed in our conception about episodic discharges function, new hardware and software are needed.

摘要

弱电放电的功能仅在两个鱼类目——长颌鱼目和裸背电鳗目——中得到了确凿证明。这两组中的每个标本都会持续或相当规律地发出弱电放电,用于定位、定向和交流。自达尔文时代以来,弱电偶发性放电在其他弱电鱼类群体——鳐形目、瞻星鱼科和鲶形目——中的功能一直是个谜。最近的实验使得偶发性放电的弱电鱼类名单得以扩充。伴随电发射的行为情境范围也有所扩大。例如,亚洲鲶鱼,即巨鲶,在攻击行为和产卵行为中会发出偶发性放电。亚洲鲶鱼雌性在交配仪式中会发出特殊的电脉冲爆发。这种爆发不能作为产卵的信号或生殖产物释放同步的信号,因为雌性是在精子排出后才发出这种信号。如果雌性在排出卵子时需要雄性的帮助,那么可以认为放电有助于它们的共同行动。由于鱼附近的电场强度高于鱼的非专门化电敏感阈值,所以也可能存在其他假设。例如,可以认为电场会使精子或卵子更活跃。为了推进我们对偶发性放电功能的认识,需要新的硬件和软件。

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