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小龙虾触角对水动力刺激的反应特性:侧鞭和中鞭的功能差异。

Response properties of crayfish antennules to hydrodynamic stimuli: functional differences in the lateral and medial flagella.

机构信息

Faculty of Fisheries, Kagoshima University, Shimoarata, Kagoshima City, 890-0056, Japan.

出版信息

J Exp Biol. 2010 Nov 1;213(Pt 21):3683-91. doi: 10.1242/jeb.046011.

Abstract

Antennules have been reported to influence localization of distant food odors, sex discrimination, and agonistic and social behaviors of decapod crustaceans. Although olfaction by the antennules is largely recognized, information on the sensitivity of antennules to hydrodynamic stimuli has been scant. In red swamp crayfish Procambarus clarkii antennules, mechanosensory setae outnumber the chemosensory setae. We studied the mechanosensitivity of crayfish antennules by recording neural activities from isolated antennules in response to sinusoidal dipole stimuli. Both the lateral and the medial flagellum of the antennules responded to hydrodynamic stimuli, although the medial flagellum showed more sensitivity at frequencies higher than 60 Hz. The most dominant setae present on the stimulated site were the simple setal type. Although both lateral and medial flagella are capable of detecting chemical and hydrodynamic cues, results from neural responses, morphological observations and antennular behavior observations indicate that the lateral flagellum of P. clarkii functions as an olfactory organ whereas the medial flagellum complements as a hydrodynamic receptor. It appears that in crayfish antennular sensory processing, crayfish simultaneously use chemical and hydrodynamic information. We have compared our data with the threshold of fish lateral line to the same stimuli and we discuss probable similarities in response properties.

摘要

触角已被报道可影响远距离食物气味的定位、性别识别以及十足目甲壳动物的争斗和社交行为。尽管触角的嗅觉作用已被广泛认可,但有关触角对水动力刺激的敏感性的信息却很少。在红沼泽螯虾 Procambarus clarkii 的触角中,机械感觉刚毛的数量超过了化学感觉刚毛。我们通过记录对正弦偶极子刺激做出反应的离体触角的神经活动来研究螯虾触角的机械敏感性。触角的外侧和内侧鞭毛都对水动力刺激有反应,尽管内侧鞭毛在高于 60 Hz 的频率下显示出更高的敏感性。在受刺激部位存在的最主要的刚毛是简单刚毛类型。尽管外侧和内侧鞭毛都能够检测化学和水动力线索,但神经反应、形态观察和触角行为观察的结果表明,P. clarkii 的外侧鞭毛起嗅觉器官的作用,而内侧鞭毛则作为水动力受体起到补充作用。似乎在螯虾触角的感觉处理中,螯虾同时使用化学和水动力信息。我们将我们的数据与鱼类侧线对相同刺激的阈值进行了比较,并讨论了可能在响应特性上的相似之处。

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