Rebora Manuela, Piersanti Silvana, Almaas Tor Jorgen, Gaino Elda
Dipartimento di Biologia Cellulare e Ambientale, Via Elce di Sotto, 06123 Perugia, Italy.
J Insect Physiol. 2007 Jun;53(6):550-8. doi: 10.1016/j.jinsphys.2007.02.006. Epub 2007 Mar 3.
Ultrastructural and electrophysiological (single-cell recordings) investigations were carried out on the coeloconic sensilla borne by the apical antenna of the larvae of Libellula depressa (Odonata: Libellulidae). These sensilla appear as pegs located in pits. One of them is a compound sensillum constituted of two fused pegs in a common pit and the other two are single pegs located in separated pits close to each other. Coeloconic sensilla show position and ultrastructural details very similar to those described in insect hygroreceptors. The electrophysiological recordings on the apical antennae of the last larval instar of L. depressa clearly show the presence of moist and dry cells responding antagonistically to humidity changes. This study gives the first evidence of hygroreceptors in dragonfly larvae and represents the first electrophysiological approach to larval sensilla of aquatic insects. The presence of hygroreceptors in L. depressa larvae is in agreement with the hygropositive response shown by these insects in laboratory and field behavioural experiments.
对蜻蜓(蜻蛉目:蜻蛉科)幼虫顶端触角上的腔锥感器进行了超微结构和电生理(单细胞记录)研究。这些感器表现为位于凹坑中的小突起。其中一个是复合感器,由位于一个共同凹坑中的两个融合小突起组成,另外两个是位于彼此靠近的分开凹坑中的单个小突起。腔锥感器的位置和超微结构细节与昆虫湿感受器中描述的非常相似。对蜻蜓最后一龄幼虫顶端触角的电生理记录清楚地表明存在对湿度变化产生拮抗反应的湿细胞和干细胞。这项研究首次证明了蜻蜓幼虫中存在湿感受器,并且是对水生昆虫幼虫感器的首次电生理研究方法。蜻蜓幼虫中存在湿感受器与这些昆虫在实验室和野外行为实验中表现出的喜湿反应一致。