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长颌鱼目弱电鱼的电器官放电多样化与电压门控离子通道基因的差异表达有关。

Electric organ discharge diversification in mormyrid weakly electric fish is associated with differential expression of voltage-gated ion channel genes.

作者信息

Nagel Rebecca, Kirschbaum Frank, Tiedemann Ralph

机构信息

Institute of Biochemistry and Biology, Unit of Evolutionary Biology/Systematic Zoology, University of Potsdam, Karl-Liebknecht-Str. 24-25, House 26, 14476, Potsdam, Germany.

Faculty of Life Sciences, Albrecht Daniel Thaer-Institute of Agricultural and Horticultural Sciences, Unit of Biology and Ecology of Fishes, Humboldt University of Berlin, Philippstr. 13, House 16, 10115, Berlin, Germany.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2017 Mar;203(3):183-195. doi: 10.1007/s00359-017-1151-2. Epub 2017 Feb 23.

Abstract

In mormyrid weakly electric fish, the electric organ discharge (EOD) is used for species recognition, orientation and prey localization. Produced in the muscle-derived adult electric organ, the EOD exhibits a wide diversity across species in both waveform and duration. While certain defining EOD characteristics can be linked to anatomical features of the electric organ, many factors underlying EOD differentiation are yet unknown. Here, we report the differential expression of 13 Kv1 voltage-gated potassium channel genes, two inwardly rectifying potassium channel genes, two previously studied sodium channel genes and an ATPase pump in two sympatric species of the genus Campylomormyrus in both the adult electric organ and skeletal muscle. Campylomormyrus compressirostris displays a basal EOD, largely unchanged during development, while C. tshokwe has an elongated, putatively derived discharge. We report an upregulation in all Kv1 genes in the electric organ of Campylomormyrus tshokwe when compared to both skeletal muscle and C. compressirostris electric organ. This pattern of upregulation in a species with a derived EOD form suggests that voltage-gated potassium channels are potentially involved in the diversification of the EOD signal among mormyrid weakly electric fish.

摘要

在长颌鱼科弱电鱼中,电器官放电(EOD)用于物种识别、定向和猎物定位。EOD由成年肌肉衍生的电器官产生,其波形和持续时间在不同物种间表现出广泛的多样性。虽然某些确定的EOD特征可与电器官的解剖特征相关联,但EOD分化的许多潜在因素仍不为人知。在此,我们报告了13个Kv1电压门控钾通道基因、两个内向整流钾通道基因、两个先前研究过的钠通道基因以及一个ATP酶泵在成年电器官和骨骼肌中的差异表达,这些基因存在于弯颌长颌鱼属的两个同域物种中。弯颌长颌鱼的EOD较为基础,在发育过程中基本不变,而乔氏弯颌长颌鱼的放电则拉长,可能是衍生而来的。与骨骼肌和弯颌长颌鱼的电器官相比,我们发现乔氏弯颌长颌鱼电器官中所有Kv1基因均上调。在具有衍生EOD形式的物种中的这种上调模式表明,电压门控钾通道可能参与了长颌鱼科弱电鱼中EOD信号的多样化。

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