Literature DB >> 10555272

Ionic currents that contribute to a sexually dimorphic communication signal in weakly electric fish.

G T Smith1.   

Abstract

Weakly electric fish produce a communication signal, the electric organ discharge, that is species specific, and in many species, sexually dimorphic. Because the neural circuit that controls the electric organ discharge is relatively simple, it is an excellent model in which to study both the biophysical mechanisms underlying a rhythmic behavior and the neuroendocrine control of a sexually dimorphic behavior. By studying the effects of ion channel blockers on neurons in the medullary pacemaker nucleus, I pharmacologically characterized three ionic currents that influence the pacemaker rhythm, and thus electric organ discharge frequency, in the gymnotiform fish, Apteronotus leptorhynchus. These currents included a tetrodotoxin-sensitive sodium current; a potassium current that was sensitive to 4-aminopyridine; and a calcium current that was sensitive to nickel and cadmium, but resistant to specific blockers of L-, N-, P-, and Q-type calcium currents. The pharmacological profiles of the ionic currents in the pacemaker nucleus are similar to those of ionic currents involved in pacemaking in other neuronal oscillators. Because these ionic currents dramatically influence pacemaker firing frequency, which is directly related to electric organ discharge frequency, these ionic currents are likely targets of steroid hormone action in producing sexual dimorphisms in electric organ discharge frequency. Additional studies are needed to determine how these ionic currents interact to generate the electric organ discharge rhythm and to investigate the possibility that sexual dimorphism in the electric organ discharge results from the actions of gonadal steroids on these ionic currents.

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Year:  1999        PMID: 10555272     DOI: 10.1007/s003590050398

Source DB:  PubMed          Journal:  J Comp Physiol A            Impact factor:   1.836


  3 in total

1.  The long-term resetting of a brainstem pacemaker nucleus by synaptic input: a model for sensorimotor adaptation.

Authors:  Jörg Oestreich; Harold H Zakon
Journal:  J Neurosci       Date:  2002-09-15       Impact factor: 6.167

2.  Evolution of electric communication signals in the South American ghost knifefishes (Gymnotiformes: Apteronotidae): A phylogenetic comparative study using a sequence-based phylogeny.

Authors:  Adam R Smith; Melissa R Proffitt; Winnie W Ho; Claire B Mullaney; Javier A Maldonado-Ocampo; Nathan R Lovejoy; José A Alves-Gomes; G Troy Smith
Journal:  J Physiol Paris       Date:  2016-10-18

3.  Genes linked to species diversity in a sexually dimorphic communication signal in electric fish.

Authors:  G Troy Smith; Melissa R Proffitt; Adam R Smith; Douglas B Rusch
Journal:  J Comp Physiol A Neuroethol Sens Neural Behav Physiol       Date:  2017-10-20       Impact factor: 1.836

  3 in total

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