PUBLICATION

Ca2+-imaging and photo-manipulation of the simple gut of zebrafish larvae in vivo

Authors
Okamoto, S.I., Hatta, K.
ID
ZDB-PUB-220209-5
Date
2022
Source
Scientific Reports   12: 2018 (Journal)
Registered Authors
Hatta, Kohei
Keywords
none
MeSH Terms
  • Animals
  • Animals, Genetically Modified
  • Calcium/metabolism*
  • Calcium Signaling/physiology*
  • Intestines/innervation
  • Intestines/physiology*
  • Larva*
  • Models, Animal
  • Muscle Contraction
  • Muscle, Smooth/metabolism
  • Muscle, Smooth/physiology*
  • Neurons/physiology
  • Peristalsis/physiology*
  • Photic Stimulation
  • Zebrafish*
PubMed
35132112 Full text @ Sci. Rep.
Abstract
Zebrafish larval gut could be considered as an excellent model to study functions of vertebrate digestive organs, by virtue of its simplicity and transparency as well as the availability of mutants. However, there has been scant investigation of the detailed behavior of muscular and enteric nervous systems to convey bolus, an aggregate of digested food. Here we visualized peristalsis using transgenic lines expressing a genetically encoded Ca2+ sensor in the circular smooth muscles. An intermittent Ca2+ signal cycle was observed at the oral side of the bolus, with Ca2+ waves descending and ascending from there. We also identified a regular cycle of weaker movement that occurs regardless of the presence or absence of bolus, corresponding likely to slow waves. Direct photo-stimulation of circular smooth muscles expressing ChR2 could cause local constriction of the gut, while the stimulation of a single or a few neurons could cause the local induction or arrest of gut movements. These results indicate that the larval gut of zebrafish has basic features found in adult mammals despite the small number of enteric neurons, providing a foundation for the study, at the single-cell level in vivo, in controlling the gut behaviors in vertebrates.
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Mutations / Transgenics
Human Disease / Model
Sequence Targeting Reagents
Fish
Antibodies
Orthology
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Mapping