Immediate-Early Promoter-Driven Transgenic Reporter System for Neuroethological Research in a Hemimetabolous Insect.
Takayuki WatanabeAtsushi UgajinHitoshi AonumaPublished in: eNeuro (2018)
Genes expressed in response to increased neuronal activity are widely used as activity markers in recent behavioral neuroscience. In the present study, we established transgenic reporter system for whole-brain activity mapping in the two-spotted cricket Gryllus bimaculatus, a hemimetabolous insect used in neuroethology and behavioral ecology. In the cricket brain, a homolog of early growth response-1 (Gryllus egr-B) was rapidly induced as an immediate-early gene (IEG) in response to neuronal hyperexcitability. The upstream genomic fragment of Gryllus egr-B contains potential binding sites for transcription factors regulated by various intracellular signaling pathways, as well as core promoter elements conserved across insect/crustacean egr-B homologs. Using the upstream genomic fragment of Gryllus egr-B, we established an IEG promoter-driven transgenic reporter system in the cricket. In the brain of transgenic crickets, the reporter gene (a nuclear-targeted destabilized EYFP) was induced in response to neuronal hyperexcitability. Inducible expression of reporter protein was detected in almost all neurons after neuronal hyperexcitability. Using our novel reporter system, we successfully detected neuronal activation evoked by feeding in the cricket brain. Our IEG promoter-driven activity reporting system allows us to visualize behaviorally relevant neural circuits at cellular resolution in the cricket brain.
Keyphrases
- cerebral ischemia
- transcription factor
- crispr cas
- dna methylation
- resting state
- genome wide identification
- white matter
- genome wide
- copy number
- gene expression
- subarachnoid hemorrhage
- functional connectivity
- blood brain barrier
- high glucose
- brain injury
- signaling pathway
- diabetic rats
- binding protein
- drug induced
- cell proliferation
- climate change
- spinal cord injury
- long non coding rna
- adverse drug
- drug delivery
- pi k akt
- single molecule
- stress induced
- reactive oxygen species
- high density