Journal article
Calcium Imaging of Anopheles coluzzii Mosquito Antennae Expressing the Calcium Indicator GCaMP6f
Cold Spring Harbor protocols, v 2022(11), pp Pdb.prot107918-Pdb.prot107918
01 Nov 2022
PMID: 35960624
Abstract
Calcium imaging is a technique used to measure functional neuronal activities in response to stimuli. It has been used for years to study odorant-induced responses in insects (i.e., honeybees,
, and moths) and was recently introduced into mosquitoes. Traditionally, calcium imaging in mosquitoes was performed using nonspecific calcium indicator dyes to examine neuronal responses in whole insect brain regions, but the development of genetically encoded calcium indicators (GECIs) has facilitated the ability to perform functional calcium imaging on specific tissues. For example, by specifically expressing a GECI in olfactory neurons, the odor-induced responses of these neurons in peripheral organs can be examined. Calcium imaging of mosquito antennae further provides an advantageous method for simultaneously visualizing the activity of several antennal neurons in a single experiment. In this protocol, we describe a calcium imaging method to study odor-evoked responses in
antennae expressing the calcium indicator GCaMP6f. This method requires imaging equipment (compound microscope, light sources, and camera), an odorant delivery system, and image acquisition software. The mosquito preparation is straightforward but requires practice to minimize mosquito movement during imaging. Recorded videos can be analyzed using Fiji software to generate heatmaps and activity traces for odorant-evoked responses. This protocol can also be used, with some modifications, to study other peripheral organs (such as labella, palps, and tarsi).
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Details
- Title
- Calcium Imaging of Anopheles coluzzii Mosquito Antennae Expressing the Calcium Indicator GCaMP6f
- Creators
- Ali Afify - Johns Hopkins MedicineChristopher J Potter - Johns Hopkins Medicine
- Publication Details
- Cold Spring Harbor protocols, v 2022(11), pp Pdb.prot107918-Pdb.prot107918
- Publisher
- American Physical Society (APS)
- Grant note
- R01 AI137078 / NIAID NIH HHS
- Resource Type
- Journal article
- Language
- English
- Academic Unit
- Biology
- Scopus ID
- 2-s2.0-85141888979
- Other Identifier
- 991021230007904721