Scientists at the University of California, Riverside have found that ants communicate using a number of hydrocarbon chemicals present on their cuticles (their outer shells).
The researchers noted that ants, which have evolved some of the largest families of olfactory receptor genes in insects, use their powerful sense of smell to sense the chemicals present on the cuticle of individuals to precisely identify the different members of their society.
"Until now, very little was understood about how ants use olfactory detection of pheromones to recognise individuals belonging to different castes or different colonies in their societies," said Anandasankar Ray, from the University of California, Riverside in US who led the research team.
Ray, who is also the director of the Centre for Disease Vector Research at UC Riverside, was joined in the study by Kavita R Sharma of UC Riverside.
Ray's team applied a powerful electrophysiology method, to test hydrocarbons present on the worker and queen cuticles that have previously been suspected to act as pheromone cues.
"To our surprise we found that these very low volatility compounds are not only detected sensitively by the ants' specialised antennal sensors, but almost all of the hydrocarbon components are detected," Ray said.
"Using this high-definition ability to smell 'ant body odour' the ants can recognise the various castes in the colony as well as intruders," he said.
Researchers also found that recognition of individuals at very close proximity in a large crowd in a colony is facilitated by use of low volatility cuticular hydrocarbons.
A more volatile cue would be confusing to associate with an individual, and could overwhelm the olfactory system in the colony by constantly activating it.
The study found that each ant cuticle has a blend of several cuticular hydrocarbons. The precise composition of the blend could be a useful solution for coding information on several castes both inside a colony and intruders from outside a colony.
"When we tested this with our sensitive electrophysiology assay we found that ants can indeed detect both nestmate and non-nestmate cuticular extracts, as we had predicted," Ray said.
The study was published in the journal Cell Reports.
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