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Sex‐specific and caste‐specific brain adaptations related to spatial orientation in Cataglyphis ants
Author(s) -
Grob Robin,
Heinig Niklas,
Grübel Kornelia,
Rössler Wolfgang,
Fleischmann Pauline N.
Publication year - 2021
Publication title -
journal of comparative neurology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.855
H-Index - 209
eISSN - 1096-9861
pISSN - 0021-9967
DOI - 10.1002/cne.25221
Subject(s) - neuropil , biology , mushroom bodies , antennal lobe , foraging , neuroscience , sensory system , path integration , ecology , evolutionary biology , central nervous system , biochemistry , drosophila melanogaster , gene
Cataglyphis desert ants are charismatic central place foragers. After long‐ranging foraging trips, individual workers navigate back to their nest relying mostly on visual cues. The reproductive caste faces other orientation challenges, i.e. mate finding and colony foundation. Here we compare brain structures involved in spatial orientation of Cataglyphis nodus males, gynes, and foragers by quantifying relative neuropil volumes associated with two visual pathways, and numbers and volumes of antennal lobe (AL) olfactory glomeruli. Furthermore, we determined absolute numbers of synaptic complexes in visual and olfactory regions of the mushroom bodies (MB) and a major relay station of the sky‐compass pathway to the central complex (CX). Both female castes possess enlarged brain centers for sensory integration, learning, and memory, reflected in voluminous MBs containing about twice the numbers of synaptic complexes compared with males. Overall, male brains are smaller compared with both female castes, but the relative volumes of the optic lobes and CX are enlarged indicating the importance of visual guidance during innate behaviors. Male ALs contain greatly enlarged glomeruli, presumably involved in sex‐pheromone detection. Adaptations at both the neuropil and synaptic levels clearly reflect differences in sex‐specific and caste‐specific demands for sensory processing and behavioral plasticity underlying spatial orientation.

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