Revisiting the anatomy of the central nervous system of a hemimetabolous model insect species: the pea aphid Acyrthosiphon pisum

Central Nervous System Male Neuropil Insecta Acyrtophison Pisum (Insecta) APHIDS Parthenogenesis 590 [SDV.BC]Life Sciences [q-bio]/Cellular Biology INSECT NERVOUS SYSTEM 03 medical and health sciences https://purl.org/becyt/ford/1.6 PHENOTYPIC PLASTICITY Animals BRAIN https://purl.org/becyt/ford/1 [SDV.BC] Life Sciences [q-bio]/Cellular Biology Pisum sativum Body Patterning 0303 health sciences Optic Lobe, Nonmammalian Brain NEUROPIL 3. Good health INSECTE Phenotype Aphids Phenotypic Plasticity Female Insect Nervous System
DOI: 10.1007/s00441-010-1099-9 Publication Date: 2010-12-17T08:02:29Z
ABSTRACT
Aphids show a marked phenotypic plasticity, producing asexual or sexual and winged or wingless morphs depending on environmental conditions and season. We describe here the general structure of the brain of various morphs of the pea aphid Acyrthosiphon pisum. This is the first detailed anatomical study of the central nervous system of an aphid by immunocytochemistry (synapsin, serotonin, and several neuropeptides), ethyl-gallate staining, confocal laser scanning microscopy, and three-dimensional reconstructions. The study has revealed well-developed optic lobes composed of lamina, medulla, and lobula complex. Ocelli are only present in males and winged parthenogenetic females. The central complex is well-defined, with a central body divided into two parts, a protocerebral bridge, and affiliated lateral accessory lobes. The mushroom bodies are ill-defined, lacking calyces, and only being visualized by using an antiserum against the neuropeptide orcokinin. The antennal lobes contain poorly delineated glomeruli but can be clearly visualized by performing antennal backfills. On the basis of our detailed description of the brain of winged and wingless parthenogenetic A. pisum females, an anatomical map is now available that should improve our knowledge of the way that these structures are involved in the regulation of phenotypic plasticity.
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