Identification and distribution of a proctolin‐like neuropeptide in the nervous system of the gypsy moth, Lymantria dispar, and in other lepidoptera
- 30 April 1989
- journal article
- research article
- Published by Wiley in Journal of Comparative Neurology
- Vol. 283 (1) , 71-85
- https://doi.org/10.1002/cne.902830107
Abstract
Although the neuropeptide proctolin has important functions in many arthropods, it is reported to be absent in Lepidoptera. Its possible occurrence in these insects was reinvestigated by bioassays of HPLC fractions and immunocytochemistry. A proctolin-like substance was recovered from the frontal and subesophageal ganglia of Lymantria dispar. This substance has the same chromatographic retention time as proctolin; enzymatic degradation indicates that it is a peptide; it is bound by proctolin antisera; and thus it is indistinguishable from authentic proctolin. A small subpopulation of proctolin-like immunoreactive (PLI) neurons was stained in the larval CNS of L. dispar, Manduca sexta, Trichoplusia ni, Galleria mellonella, and Vanessa cardui. Most prominent of these cells are median neurosecretory neurons in the brain, paired neurons in the frontal ganglion, two clusters of neurons in the subesophageal ganglion, paired lateral neurons in the thoracic ganglia, and dorsomedial neurons in the abdominal ganglia. Also, varicose PLI axons are found in the corpora cardiaca and perivisceral organs. In L. dispar, PLI cells also were found in the corpora cardiaca. The results of this study indicate that proctolin is of general occurrence in the Lepidoptera, that it has an important role in the stomatogastric nervous system, and that it may be released as a local neurohormone from various neurohemal organs.Keywords
This publication has 68 references indexed in Scilit:
- Neurosecretory neurons and their projections to the serotonin neurohemal system of the cockroach Periplaneta americana (L.), and identification of mandibular and maxillary motor neurons associated with this systemJournal of Comparative Neurology, 1987
- Metabolism of proctolin, a pentapeptide neurotransmitter in insectsLife Sciences, 1984
- Some effects of proctolin on the cardiac ganglion of the maine lobster, Homarus americanus (Milne Edwards)Journal of Neurobiology, 1981
- The effect of proctolin on the adenylate and guanylate cyclases in theLocusta brain at various developmental stagesCellular and Molecular Life Sciences, 1979
- Analogs of the insect myotropic peptide proctolin: Synthesis and structure-activity studiesBiochemical and Biophysical Research Communications, 1979
- The oviduct musculature of the horsefly, Tabanus sulcifrons, and its response to 5‐hydroxytryptamine and proctolinPhysiological Entomology, 1978
- Axonal pathways in the brain-retrocerebral neuroendocrine complex of Manduca sexta (L.) (Lepidoptera: Sphingidae)International Journal of Insect Morphology and Embryology, 1975
- Structure of the pentapeptide proctolin, a proposed neurotransmitter in insectsLife Sciences, 1975
- Proctolin: A peptide transmitter candidate in insectsLife Sciences, 1975
- Neuromuscular Transmitter Substance in Insect Visceral MuscleScience, 1967