TY - GEN A1 - Blenau, Wolfgang A1 - Scheiner, Ricarda A1 - Plückhahn, Stephanie A1 - Oney, Bahar A1 - Erber, Joachim T1 - Behavioural pharmacology of octopamine, tyramine and dopamine in honey bees N2 - In the honey bee, responsiveness to sucrose correlates with many behavioural parameters such as age of first foraging, foraging role and learning. Sucrose responsiveness can be measured using the proboscis extension response (PER) by applying sucrose solutions of increasing concentrations to the antenna of a bee. We tested whether the biogenic amines octopamine, tyramine and dopamine, and the dopamine receptor agonist 2-amino-6,7-dihydroxy-1,2,3,4-tetrahydronaphthalene (6,7-ADTN) can modulate sucrose responsiveness. The compounds were either injected into the thorax or fed in sucrose solution to compare different methods of application. Injection and feeding of tyramine or octopamine significantly increased sucrose responsiveness. Dopamine decreased sucrose responsiveness when injected into the thorax. Feeding of dopamine had no effect. Injection of 6,7-ADTN into the thorax and feeding of 6,7-ADTN reduced sucrose responsiveness significantly. These data demonstrate that sucrose responsiveness in honey bees can be modulated by biogenic amines, which has far reaching consequences for other types of behaviour in this insect. (C) 2002 Elsevier Science B.V. All rights reserved. KW - Honey bee KW - insect KW - proboscis extension response KW - sucrose responsiveness KW - biogenic amines Y1 - 2002 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus-44308 ER - TY - GEN A1 - Blenau, Wolfgang A1 - Grohmann, Lore A1 - Erber, Joachim A1 - Ebert, Paul R. A1 - Strünker, Timo A1 - Baumann, Arnd T1 - Molecular and functional characterization of an octopamine receptor from honeybee (Apis mellifera) brain N2 - Biogenic amines and their receptors regulate and modulate many physiological and behavioural processes in animals. In vertebrates, octopamine is only found in trace amounts and its function as a true neurotransmitter is unclear. In protostomes, however, octopamine can act as neurotransmitter, neuromodulator and neurohormone. In the honeybee, octopamine acts as a neuromodulator and is involved in learning and memory formation. The identification of potential octopamine receptors is decisive for an understanding of the cellular pathways involved in mediating the effects of octopamine. Here we report the cloning and functional characterization of the first octopamine receptor from the honeybee, Apis mellifera . The gene was isolated from a brain-specific cDNA library. It encodes a protein most closely related to octopamine receptors from Drosophila melanogaster and Lymnea stagnalis . Signalling properties of the cloned receptor were studied in transiently transfected human embryonic kidney (HEK) 293 cells. Nanomolar to micromolar concentrations of octopamine induced oscillatory increases in the intracellular Ca2+ concentration. In contrast to octopamine, tyramine only elicited Ca2+ responses at micromolar concentrations. The gene is abundantly expressed in many somata of the honeybee brain, suggesting that this octopamine receptor is involved in the processing of sensory inputs, antennal motor outputs and higher-order brain functions. KW - Biogenic amine KW - Ca2+ KW - cyclic AMP KW - G protein-coupled receptor KW - insect Y1 - 2003 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus-44293 ER - TY - GEN A1 - Blenau, Wolfgang A1 - Troppmann, Britta A1 - Walz, Bernd T1 - Pharmacology of serotonin-induced salivary secretion in Periplaneta americana N2 - The acinar salivary gland of the cockroach, Periplaneta americana, is innervated by dopaminergic and serotonergic nerve fibers. Stimulation of the glands by serotonin (5-hydroxytryptamine, 5-HT) results in the production of a protein-rich saliva, whereas stimulation by dopamine results in saliva that is protein-free. Thus, dopamine acts selectively on ion-transporting peripheral cells within the acini, and 5-HT acts on protein-producing central cells. We have investigated the pharmacology of the 5-HT-induced secretory activity of isolated salivary glands of P. americana by testing several 5-HT receptor agonists and antagonists. The effects of 5-HT can be mimicked by the non-selective 5-HT receptor agonist 5-methoxytryptamine. All tested agonists that display at least some receptor subtype specificity in mammals, i.e., 5-carboxamidotryptamine, (+/-)-8-OH-DPAT, (+/-)-DOI, and AS 19, were ineffective in stimulating salivary secretion. 5-HT-induced secretion can be blocked by the vertebrate 5-HT receptor antagonists methiothepin, cyproheptadine, and mianserin. Our pharmacological data indicate that the pharmacology of arthropod 5-HT receptors is remarkably different from that of their vertebrate counterparts. (C) 2007 Elsevier Ltd. All rights reserved. KW - Biogenic amine KW - G protein-coupled receptor KW - insect KW - salivary gland KW - secretion Y1 - 2007 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus-44319 ER - TY - THES A1 - Troppmann, Britta T1 - Klonierung und Charakterisierung aminerger Rezeptoren der Amerikanischen Schabe Periplaneta americana T1 - Characterization of biogenic amine receptors of the american cockroach Periplaneta americana N2 - Biogene Amine sind kleine organische Verbindungen, die sowohl bei Vertebraten als auch bei Invertebraten als Neurotransmitter, Neuromodulatoren und/oder Neurohormone wirken. Sie bilden eine bedeutende Gruppe von Botenstoffen und entfalten ihre Wirkungen vornehmlich über die Bindung an G-Protein-gekoppelte Rezeptoren. Bei Insekten wurde eine Vielzahl von Wirkungen biogener Amine beschrieben. Das führte schon frühzeitig zur Vermutung, dass Insekten (u. a. Invertebraten) wie die Wirbeltiere ein diverses Repertoire an aminergen Rezeptoren besitzen. Für ein umfassendes Verständnis der komplexen physiologischen Wirkungen biogener Amine fehlten jedoch wichtige Informationen über die molekulare Identität der entsprechenden Rezeptorproteine und ihrer pharmakologischen Eigenschaften, ihre Lokalisation und ihre intrazellulären Reaktionspartner. Viele bei Schaben gut untersuchte (neuro)physiologische Prozesse sowie Verhaltensweisen werden durch Serotonin und Dopamin gesteuert bzw. moduliert. Über die beteiligten Rezeptoren ist jedoch bisher vergleichsweise wenig bekannt. Die Klonierung und Charakterisierung von Serotonin- und Dopaminrezeptoren der Amerikanischen Schabe P. americana ist damit ein längst überfälliger Schritt auf dem Weg zu einem umfassenden Verständnis der vielfältigen Wirkungen biogener Amine bei Insekten. Durch die Anwendung verschiedener Klonierungsstrategien konnten cDNAs isoliert werden, die für potentielle Serotoninrezeptoren und einen Dopaminrezeptor kodieren. Die Sequenzen weisen die größte Ähnlichkeit zu Mitgliedern der 5-HT1- und 5-HT7-Rezeptorklassen bzw. den Invertebratentyp-Dopaminrezeptoren auf. Die isolierten Rezeptoren der Amerikanischen Schabe wurden dementsprechend Pea(Periplaneta americana)5-HT1, Pea5-HT7 und PeaDop2 benannt. Das Hydropathieprofil dieser Rezeptoren postuliert das Vorhandensein der charakteristischen heptahelikalen Architektur G-Protein-gekoppelter Rezeptoren. Die abgeleiteten Aminosäuresequenzen zeigen typische Merkmale aminerger Rezeptoren. So sind Aminosäuren, die bedeutend für die Ligandenbindung, die Rezeptoraktivierung und die Kopplung an G﷓Proteine sind, in den Rezeptoren konserviert. Expressionsstudien zeigten eine auffallend hohe Expression aller drei Rezeptor-mRNAs im Gehirn sowie in den Speicheldrüsen. Im Rahmen dieser Arbeit wurden polyklonale Antikörper gegen den Pea5-HT1-Rezeptor sowie den PeaDop2-Rezeptor hergestellt. Der anti-Pea5-HT1-Antikörper detektiert im Homogenat von Schabengehirnen, Speicheldrüsen und Pea5-HT1-exprimierenden HEK 293-Zellen die glykosylierte Form des Rezeptors. In Gehirnschnitten markiert der anti-Pea5-HT1-Antikörper spezifisch einige Zellkörper in der Pars intercerebralis und deren Axone, welche in den Corpora cardiaca Nerv I projizieren. Der PeaDop2-Rezeptor wurde durch den spezifischen anti-PeaDop2-Antikörper in Neuronen mit Somata im anterioren Randbereich der Medulla nachgewiesen. Diese Neurone innervieren die optischen Loben und projizieren in das ventrolaterale Protocerebrum. Die intrazellulären Signalwege der heterolog exprimierten Pea5-HT1- und PeaDop2-Rezeptoren wurden in HEK 293-Zellen untersucht. Die Aktivierung des Pea5-HT1-Rezeptors durch Serotonin führt zur Hemmung der cAMP-Synthese. Des Weiteren wurde gezeigt, dass der Rezeptor konstitutive Aktivität besitzt. WAY 100635, ein hoch selektiver 5-HT1A-Rezeptorantagonist, wurde als wirksamer inverser Agonist am Pea5-HT1-Rezeptor identifiziert. Der stabil exprimierte PeaDop2-Rezeptor antwortet auf eine Aktivierung durch Dopamin mit einer Erhöhung der cAMP-Konzentration. Eine C-terminal trunkierte Variante dieses Rezeptors ist eigenständig nicht funktional. Die Ergebnisse der vorliegenden Arbeit indizieren, dass die untersuchten aminergen Rezeptoren im zentralen Nervensystems der Schabe an der Informationsverarbeitung beteiligt sind und verschiedene physiologische Prozesse in peripheren Organen regulieren. Mit der Klonierung und funktionellen Charakterisierung der ersten Serotoninrezeptoren und eines Dopaminrezeptors ist damit eine wichtige Grundlage für die Untersuchung ihrer Funktionen geschaffen worden. N2 - Biogenic amines are small organic compounds that act as neurotransmitters, neuromodulators and/or neurohormones in vertebrates and in invertebrates. They form an important group of messenger substances and mediate their diverse effects primarily by binding to G protein-coupled receptors. The molecular identification as well as the functional and pharmacological characterization of these receptors is crucial for the comprehension of the intracellular signaling pathways activated by biogenic amines. This work describes the molecular and functional characterization of the first serotonin receptors and an invertebrate-type dopamine receptor of the American cockroach, Periplaneta americana. Using a PCR-strategy based on degenerate primers and RACE-PCR three cDNAs encoding for putative biogenic amine receptors were isolated from P. americana brain cDNA (Pea5-ht1, Pea5-ht7, Peadop2). The deduced amino acid sequences display major characteristics common to all G protein-coupled receptors. Primarily Distribution of receptor mRNA was investigated by RT-PCR. The analysis revealed a high mRNA expression level for all three receptors in the brain and salivary glands. The distribution of the Pea5﷓HT1 and PeaDop2 receptor proteins was analyzed by immunohistochemistry with specific affinity-purified polyclonal antibodies. Both receptor proteins are expressed in brain and salivary glands. Furthermore the cellular distribution of the receptors was investigated by immunocytochemistry on brain sections. The anti-Pea5-HT1 receptor antibody specifically labelled some large somata in the pars intercerebralis. Labeled axons of these neurons pass down the anterior surface of the brain and cross over in the chiasma region of the corpora cardiaca nerve 1. The PeaDop2 receptor was detected in neurons with somata at the anterior edge of the medulla bilaterally innervating the optic lobes and projecting to the ventro-lateral protocerebrum. In order to clarify the functional and pharmacological properties of the cloned receptors, we studied HEK 293 cell lines stably expressing Pea5-HT1 or PeaDop2. Activation of Pea5-HT1 expressing cells by serotonin reduced adenylyl cyclase activity in a dose-dependent manner. The Pea5-HT1 receptor was expressed as a constitutively active receptor with methiothepin acting as a neutral antagonist and WAY 100635 as an inverse agonist. The activation of the PeaDop2 receptor by dopamine induced an increase in intracellular cAMP level, whereas a C-terminally truncated splice variant of this receptor does not exhibit any functional property by itself. The results of this work suggest important roles of the investigated receptors in various areas of the cockroach brain. The molecular and pharmacological characterization of the first serotonin receptors and a dopamine receptor of the cockroach now provides the basis for forthcoming studies regarding the significance of these particular receptors for cockroach behavior and physiology KW - Insekt KW - Dopamin KW - Serotonin KW - G-Protein-gekoppelte-Rezeptoren KW - insect KW - serotonin KW - dopamine KW - G-protein-coupled-receptors Y1 - 2009 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus-36619 ER - TY - GEN A1 - Troppmann, Britta A1 - Balfanz, Sabine A1 - Baumann, Arnd A1 - Blenau, Wolfgang T1 - Inverse agonist and neutral antagonist actions of synthetic compounds at an insect 5-HT1 receptor N2 - Background and purpose: 5-Hydroxytryptamine (5-HT) has been shown to control and modulate many physiological and behavioural functions in insects. In this study, we report the cloning and pharmacological properties of a 5-HT1 receptor of an insect model for neurobiology, physiology and pharmacology. Experimental approach: A cDNA encoding for the Periplaneta americana 5-HT1 receptor was amplified from brain cDNA. The receptor was stably expressed in HEK 293 cells, and the functional and pharmacological properties were determined in cAMP assays. Receptor distribution was investigated by RT-PCR and by immunocytochemistry using an affinity-purified polyclonal antiserum. Key results: The P. americana 5-HT1 receptor (Pea5-HT1) shares pronounced sequence and functional similarity with mammalian 5-HT1 receptors. Activation with 5-HT reduced adenylyl cyclase activity in a dose-dependent manner. Pea5-HT1 was expressed as a constitutively active receptor with methiothepin acting as a neutral antagonist, and WAY 100635 as an inverse agonist. Receptor mRNA was present in various tissues including brain, salivary glands and midgut. Receptor-specific antibodies showed that the native protein was expressed in a glycosylated form in membrane samples of brain and salivary glands. Conclusions and implications: This study marks the first pharmacological identification of an inverse agonist and a neutral antagonist at an insect 5-HT1 receptor. The results presented here should facilitate further analyses of 5-HT1 receptors in mediating central and peripheral effects of 5-HT in insects. KW - Biogenic amine KW - constitutive activity KW - cellular signalling KW - G-protein-coupled receptor KW - insect Y1 - 2010 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus-44346 ER - TY - JOUR A1 - Schewe, Bettina A1 - Blenau, Wolfgang A1 - Walz, Bernd T1 - Intracellular pH regulation in unstimulated Calliphora salivary glands is Na+ dependent and requires V-ATPase activity JF - The journal of experimental biology N2 - Salivary gland cells of the blowfly Calliphora vicina have a vacuolar-type H+-ATPase (V-ATPase) that lies in their apical membrane and energizes the secretion of a KCl-rich primary saliva upon stimulation with serotonin (5-hydroxytryptamine). Whether and to what extent V-ATPase contributes to intracellular pH (pH(i)) regulation in unstimulated gland cells is unknown. We used the fluorescent dye BCECF to study intracellular pH(i) regulation microfluorometrically and show that: (1) under resting conditions, the application of Na+-free physiological saline induces an intracellular alkalinization attributable to the inhibition of the activity of a Na+-dependent glutamate transporter; (2) the maintenance of resting pHi is Na+, Cl-, concanamycin A and DIDS sensitive; (3) recovery from an intracellular acid load is Na+ sensitive and requires V-ATPase activity; (4) the Na+/H+ antiporter is not involved in pHi recovery after a NH4Cl prepulse; and (5) at least one Na+-dependent transporter and the V-ATPase maintain recovery from an intracellular acid load. Thus, under resting conditions, the V-ATPase and at least one Na+-dependent transporter maintain normal pH(i) values of pH.7.5. We have also detected the presence of a Na+-dependent glutamate transporter, which seems to act as an acid loader. Despite this not being a common pH(i)-regulating transporter, its activity affects steady-state pH(i) in C. vicina salivary gland cells. KW - Calliphora vicina KW - salivary gland KW - intracellular pH regulation KW - Na+/H+ antiporter KW - NHE KW - vacuolar H+-ATPase KW - V-ATPase KW - intracellular pH KW - insect KW - blowfly KW - BCECF KW - NH4Cl prepulse Y1 - 2012 U6 - https://doi.org/10.1242/jeb.063172 SN - 0022-0949 VL - 215 IS - 8 SP - 1337 EP - 1345 PB - Company of Biologists Limited CY - Cambridge ER - TY - THES A1 - Blankenburg, Stefanie T1 - Charakterisierung der GABAB-Rezeptor Subtypen 1 und 2 der Amerikanischen Großschabe Periplaneta americana T1 - Characterization of GABAB receptor subtypes 1 and 2 of the American Cockroach Periplaneta americana N2 - Die nichtproteinogene Aminosäure GABA (γ-Aminobuttersäure) gilt als der wichtigste inhibitorische Neurotransmitter im Zentralnervensystem von Vertebraten sowie Invertebraten und vermittelt ihre Wirkung u. a. über die metabotropen GABAB-Rezeptoren. Bisher sind diese Rezeptoren bei Insekten nur rudimentär untersucht. Für die Amerikanische Großschabe als etablierter Modellorganismus konnte pharmakologisch eine modulatorische Rolle der GABAB-Rezeptoren bei der Bildung von Primärspeichel nachgewiesen werden. Ziel dieser Arbeit war eine umfassende Charakterisierung der GABAB-Rezeptor-Subtypen 1 und 2 von Periplaneta americana. Unter Verwendung verschiedenster Klonierungsstrategien sowie der Kooperationsmöglichkeit mit der Arbeitsgruppe von Prof. Dr. T. Miura (Hokkaido, Japan) in Hinsicht auf eine dort etablierte P. americana EST-Datenbank gelang die Klonierung von zwei Rezeptor-cDNAs. Die Analyse der abgeleiteten Aminosäuresequenzen auf GB-spezifische Domänen und konservierte Aminosäure-Reste, sowie der Vergleich zu bekannten GB Sequenzen anderer Arten legen nahe, dass es sich bei den isolierten Sequenzen um die GABAB-Rezeptor-Subtypen 1 und 2 (PeaGB1 und PeaGB2) handelt. Für die funktionelle und pharmakologische Charakterisierung des Heteromers aus PeaGB1 und PeaGB2 wurden Expressionskonstrukte für die Transfektion in HEK-flpTM-Zellen hergestellt. Das Heteromer aus PeaGB1 und PeaGB2 hemmt bei steigenden GABA-Konzentrationen die cAMP-Produktion. Die Substanzen SKF97541 und 3-APPA konnten als Agonisten identifiziert werden. CGP55845 und CGP54626 wirken als vollwertige Antagonisten. Das in vitro ermittelte pharmakologische Profil im Vergleich zur Pharmakologie an der isolierten Drüse bestätigt, dass die GABA-Wirkung in der Speicheldrüse tatsächlich von GBs vermittelt wird. Für die immunhistochemische Charakterisierung konnte ein spezifischer polyklonaler Antikörper gegen die extrazelluläre Schleife 2 des PeaGB1 generiert werden. Ein weiterer Antikörper, welcher gegen den PeaGB2 gerichtet ist, erwies sich hingegen nicht als ausreichend spezifisch. Western-Blot-Analysen bestätigen das Vorkommen beider Subtypen im Zentralnervensystem von P. americana. Zudem wird der PeaGB1 in der Speicheldrüse und in den Geschlechtsdrüsen der Schabenmännchen exprimiert. Immunhistochemische Analysen zeigen eine PeaGB1-ähnliche Markierung in den GABAergen Fasern der Speicheldrüse auf. Demnach fungiert der PeaGB1 hier als Autorezeptor. Weiterhin konnte eine PeaGB1-ähnliche Markierung in nahezu allen Gehirnneuropilen festgestellt werden. Auch die akzessorischen Drüsen der Männchen, Pilzdrüse und Phallusdrüse, sind PeaGB1-immunreaktiv. N2 - The non-proteinogenic amino acid GABA (γ-aminobutyric acid) is the major inhibitory neurotransmitter in the central nervous system of vertebrates and invertebrates, and GABA mediates its action among others via metabotropic GABAB receptors (GBs). So far, these receptors are only rudimentary characterized in insects. In the American Cockroach, which is an established model organism, pharmacological studies have pointed out a modulatory role of GBs in the production of primary saliva in the salivary gland. Therefore, the aim of this study is the profound characterization of the GABAB receptor subtypes 1 and 2 of Periplaneta americana. Diverse cloning strategies and the access to a Periplaneta EST-database enabled the cloning of two receptor-cDNAs. The analysis of the deduced amino acid sequences for GB-specific domains and conserved amino acid-residues, and the comparison to known GB-sequences of other species revealed that the sequences correspond to GABAB receptor subtypes 1 and 2 (PeaGB1 and PeaGB2). Next, we functionally and pharmacologically characterized the receptor-heteromer of PeaGB1 and PeaGB2. Therefore, we established expression constructs for the transfection of HEK-flpTM-cells. The PeaGB1/PeaGB2 heteromer inhibits dose-dependently the production of cAMP. The substances SKF97541 and 3-APPA imitate the GABA effect. In contrast, CGP54626 and CGP55845 are considered to be proper antagonists. The comparison of the in vitro with the known pharmacology of isolated glands reveals that GBs indeed mediate the effect of GABA in the salivary gland. For immunohistochemical localization, a specific polyclonal antibody was raised against the extracellular loop 2 of PeaGB1. A second antibody, which was raised against the analogous region of the PeaGB2, must be considered to be non-specific. Western blot analyses demonstrate the localization of both subtypes in the central nervous system of P. americana. Additionally, PeaGB1 is expressed in the salivary gland and in male accessory glands. Immunohistochemical analyses reveal the expression of PeaGB1 in GABAergic nerve fibers of the salivary gland. As a consequence, PeaGB1 must act as an autoreceptor in this organ. A widespread distribution of PeaGB1 in almost all neuropiles was detected in the cockroach brain. In the male accessory glands mushroom gland and phallic (conglobate) gland, an intense PeaGB1-like immunoreactivity was measured. KW - GABA KW - Insekt KW - Pharmakologie KW - Gehirn KW - Speicheldrüse KW - GABA KW - insect KW - pharmacology KW - brain KW - salivary gland Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus-69648 ER - TY - JOUR A1 - Troppmann, Britta A1 - Balfanz, Sabine A1 - Krach, Christian A1 - Baumann, Arnd A1 - Blenau, Wolfgang T1 - Characterization of an Invertebrate-Type Dopamine Receptor of the American Cockroach, Periplaneta americana JF - International journal of molecular sciences N2 - We have isolated a cDNA coding for a putative invertebrate-type dopamine receptor (Peadop2) from P. americana brain by using a PCR-based strategy. The mRNA is present in samples from brain and salivary glands. We analyzed the distribution of the PeaDOP2 receptor protein with specific affinity-purified polyclonal antibodies. On Western blots, PeaDOP2 was detected in protein samples from brain, subesophageal ganglion, thoracic ganglia, and salivary glands. In immunocytochemical experiments, we detected PeaDOP2 in neurons with their somata being located at the anterior edge of the medulla bilaterally innervating the optic lobes and projecting to the ventro-lateral protocerebrum. In order to determine the functional and pharmacological properties of the cloned receptor, we generated a cell line constitutively expressing PeaDOP2. Activation of PeaDOP2-expressing cells with dopamine induced an increase in intracellular cAMP. In contrast, a C-terminally truncated splice variant of this receptor did not exhibit any functional property by itself. The molecular and pharmacological characterization of the first dopamine receptor from P. americana provides the basis for forthcoming studies focusing on the significance of the dopaminergic system in cockroach behavior and physiology. KW - G-protein-coupled receptor KW - dopamine KW - insect KW - cellular signaling KW - salivary gland KW - biogenic amine Y1 - 2014 U6 - https://doi.org/10.3390/ijms15010629 SN - 1422-0067 VL - 15 IS - 1 SP - 629 EP - 653 PB - MDPI CY - Basel ER - TY - JOUR A1 - Scheiner, Ricarda A1 - Toteva, Anna A1 - Reim, Tina A1 - Sovik, Eirik A1 - Barron, Andrew B. T1 - Differences in the phototaxis of pollen and nectar foraging honey bees are related to their octopamine brain titers JF - Frontiers in physiology N2 - The biogenic amine octopamine is an important neuromodulator, neurohormone and neurotransmitter in insects. We here investigate the role of octopamine signaling in honey bee phototaxis. Our results show that groups of bees differ naturally in their phototaxis. Pollen forgers display a lower light responsiveness than nectar foragers. The lower phototaxis of pollen foragers coincides with higher octopamine titers in the optic lobes but is independent of octopamine receptor gene expression. Increasing octopamine brain titers reduces responsiveness to light, while tyramine application enhances phototaxis. These findings suggest an involvement of octopamine signaling in honey bee phototaxis and possibly division of labor, which is hypothesized to be based on individual differences in sensory responsiveness. KW - biogenic amines KW - tyramine KW - division of labor KW - honey bee KW - light responsiveness KW - insect KW - behavior Y1 - 2014 U6 - https://doi.org/10.3389/fphys.2014.00116 SN - 1664-042X VL - 5 PB - Frontiers Research Foundation CY - Lausanne ER -