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Neuronal representation and processing of chemosensory communication signals in the ant brain
(2008)
Ants heavily rely on olfaction for communication and orientation and ant societies are characterized by caste- and sex-specific division of labor. Olfaction plays a key role in mediating caste-specific behaviours. I investigated whether caste- and sex-specific differences in odor driven behavior are reflected in specific differences and/or adaptations in the ant olfactory system. In particular, I asked the question whether in the carpenter ant, Camponotus floridanus, the olfactory pathway exhibits structural and/or functional adaptations to processing of pheromonal and general odors. To analyze neuroanatomical specializations, the central olfactory pathway in the brain of large (major) workers, small (minor) workers, virgin queens, and males of the carpenter ant C. floridanus was investigated using fluorescent tracing, immunocytochemistry, confocal microscopy and 3D-analyzes. For physiological analyzes of processing of pheromonal and non-pheromonal odors in the first odor processing neuropil , the antennal lobe (AL), calcium imaging of olfactory projection neurons (PNs) was applied. Although different in total glomerular volumes, the numbers of olfactory glomeruli in the ALs were similar across the female worker caste and in virgin queens. Here the AL contains up to ~460 olfactory glomeruli organized in 7 distinct clusters innervated via 7 antennal sensory tracts. The AL is divided into two hemispheres regarding innervations of glomeruli by PNs with axons leaving via a dual output pathway. This pathway consists of the medial (m) and lateral (l) antenno-cerebral tract (ACT) and connects the AL with the higher integration areas in the mushroom bodies (MB) and the lateral horn (LH). M- and l-ACT PNs differ in their target areas in the MB calyx and the LH. Three additional ACTs (mediolateral - ml) project to the lateral protocerebrum only. Males had ~45% fewer glomeruli compared to females and one of the seven sensory tracts was absent. Despite a substantially smaller number of glomeruli, males possess a dual PN output pathway to the MBs. In contrast to females, however, only a small number of glomeruli were innervated by projection neurons of the m-ACT. Whereas all glomeruli in males were densely innervated by serotonergic processes, glomeruli innervated by sensory tract six lacked serotonergic innervations in the female castes. It appears that differences in general glomerular organization are subtle among the female castes, but sex-specific differences in the number, connectivity and neuromodulatory innervations of glomeruli are substantial and likely to promote differences in olfactory behavior. Calcium imaging experiments to monitor pheromonal and non-pheromonal processing in the ant AL revealed that odor responses were reproducible and comparable across individuals. Calcium responses to both odor groups were very sensitive (10-11 dilution), and patterns from both groups were partly overlapping indicating that processing of both odor classes is not spatially segregated within the AL. Intensity response patterns to the pheromone components tested (trail pheromone: nerolic acid; alarm pheromone: n-undecane), in most cases, remained invariant over a wide range of intensities (7-8 log units), whereas patterns in response to general odors (heptanal, octanol) varied across intensities. Durations of calcium responses to stimulation with the trail pheromone component nerolic acid increased with increasing odor concentration indicating that odor quality is maintained by a stable pattern (concentration invariance) and intensity is mainly encoded in the response durations of calcium activities. For n-undecane and both general odors increasing response dynamics were only monitored in very few cases. In summary, this is the first detailed structure-function analyses within the ant’s central olfactory system. The results contribute to a better understanding of important aspects of odor processing and olfactory adaptations in an insect’s central olfactory system. Furthermore, this study serves as an excellent basis for future anatomical and/or physiological experiments.
The work presented in this thesis covers the effects of early-life adversity in the context of altered serotonin (5-HT; 5-hydroxytryptamine) system functioning in mice. The main body is focussing on a screening approach identifying molecular processes, potentially involved in distinct behavioural manifestations that emerge from or are concomitant with early adversity and, with regard to some behavioural manifestations, dependent on the functioning of the 5-HT system.
Quantifizierung des postmortalen RNA-Status im Gehirn mittels Real-time-PCR: Ein Beitrag zur Bestimmung der Leichenliegezeit Der postmortale Nukleinsäureabbau verläuft unterschiedlich: während DNA im Allgemeinen als stabil angesehen wird und erst mit Einsetzen von Fäulniserscheinungen stärkerer Degradation unterliegt, wird RNA mit dem Sistieren der Kreislauftätigkeit relativ rasch abgebaut. Eine Reihe von Studien hat aber gezeigt, dass RNA in bestimmten Geweben eine höhere Stabilität besitzt als ursprünglich angenommen. Dies könnte Bedeutung für die molekulare Medizinforschung besitzen, die auf Genexpressionsstudien in postmortalem Gewebe angewiesen ist. Außerdem könnte eine Quantifizierung der RNA-Degradation z.B. durch Real-time-PCR zur Eingrenzung der Leichenliegezeit genutzt werden. In dieser Studie wurde ein quantitativer Vergleich verschiedener sog. Haushaltsgene (u.a. GAPDH, ß-Actin, FASN) in Gehirngewebe mit einer Leichenliegezeit zwischen 0 und 96 Stunden und unter alternativen Ansätzen zur reversen Transkription (oligo-(dT)-Primer mit und ohne sog. Anker, Random Hexamer Primer) durchgeführt. Zunächst erfolgten systematische Untersuchungen zur Effektivität der RNA-Isolierung, reversen Transkription und der PCR im Hinblick auf eine möglichst präzise Quantifizierung. Es zeigte sich, dass die Resultate der Real-time-PCR ein Maß für die ursprünglich in der Probe vorhandene mRNA-Menge darstellen. Weiterhin stellte sich heraus, dass eine deutliche und evtl. auch zur Liegezeitbestimmung nutzbare RNA-Degradation erst nach 24h einsetzt. Ein wesentlicher Unterschied zwischen Random- und oligo-(dT)-priming der reversen Transkription war dabei nicht festzustellen. Diese Ergebnisse belegen zum einen, dass RNA im frühen postmortalen Intervall relativ stabil ist und als Substrat für quantitative Untersuchungen dienen kann, zum anderen, dass ein zeitabhängiger Abbau besteht, der eine Eingrenzung der Leichenliegezeit z.B. mittels Grenzwerten in ein frühes und mittleres Postmortalintervall zulässt.
Background and Purpose: We reported previously that stroke risk factors prepared the brain stem for the development of ischemia and hemorrhage and induced the production of tumor necrosis factor following an intrathecal injection of Iipopolysaccharide, a prototypic monocyte-activating stimulus. This study evaluates whether blood or brain cells of hypertensive rats produce more proinflammatory and prothrombotic mediators than do blood or brain cells of normotensive rats. MethotJs: Levels of tumor necrosis factor, platelet-activating factor, 6-ketoprostaglandin F1a, and thromboxane B2 in the cerebrospinal fluid and blood of spontaneously hypertensive and normotensive Wistar-Kyoto rats were monitored before and after achallenge with Iipopolysaccharide. Results: Little or no activity from these media tors was found in the cerebrospinal fluid or blood of saline-injected control animals. Intravenous administration of Iipopolysaccharide (0.001, 0.1, and 1.8 mg/kg) produced dose-dependent increases in blood levels of all mediators in hypertensive rats. In normotensive rats the levels were less than in hypertensive rats and were not c1early dose-related. When Iipopolysaccharide was injected intracerebroventricularly, more tumor necrosis factor was measured in the cerebrospinal fluid than in the blood, suggesting local synthesis of this cytokine. Levels of tumor necrosis factor and platelet-activating factor in the cerebrospinal fluid were higher in hypertensive than in normotensive rats. The thromboxane A2/prostacyclin ratio was not aItered significantly between the two rat strains. Conclusions: It is suggested that the higher incidence of brain stem ischemia and hemorrhage after the intrathecal injection oflipopolysaccharide in hypertensive rats than in normotensive rats might be related to the higher levels of the two cytotoxic factors tumor necrosis factor and platelet-activating factor produced in response to such challenge.
Background and Purpose: We earlier reported that risk factors for stroke prepare brain stem tissue for a modified Shwartzman reaction, incIuding the development of ischemia and hemorrhage and the production of tumor necrosis factor-a, after a provocative dose of lipopolysaccharide. In the present study, we sought to determine whether blood and central nervous system cells of rats with the stroke risk factor of advanced age produce more proinflammatory and prothrombotic media tors than do those of young rats of the same strain. Methods: Levels of tumor necrosis factor-a and platelet activating factor in the cerebrospinal fluid and tumor necrosis factor-a in the serum of 2-year-old and 16-week-old Sprague-Dawley rats were monitored before and after challenge with lipopolysaccharide. Results: No consistent tumor necrosis factor-a activity was found in the cerebrospinal fluid or blood of control animals. Intravenous administration of lipopolysaccharide (1.8 mg/kg) increased serum tumor necrosis factor-a levels but had no effect on tumor necrosis factor-a in the cerebrospinal fluid. Serum tumor necrosis factor-a increased much more in aged rats than in young rats. When lipopolysaccharide was injected intracerebroventricularly, tumor necrosis factor-a activity in cerebrospinal fluid increased significantly more in old rats than in young rats. Baseline levels of platelet activating factor in cerebrospinal fluid were significantly higher in old rats than in young rats, and the levels increased to a greater degree in aged rats on stimulation. Conclusions: Rats with the stroke risk factor of advanced age respond to lipopolysaccharide with a more exuberant production of tumor necrosis factor-a and platelet activating factor than young rats of the same strain. These findings are consistent with our working hypothesis that perivascular cells are capable of exaggerated signaling of endothelium through cytokines such as tumor necrosis factor-a in animals with stroke risk factors. The effect of such signaling might be to prepare the endothelium of the local vascular segment for thrombosis or hemorrhage in accord with the local Shwartzman reaction paradigm.
Die Glutamat-vermittelte Exzitotoxizität gilt als einer der wichtigsten neuropathologischen Faktoren der HIV-Demenz: Während Glutamat in physiologischer Konzentration als exzitatorischer Neurotransmitter fungiert, wirkt es in zu hoher Konzentration neurotoxisch. In vorliegender Arbeit wurde mittels Western Blotting die Proteinexpression der exzitatorischen Aminosäuretransporter EAAT1 und EAAT2 gemessen, die vor allem für den Abtransport von Glutamat aus dem synaptischen Spalt sorgen. Hierzu wurden Gehirne von mit dem simianen Immundefizienz Virus (SIV) infizierten chinesischen und indischen Rhesusaffen verwendet. SIV verursacht im SIV-Rhesusaffenmodell ähnliche Schäden wie das humane Immundefizienz Virus (HIV) beim Menschen. Zur Entstehung der SIV-Enzephalitis tragen, wie auch bei der HIV-Demenz, aktivierte Monozyten und Mikroglia bei, die u.a. das Neurotoxin Tumornekrosefaktor-alpha (TNF-alpha) sezernieren. Dessen Protein- und Genexpression wurde mittels ELISA und Real-Time-PCR ausgewertet. Für die vorliegende Arbeit wurden zwei für die HIV-Demenz besonders relevante Gehirnregionen ausgewählt: das Putamen, das als Teil der Basalganglien für die extrapyramidale Steuerung der Motorik zuständig ist, und der Nucleus Accumbens, der affektives und motivationales Verhalten in Bewegungsabläufe integriert. Als potentielle Pharmaka wurden der MAO-B-Hemmer Selegilin, der NMDAR-Antagonist Memantin sowie die Antioxidantien N-Acetylcystein (NAC) und Melatonin getestet. Es gelang in vorliegender Arbeit erstmals, eine Störung der Proteinexpression der glutamatergen Transporter EAAT1 und EAAT2 im Putamen mit zunehmender Dauer der SIV-Infektion und ihren dramatischen Verlust bei Entwicklung von AIDS nachzuweisen. Im Nucleus Accumbens fand sich eine relativ konstante Proteinexpression des EAAT1 und EAAT2 im Verlauf der SIV-Infektion. Weiterhin konnte ein Anstieg des TNF-alpha mit fortschreitender Infektionsdauer hinsichtlich der Genexpression im Putamen und der Proteinexpression im Nucleus Accumbens nachgewiesen werden. Die fehlende Eignung von Selegilin als neuroprotektive Substanz im Rahmen der SIV-Enzephalitis wurde repliziert. Memantin, NAC und Melatonin hingegen verbesserten in weiten Teilen die Expression von EAAT1 und EAAT2 und wirkten immunstimulierend, was sie zu interessanten Kandidaten für eine neuroprotektive Medikation macht. In beiden Hirnregionen zeigte sich bei den indischen Rhesusaffen eine höhere TNF-alpha-Expression als bei den chinesischen Tieren. Dies entspricht der Beobachtung, dass die SIV-Infektion bei indischen Rhesusaffen meist schneller und schwerer verläuft.
Neuroanatomical data in fly brain research are mostly available as spatial gene expression patterns of genetically distinct fly strains. The Drosophila standard brain, which was developed in the past to provide a reference coordinate system, can be used to integrate these data. Working with the standard brain requires advanced image processing methods, including visualisation, segmentation and registration. The previously published VIB Protocol addressed the problem of image registration. Unfortunately, its usage was severely limited by the necessity of manually labelling a predefined set of neuropils in the brain images at hand. In this work I present novel tools to facilitate the work with the Drosophila standard brain. These tools are integrated in a well-known open-source image processing framework which can potentially serve as a common platform for image analysis in the neuroanatomical research community: ImageJ. In particular, a hardware-accelerated 3D visualisation framework was developed for ImageJ which extends its limited 3D visualisation capabilities. It is used for the development of a novel semi-automatic segmentation method, which implements automatic surface growing based on user-provided seed points. Template surfaces, incorporated with a modified variant of an active surface model, complement the segmentation. An automatic nonrigid warping algorithm is applied, based on point correspondences established through the extracted surfaces. Finally, I show how the individual steps can be fully automated, and demonstrate its application for the successful registration of fly brain images. The new tools are freely available as ImageJ plugins. I compare the results obtained by the introduced methods with the output of the VIB Protocol and conclude that our methods reduce the required effort five to ten fold. Furthermore, reproducibility and accuracy are enhanced using the proposed tools.
Zerebrovaskuläre kavernöse Malformationen (CCM) sind Blutgefäßfehlbildungen, welche hauptsächlich im Gehirn vorkommen. Sie sind gekennzeichnet durch stark dilatierte kapillarähnliche Gefäße mit niedriger Flussrate („slow-flow lesions“). Intervenierendes Gehirnparenchym fehlt ebenso wie Perizyten oder glatte Gefäßmuskelzellen. Die klinischen Symptome reichen von starken Kopfschmerzen über Epilepsie bis hin zum Schlaganfall. Dennoch bleiben viele Kavernomträger aufgrund unvollständiger Penetranz ihr Leben lang asymptomatisch. Die Prävalenz beträgt ca. 0,5% in der Gesamtbevölkerung. Es gibt sowohl sporadische als auch dominant vererbte Krankheitsformen. In den letzten Jahren konnten 3 Gene ursächlich mit der Krankheit in Verbindung gebracht werden. Mutationen in CCM1, CCM2 oder CCM3 führen zu einem nicht unterscheidbaren klinischen Phänotyp. Alle drei Proteine bilden einen ternären Komplex in vitro, was eine Beteiligung an einem gemeinsamen molekularen Signalweg bekräftigt. Während die Proteine CCM1 und CCM2 in den letzten Jahren umfangreich erforscht wurden, ist über das CCM3-Protein bis heute wenig bekannt. In dieser Arbeit konnte gezeigt werden, dass CCM3 eine wichtige Rolle in der Angiogenese spielt und diese bei Überexpression in humanen Endothelzellen stark negativ reguliert: die Migration, die Proliferation und die Fähigkeit, kapillarähnliche Strukturen in Matrix-Gelen zu bilden kommt nahezu zum Erliegen. Ein gegenläufiger Effekt nach siRNA induziertem Knock-down von CCM3 war weniger stark ausgeprägt. Einzig die Fähigkeit, gefäßähnliche Strukturen in Matrigelen zu bilden, war erhöht. Um weiterhin Klarheit über die intrazellulären, von CCM3 beeinflussten Signalwege zu schaffen, wurden Tyrosin Kinase Arrays durchgeführt, bei welchen CCM3-überexprimierende HUVEC Lysate mit Kontrolllysaten verglichen wurden. Dabei stellte sich heraus, dass 5 Substrate signifikant erhöht phosphoryliert wurden: der Discoidin Domänen Rezeptor 1 (discoidin domain receptor; DDR1), die duale spezifitätstyrosinphosphorylierungsregulierte Kinase 1A (dual specificity tyrosine-phosphorylation-regulated kinase 1A; DYR1A), die Protoonkogen Tyrosin- Protein Kinase FER (proto-oncogene tyrosine-protein kinase FER; FER), die fynbezogene Kinase (Fyn-related kinase; FRK) und die phosphoinositolabhängige Kinase 1 (Phosphoinositide-dependent kinase 1, PDPK-1). Im Folgenden bestätigten Western Blot, dass die Überexpression von CCM3 in Endothelzellen die phosphoinositolabhängige Kinase 1 und die nachgeschaltete Serin-Threonin Kinase Akt/PBK aktiviert, welche ein bedeutsames Überlebenssignal der Zelle darstellt. Schließlich konnte gezeigt werden, dass CCM3 nicht nur antiangiogen, sondern auch antiapoptotisch wirkt. Die Ergebnisse der vorliegenden Arbeit legen nahe, dass CCM3 für die Integrität des ruhenden, adulten Endothelbettes wichtig ist.
In this thesis, I introduce the Virtual Brain Protocol, which facilitates applications of the Standard Brain of Drosophila melanogaster. By providing reliable and extensible tools for the handling of neuroanatomical data, this protocol simplifies and organizes the recurring tasks involved in these applications. It is demonstrated that this protocol can also be used to generate average brains, i.e. to combine recordings of several brains with the same features such that the common features are emphasized. One of the most important steps of the Virtual Insect Protocol is the aligning of newly recorded data sets with the Standard Brain. After presenting methods commonly applied in a biological or medical context to align two different recordings, it is evaluated to what extent this alignment can be automated. To that end, existing Image Processing techniques are assessed. I demonstrate that these techniques do not satisfy the requirements needed to guarantee sensible alignments between two brains. Then, I analyze what needs to be taken into account in order to formulate an algorithm which satisfies the needs of the protocol. In the last chapter, I derive such an algorithm using methods from Information Theory, which bases the technique on a solid mathematical foundation. I show how Bayesian Inference can be applied to enhance the results further. It is demonstrated that this approach yields good results on very noisy images, detecting apparent boundaries between structures. The same approach can be extended to take additional knowledge into account, e.g. the relative position of the anatomical structures and their shape. It is shown how this extension can be utilized to segment a newly recorded brain automatically.
Monarch butterflies are famous for their annual long-distance migration. Decreasing temperatures and reduced daylight induce the migratory state in the autumn generation of monarch butterflies. Not only are they in a reproductive diapause, they also produce fat deposits to be prepared for the upcoming journey: Driven by their instinct to migrate, they depart from their eclosion grounds in the northern regions of the North American continent and start their southern journey to their hibernation spots in Central Mexico. The butterflies cover a distance of up to 4000 km across the United States. In the next spring, the same butterflies invert their preferred heading direction due to seasonal changes and start their northward spring migration. The spring migration is continued by three consecutive butterfly generations, until the animals repopulate the northern regions in North America as non-migratory monarch butterflies. The monarch butterflies’ migratory state is genetically and epigenetically regulated, including the directed flight behavior. Therefore, the insect’s internal compass system does not only have to encode the butterflies preferred, but also its current heading direction. However, the butterfly’s internal heading representation has to be matched to external cues, to avoid departing from its initial flight path and increasing its risk of missing its desired destination. During the migratory flight, visual cues provide the butterflies with reliable orientation information. The butterflies refer to the sun as their main orientation cue. In addition to the sun, the butterflies likely use the polarization pattern of the sky for orientation. The sky compass signals are processed within a region in the brain, termed the central complex (CX). Previous research on the CX neural circuitry of the monarch butterflies demonstrated that tangential central complex neurons (TL) carry the visual input information into the CX and respond to a simulated sun and polarized light. However, whether these cells process additional visual cues like the panoramic skyline is still unknown. Furthermore, little is known about how the migratory state affects visual cue processing. In addition to this, most experiments studying the monarch butterfly CX focused on how neurons process single visual cues. However, how combined visual stimuli are processed in the CX is still unknown.
This thesis is investigating the following questions:
1) How does the migratory state affect visual cue processing in the TL cells within the monarch butterfly brain?
2) How are multiple visual cues integrated in the TL cells?
3) How is compass information modulated in the CX?
To study these questions, TL neurons from both animal groups (migratory and non-migratory) were electrophysiologically characterized using intracellular recordings while presenting different simulated celestial cues and visual sceneries. I showed that the TL neurons of migratory butterflies are more narrowly tuned to the sun, possibly helping them in keeping a directed flight course during migration. Furthermore, I found that TL cells encode a panoramic skyline, suggesting that the CX network combines celestial and terrestrial information. Experiments with combined celestial stimuli revealed that the TL cells combine both cue information linearly. However, if exposing the animals to a simulated visual scenery containing a panoramic skyline and a simulated sun, the single visual cues are weighted differently. These results indicate that the CX’s input region can flexibly adapt to different visual cue conditions. Furthermore, I characterize a previously unknown neuron in the monarch butterfly CX which responds to celestial stimuli and connects the CX with other brain neuropiles. How this cell type affects heading direction encoding has yet to be determined.