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Impact of pectin dietary supplementation on experimental food allergy via gut microbiota modulation
(2023)
In recent years, dietary fibers gained focus in regard of their immune-modulatory effects and the potentially beneficial effect on allergies. The dietary fiber and prebiotic pectin is able to promote growth and activity of beneficial bacteria and thereby induce modulation of different immune responses. However, structurally different types of pectin might promote different immune-modulatory responses and to date the optimal pectin type for induction of beneficial health effects is not identified. Furthermore, it is still unclear, whether pectins provide a beneficial effect on certain allergies, such as food allergy.
Having this in consideration, this study examined the immune-modulatory effects of structurally different pectins on naive as well as peach allergic mice. Furhtermore, the impact of dietary pectin supplementation on composition and diversity of the murine gut microbiota was determined.
This study showed that dietary pectin intervention was able to suppress allergy-related Th2 responses considering humoral and cellular immune responses. Only apple-derived high-methoxyl pectin revealed an impact on total IgA levels and affected the microbial richness. Furthermore, it is not known whether the effects observed with the two pectins are caused by modulations of the bacterial composition or induced at least partly by direct interaction with the immune cells. Further studies are required to fully understand the mechanisms underlying the immune-modulatory capacities of different pectins.
Finally, the obtained results generated evidence that dietary pectin intervention can beneficially modulate the immune response in healthy mice and – at least partially – suppress allergy-related immune responses in a model of food allergy, depending on the structural characteristics of the used pectin.
Das Ziel in der vorliegenden systematischen Literaturrecherche ist es, den aktuellen Stand des Wissens über die Erfolgsfaktoren von Einzelzahnimplantaten, bei denen eine Sofortbelastung auf den provisorischen Implantatkronen zum Antagonisten erfolgt, wiederzugeben. In diesem Rahmen wurden Zusammenhänge zwischen der Implantatüberlebensrate, der Primärstabilität, der Implantatregion, des Implantatdesigns und des Implantationszeitpunktes getrennt nach okklusalem Belastungsprotokoll (mit versus ohne antagonistische Okklusionskontakte auf den provisorischen Implantatkronen) und der postoperativen Verhaltensweisen der Patienten analysiert. Der Prozess der systematischen Literaturrecherche wurde nach den PRISMA-Guidelines für den Suchzeitraum von 2012 bis 2022 durchgeführt.
Um die Forschungsfrage zu beantworten, wurde eine qualitative Analyse in deskriptiver Form durchgeführt.
In den analysierten Studien, wurde am häufigsten ein Eindrehmoment von ≥ 35 Ncm als Kriterium für eine Sofortbelastung gewählt. Die meisten Implantate wurden in der Oberkieferregion 15 bis 25 inseriert. Bei den Implantatkronen mit antagonistischen Okklusionskontakten fielen die Überlebensraten insgesamt niedriger aus als in den Studien, in denen die Implantatkronen ohne antagonistische Okklusionskontakte eingegliedert wurden. Die Überlebensraten waren weitestgehend vergleichbar mit den Ergebnissen konventioneller Belastungsprotokolle. Die Datenlage anhand dieser Recherche spricht zurzeit für die Realisierung der Sofortbelastung von provisorischen Implantatkronen ohne antagonistische Okklusionskontakte in Verbindung mit postoperativen Verhaltensmaßnahmen.
The prefrontal cortex (PFC) is considered the cognitive center of the mammalian brain. It is involved in a variety of cognitive functions such as decision making, working memory, goal-directed behavior, processing of emotions, flexible action selection, attention, and others (Fuster, 2015). In rodents, these functions are associated with the medial prefrontal cortex (mPFC). Experiments in mice and rats have shown that neurons in the mPFC are necessary for successful performance of many cognitive tasks. Moreover, measurements of neural activity in the mPFC show excitation or inhibition in different cells in relation to specific aspects of the tasks to be solved. To date, however, it is largely unknown whether prefrontal neurons are stably activated during the same behaviors within a task and whether similar aspects are represented by the same neurons in different tasks. In addition, it is unclear how specifically neurons are activated, for example, whether cells that are activated in response to reward are activated in a different task without reward in a different situation or remain inactive. To address these questions, we recorded the same neurons in the mPFC of mice over the course of several weeks while the animals performed various behaviors.
To do this, we expressed GCaMP6 in pyramidal neurons in the mPFC of mice. A small lens was implanted in the same location and a miniature microscope ("miniscope") was used to record neural activity. Later the extracted neurons got aligned based on their shape and position across multiple days and sessions. The mice performed five different behavioral tests while neural activity was measured: A spatial working memory test in a T-maze, exploration of the elevated plus maze (EPM), a novel object recognition (NO) test including free open field (OF) exploration, a social interaction (SI) test and discriminatory auditory fear conditioning (FC). Each task was repeated at least twice to check for stable task encoding across sessions. Behavioral performance and neural correlates to specific task events were similar to earlier studies across all tasks. We utilized generalized linear models (GLM) to determine which behavioral variables most strongly influence neural activity in the mPFC. The position of the mouse in the environment was found to explain most of the variance in neural activity, together with movement speed they were the strongest predictors of neural activity across all tasks. Reward time points in the working memory test, the conditioned stimulus after fear conditioning, or head direction in general were also strongly encoded in the mPFC.
Many of the recorded neurons showed a stable spatial activity profile across multiple sessions of the same task. Similarly, cells that coded for position in one task tended to code for position in other tasks. Not only did the same cells code for position across multiple tasks, but cells also coded for movement speed and head direction. This indicates that at least these general behavioral variables are each represented by the same neurons in the mPFC. Interestingly, the stability of position or speed coding did not depend on the time between two sessions, but only on whether it was within the same or across different tasks. Within the same task, stability was slightly higher than across different tasks.
To find out whether task-specific behavioral aspects were also stably encoded in the mPFC, difference scores as the difference in neural activity between two task aspects like left- and right-choice trials or exposed and enclosed locations were calculated. Many cells encoded these aspects stably across different sessions of each task. Both the left-right differences in the different phases of the working memory test, the open-closed-arm differences in the elevated plus maze, the different activity between center and corners in the open field, the social target-object differences in the social interaction test, and the differences between the two tones during fear conditioning were all stably encoded across the population of mPFC cells. Only the distinction between the novel and the familiar object during object recognition was not stably encoded, but also the preference for the novel object was not present in the second session of novel object exploration.
There was also an overlap in coding for different aspects within a task across multiple sessions. For example, cells stably encoded left-right differences in the T-maze between different sessions as a function of walking direction across different phases of working memory, an aspect that we could already show within one session (Vogel, Hahn et al., 2022). During fear conditioning, the same cells showed a discrimination between CS+ and CS- that also responded to the start of CS+.
Consistency in the neurons activity across different tasks was also found, but only between tasks with similar demands, the elevated plus-maze and free exploration of the open field. Cells that were more active in the open arms also showed more activity in the center of the open field and vice versa. This could be an indicator that the cells were coding for anxiety or exposure across those tasks, indicating that neurons in the mPFC also stably encode general task aspects independent of the specific environment. However, it remains unclear what exactly these neurons encode; in the case of a general fear signal, one would also expect activation during fear conditioning which could not be found.
Overall, we found that neurons in the mPFC of mice encoded multiple general behavioral variables across multiple tasks and task-specific variables were encoded stably within each of the tested tasks. However, we found little task-specific variables that were systematically encoded by the same neurons with the exception being the elevated plus-maze and open field exploration, two tasks with similar features.
Precise regulation of gene expression networks is required to develop and maintain a healthy organism before and after birth and throughout adulthood. Such networks are mostly comprised of regulatory proteins, but meanwhile many long non-coding transcripts (lncRNAs) are shown to participate in these regulatory processes. The functions and mechanisms of these lncRNAs vary greatly, however they are often associated with transcriptional regulation. Three lncRNAs, namely Sweetheart RNA (Swhtr), Fetal-lethal noncoding developmental regulatory RNA / Foxf1 adjacent non-Coding developmental regulatory RNA (Fendrr) and lncFsd2, were studied in this work to demonstrate the variety of cellular and biological processes that require lncRNA-mediated fine-tuning, in regard to the cardiopulmonary system.
Swhtr was found to be expressed exclusively in cardiomyocytes and became critical for regeneration after myocardial injury. Mice lacking Swhtr did not show issues under normal conditions, but failed to undergo compensatory hypertrophic remodeling after injury, leading to increased mortality. This effect was rescued by re-expressing Swhtr, demonstrating importance of the RNA. Genes dependent on Swhtr during cardiac stress were found to likely be regulated by NKX2-5 through physical interaction with Swhtr. Fendrr was found to be expressed in lung and interacted with target promoters through its RNA:dsDNA binding domain, the FendrrBox, which was partially required for Fendrr function. Fendrr, together with activated WNT signaling, regulated fibrosis related target genes via the FendrrBox in fibroblasts. LncFsd2, an ubiquitously expressed lncRNA, showed possible interaction with the striated muscle specific Fsd2, but its exact function and regulatory role remain unclear in muscle physiology. Immunoprecipitation and subcellular fractionation experiments suggest that lncFsd2 might be involved in nuclear retention of Fsd2 mRNA, thus fine-tuning FSD2 protein expression. These investigations have shed light on the roles of these lncRNAs in stress responses, fibrosis-related gene regulation, and localization processes, advancing our understanding of cardiovascular and pulmonary maintenance, reaction to injury, and diseases. The diverse and intricate roles of these three lncRNAs highlight how they influence various cellular processes and disease states, offering avenues for exploring lncRNA functions in different biological contexts.
Mitochondria perform essential energetic, metabolic and signalling functions within the cell. To fulfil these, the integrity of the mitochondrial proteome has to be preserved. Therefore, each mitochondrial subcompartment harbours its own system for protein quality control. However, if the capacity of mitochondrial chaperones and proteases is overloaded, mitochondrial misfolding stress (MMS) occurs. Upon this stress condition, mitochondria communicate with the nucleus to increase the transcription of nuclear encoded mitochondrial chaperones and proteases. This proteotoxic stress pathway was termed the mitochondrial unfolded protein response (UPRmt) aiming at restoring protein homeostasis. Despite being discovered over 25 years ago, the signalling molecules released by stressed mitochondria as well as the corresponding receptor and transcription factor remain poorly understood. With this study, we aimed at characterising the underlying signalling events and mechanisms of how mitochondria react to misfolded proteins. First, we aimed to establish different methods to induce MMS that triggers the transcriptional induction of mitochondrial chaperones and proteases detected by quantitative polymerase chain reaction. We were able to induce UPRmt signalling by overexpression of an aggregation-prone protein and by knock-down or inhibition of mitochondrial protein quality control components. To study the signalling in a time-resolved manner, we focused on the usage of the mitochondrial HSP90 inhibitor GTPP and the mitochondrial LONP1 protease inhibitor CDDO.
Early time point RNA sequencing analysis of cells stressed with GTPP or CDDO revealed upregulated genes in response to oxidative stress. Indeed, measurements of mitochondrial superoxide with the fluorescent dye MitoSOX showed increased levels of reactive oxygen species (ROS) upon MMS induction. In contrast, there was no induction of mitochondrial chaperones and proteases when combining MMS with antioxidants. Compartment-specific targeting of the hydrogen peroxide sensor HyPer7 revealed increased ROS levels in the intermembrane space and matrix of mitochondria, followed by elevated ROS levels in the cytosol at later time points. The importance of cytosolic ROS for the signalling was supported by preventing UPRmt induction with an inhibitor blocking the outer mitochondrial membrane pore. Thus, ROS were identified as an essential UPRmt signal.
To understand which cytosolic factor is modified by ROS, redox proteomics was performed. Here, reversible changes on cysteine residues of the HSP40 co-chaperone DNAJA1 were observed upon MMS. Consequently, transcriptional induction of UPRmt genes was abolished by DNAJA1 knock-down. To understand the function of DNAJA1 during UPRmt signalling, quantitative interaction proteomics upon MMS revealed an increased binding to mitochondrial proteins and its interaction partner HSP70. Immunoprecipitation confirmed a ROS-dependent interaction between HSP40 and HSP70. Increased binding to mitochondrial proteins represented a cytosolic interaction of DNAJA1 with mitochondrial precursor proteins, whose accumulation was confirmed by western blot. Moreover, a fluorescent protein targeted to mitochondria accumulated in the cytosol during GTPP treatment, confirming a reduced import efficiency upon MMS. Preventing the accumulation of precursors by a translation inhibitor or depletion of a general mitochondrial transcription factor resulted in reduced UPRmt activation. Thus, DNAJA1 is essential for UPRmt signalling, since its oxidation by mitochondrial ROS and its enhanced recruitment to mitochondrial precursors allows the integration of both MMS-induced signals.
To link these findings to an increased transcription of mitochondrial chaperones and proteases, we screened for transcription factors accumulating in the nucleus upon MMS by cellular fractionation mass spectrometry. We demonstrated that specifically HSF1 accumulates in nuclei of cells stressed with GTPP or CDDO. Depletion of HSF1 by knock-down or knock-out resulted in the abrogation of the UPRmt-specific transcriptional response. HSF1 activation was visualised by nuclear accumulation on western blot, a process inhibited by ROS and precursor suppression. Moreover, DNAJA1 depletion prevented HSF1 activation. Ultimately, we proved by immunoprecipitation that the inhibitory interaction between HSF1 and HSP70 is reduced upon MMS.
Thus, we conclude that MMS increases mitochondrial ROS that are released into the cytosol. In addition, the import efficiency is reduced upon MMS, resulting in the accumulation of non-imported mitochondrial precursor proteins in the cytosol. Both signals are recognised via DNAJA1 oxidation and substrate binding. The concurrent recruitment of HSP70 to DNAJA1 results in the loss of the inhibitory HSP70-HSF1 interaction. Thus, active HSF1 can migrate to the nucleus to initiate transcription of mitochondrial chaperones and proteases. These findings are in accordance with observations in yeast, where mistargeted mitochondrial proteins activate cellular stress responses. Our results highlight a surprising interconnection and dependence of the mitochondrial and the cytosolic proteostasis network, in which the UPRmt is activated by a combination of two mitochondria-specific proteotoxic stress signals.
Diese Versuchsreihe beschäftigte sich mit der Fragestellung, ob günstige Handelsmarken- Zigaretten mehr Feinstaub als teure Markenzigaretten emittieren. Dabei wurde der Passivrauch untersucht, welcher durch das Verrauchen verschiedener Zigarettenmarken entstand. Feinstaub stellt heutzutage den wichtigsten einzelnen gesundheitsschädlichen Faktor in Innenräumen dar. Das Augenmerk liegt dabei hauptsächlich auf den feinen Partikeln (PM2,5, PM1). Tumore, chronische Atemwegserkrankungen und eine erhöhte Mortalität stellen nur einen Teil der massiven gesundheitlichen Folgen durch Feinstaub dar. Vulnerable Bevölkerungsgruppen wie Kinder und alte Personen sind besonders durch Passivrauch gefährdet. Die Ergebnisse der Versuchsreihe dienen als Grundlage, um den gesundheitsschädlichen Einfluss des Passivrauchs zu interpretieren. Günstige Handelsmarken-Zigaretten weisen, unter anderem wegen des beständig ansteigenden Zigarettenpreises als auch der anhaltenden Inflation in Deutschland, einen wachsenden Marktanteil auf. Daher müssen sie auch weiterhin in wissenschaftlichen Untersuchungen mit einbezogen werden.
Drei teure sowie drei günstige Zigarettenmarken wurden miteinander und mit der Referenzzigarette 3R4F der Universität Kentucky verglichen. Zu den teuren Marken zählten Marlboro, Camel und Nil. Die günstigeren Handelsmarken-Zigaretten waren Giants, Goldfield und Jakordia. Die Rauchpumpe „Automatic environmental tobacco smoke emitter“ (AETSE) ermöglichte in einem definierten Raum der abgeschlossenen Rauchkammer, Passivrauch zu erzeugen, ohne die menschliche Gesundheit zu gefährden. Ein standardisiertes Rauchprotokoll garantierte dabei reproduzierbare und vergleichbare Ergebnisse. Das Laser Aerosolspektrometer (LAS) Modell 1.109 der Firma Grimm wies eine Messspanne von 0,25 μm bis 32 μm auf. So konnte der Feinstaub gemessen und gruppiert werden. Obwohl der Versuchsaufbau nicht vollkommen realitätsgetreu war, entstand ein adäquater Vergleich der Feinstaubemissionen von (Handels-)Markenzigaretten.
PM10 und PM2,5 wurden erhoben, weil sie die von der EU und WHO standardisierten Messwerte für die Luftverschmutzung durch Feinstaub sind. Die Messung von PM1 rechtfertigt sich durch die stärker gesundheitsschädigende Komponente von Partikeln dieser Größenordnung. Für diese drei Größenfraktionen wurden die mittlere Konzentration Cmean sowie die Area Under The Curve (AUC) ermittelt. Die AUC stellt dabei die Höhe der Gesamtexposition durch Feinstaub dar.
Die Ergebnisse dieser Versuchsreihe zeigen, dass PM1 den größten Anteil der Feinstaubemission der getesteten Zigaretten ausmachte. Alle Zigarettenmarken haben in einem abgeschlossenen Raum Feinstaubmengen in gesundheitsgefährdender Menge produziert. Die Handelsmarke Jakordia emittierte beim Verrauchen generell weniger Feinstaub als alle anderen Zigarettenmarken. Im Allgemeinen konnte kein Unterschied zwischen den günstigen Handels- und den teuren Markenzigaretten festgestellt werden. Es ist wissenschaftlich belegt, dass sich jede Feinstaubkonzentration negativ auf die Gesundheit auswirkt. Die Ergebnisse können dementsprechend in Gänze unter dem Gesichtspunkt der Gesundheitsschädlichkeit eingestuft werden.
Aufgrund veralteter und unspezifischer, beziehungsweise fehlender Angaben zu den Inhaltsstoffen der einzelnen Zigarettensorten, konnte die Ursache der Unterschiede zwischen Jakordia und den anderen Marken nicht geklärt werden. Die Zigarettenhersteller müssen verpflichtet werden, die detaillierten Zusammensetzungen der Tabakprodukte den Behörden wie dem BMEL oder dem Bundesgesundheitsministerium zugänglich zu machen. Dies wäre ein wichtiger Bestandteil für die zukünftige Forschung und Risikobewertung der verschiedenen Inhalts- und Zusatzstoffe.
This dissertation constitutes a series of successive research papers, starting with the characterization of various optogenetic tools up to the establishment of purely optical electrophysiology in living animals.
Optogenetics has revolutionized neurobiology as it allows stimulation of excitable cells with exceptionally high spatiotemporal resolution. To cope with the increasing complexity of research issues and accompanying demands on experimental design, the broadening of the optogenetic toolbox is indispensable. Therefore, one goal was to establish a wide variety of novel rhodopsin-based actuators and characterize them, among others, with respect to their spectral properties, kinetics, and efficacy using behavioral experiments in Caenorhabditis elegans. During these studies, the applicability of highly potent de- and hyperpolarizers with adapted spectral properties, altered ion specificity, strongly slowed off-kinetics, and inverted functionality was successfully demonstrated. Inhibitory anion channelrhodopsins (ACRs) stood out, filling the gap of long-sought equivalent hyperpolarizing tools, and could be convincingly applied in a tandem configuration combined with the red-shifted depolarizer Chrimson for bidirectional stimulation (Bidirectional Pair of Opsins for Light-induced Excitation and Silencing, BiPOLES). A parallel study aimed to compare various rhodopsin-based genetically encoded voltage indicators (GEVIs) in the worm: In addition to electrochromic FRET-based GEVIs that use lower excitation intensity, QuasAr2 was particularly convincing in terms of voltage sensitivity and photostability in C. elegans. However, classical optogenetic approaches are quite static and only allow perturbation of neural activity. Therefore, QuasAr2 and BiPOLES were combined in a closed-loop feedback control system to implement the first proof-of-concept all-optical voltage clamp to date, termed the optogenetic voltage clamp (OVC). Here, an I-controller generates feedback of light wavelengths to bidirectionally stimulate BiPOLES and keep QuasAr’s fluorescence at a desired level. The OVC was established in body wall muscles and various types of neurons in C. elegans and transferred to rat hippocampal slice culture. In the worm, it allowed to assess altered cellular physiology of mutants and Ca2+-channel characteristics as well as dynamical clamping of distinct action potentials and associated behavior.
Ultimately, the optogenetic actuators and sensors implemented in the course of this cumulative work enabled to synergistically combine the advantages of imaging- and electrode-based techniques, thus providing the basis for noninvasive, optical electrophysiology in behaving animals.
Bioactive small molecules are used in many research areas as important tools to uncover biological pathways, interpret phenotypic changes, deconvolute protein functions and explore new therapeutic strategies in disease relevant cellular model systems. To unlock the full potential of these small molecules and to ensure reliability of results obtained in cellular assays, it is crucial to understand the properties of these small molecules. These properties encompass their activity and potency on their designated target(s), their selectivity towards unintended off-targets and their phenotypic effects in a cellular system. Approved drugs often engage with multiple targets, which can be beneficial for some applications such as treatment of cancer where several pathways need to be inhibited for treatment efficacy. However, targeting multiple key proteins in diverse pathways also increases the possibility for unspecific or unwanted side effects. For many drugs the entire target space that they modulate is not known. This makes it difficult to use these drugs for target deconvolution or functional assays with the aim to understand the underlying biological processes. In contrast to drugs, for mechanistic studies, a good alternative are chemical tool compounds so called chemical probes that are usually exclusively selective as well as chemogenomic compounds, that inhibit several targets but have narrow selectivity profiles. Because they are mechanistic tools, chemical tool compounds must meet stringent quality criteria and they are therefore well characterized in terms of their potency, selectivity and cellular on-target activity. To ensure that an observed phenotypic effect caused by a compound can be attributed to the described target(s), it is essential to study also properties of chemical tools leading to unspecific cellular effects. There are a variety of unspecific effects that can be caused by physiochemical compound properties that can interfere with phenotypic assays as well as functional compound evaluations. One of these effects is low solubility causing toxicity or intrinsic fluorescence potentially interfering with assay readouts. But unanticipated cellular responses can also arise from unspecific binding, accumulation in cellular compartments or damage caused to organelles such as mitochondria or the cytoskeleton that can result in the induction of diverse forms of cell death.
In this study, we investigated the influence of a variety of small molecules on distinct cell states, by establishing and validating high-content imaging assays, which we called Multiplex assay. This assay portfolio enabled us to detect different cellular responses using diverse fluorescent reporters, such as the influence of a compound on cell viability, induction of cell death programs and modulation of the cell cycle. Additionally, general compound properties such as precipitation and intrinsic fluorescence were simultaneously detected. The assay is adaptable to assess other cellular properties of interest, such as mitochondrial health, changes in cytoskeletal morphology or phospholipidosis. A significant advantage of the assay is that we are using live cells, so we can capture dynamic cellular changes and fluctuations that can be crucial for the understanding of cellular responses.
Resilienz als Schutzfaktor vor der Entwicklung psychischer Erkrankungen ist angesichts der zunehmenden gesellschaftlichen Belastung durch chronischen Stress und stressassoziierte Folgeerkrankungen ein hochaktuelles Forschungsthema. Obwohl bereits zahlreiche Erhebungen zur Resilienz existieren, herrscht kein Konsens über die konkrete Operationalisierung des Konzepts. In der Folge differieren vorliegende Studienergebnisse stark voneinander, sind nur schwer miteinander vergleichbar und fraglich auf die Gesellschaft zu übertragen. Die vorliegende Arbeit untersucht daher, ob Haarcortisol einen geeigneten Biomarker in der Resilienzforschung darstellt und einen Beitrag zur Vereinheitlichung und Objektivierung dieses Forschungsgebietes leisten kann.
Zur Beantwortung dieser Frage wurde auf die Daten des aktuell laufenden Langzeitforschungsprojekts „Longitudinal Resilience Assessment“ der Universitätskliniken Frankfurt und Mainz aus den Jahren 2017 bis 2019 zurückgegriffen. Alle Proband*innen der psychisch gesunden Stichprobe (N= 192, 18-50 Jahre) füllten zu insgesamt drei Erhebungszeitpunkten nach Studieneinschluss und im Abstand von je drei Monaten Onlinefragebögen zur Ermittlung der aktuell vorherrschenden Stressexposition, der allgemeinen psychischen Gesundheit sowie des subjektiven Stresserlebens aus. Gleichzeitig fand die Entnahme von Haarproben für die Analyse der Haarcortisolkonzentration statt. Zum Studieneinschluss erfolgte ergänzend die Erhebung der Traumatisierung und negativen Erfahrungen im Kindesalter.
Mittels linearer multivariater Regression wurde ein Effekt möglicher anthropometrischer und soziodemographischer Einflussfaktoren auf die Cortisolkonzentration im Haar ausgeschlossen. Ferner wurde die Auswirkung der Lagerungszeit auf die Höhe der Cortisolwerte im Haar untersucht. Es zeigte sich, dass Haarproben mit einer kürzeren Lagerungszeit signifikant höhere Cortisolwerte aufwiesen als solche mit einer längeren Lagerungszeit. Die Stabilität der Cortisolkonzentrationen über die einzelnen Messzeitpunkte hinweg erwies sich dabei insgesamt nur als mäßig hoch. Zur Untersuchung des Zusammenhangs zwischen subjektivem und objektivem Stress, Traumatisierung und negativen kindlichen Erfahrungen, allgemeiner psychischer Gesundheit, Resilienz und HCC wurden Spearman-Rang-Korrelationen angewandt. Auch hier ließen sich keine statistisch signifikanten Zusammenhänge feststellen. Dennoch konnten bei Personen mit einer Veränderung des Stressniveaus während des Beobachtungszeitraumes eine insgesamt deskriptiv erhöhte Stressexposition sowie statistisch signifikant höhere Mengen an Haarcortisol beobachtet werden. Bei weiteren explorativen Datenanalysen innerhalb einer kleinen Subpopulation der Studienstichprobe konnten während des Einwirkens eines intensiven spezifischen Stressors erhöhte HCC-Werte in Verbindung mit schlechteren psychischen Gesundheitsergebnissen gebracht werden.
Auf Grundlage dieser Arbeit lässt sich kein relevanter Einfluss verschiedener Stressvariablen auf die Cortisolkonzentration im Haar ableiten. Auch die individuelle Resilienz steht in keinem Zusammenhang zum HCC. Die Ergebnisse der explorativen Untersuchungen deuten in Zusammenschau mit einer mäßig hohen Stabilität des HCC jedoch darauf hin, dass Haarcortisol ein veränderungssensitiver Biomarker sein kann. Bei intensiver spezifischer Stresseinwirkung steht es in Zusammenhang mit schlechteren Gesundheitsergebnissen und damit indirekt mit der individuellen Resilienz. In zukünftigen Arbeiten sollte untersucht werden, auf welche Weise die Höhe des Haarcortisols Hinweise auf die Auswirkungen einer spezifischen Stressexposition und damit auf den psychischen Gesundheitszustand eines Individuums liefern kann, um so Risikogruppen identifizieren und diese durch frühzeitige Interventionen vor der Entwicklung psychischer Erkrankungen schützen zu können.
Anthropogenic activities have a major impact on our planet and rapidly drive biodiversity loss in ecosystems at a global scale. Particularly over the last century, rising CO2 emissions significantly raised global temperatures and increased the intensity and frequency of droughts and heatwaves. Additionally, agricultural land use and fossil fuel combustion contribute to the continuous release of nitrogen (N) and phosphorus (P) into ecosystems worldwide through extensive fertilization and deposition from the atmosphere. It is important to understand how these rapid changes affect the evolution of plant populations and their adaptive potential. Adaptation by natural selection (i.e., adaptive evolution) within a few generations is an essential process as a response to rapid environmental changes. Rapid evolution of plant populations can be detected by using the so-called resurrection approach. Here, diaspores (i.e., seeds) from a population are collected before (ancestors) and after (descendants) a potential selection pressure (e.g., consecutive years of drought or changes in nutrient supply). Comparing phenotypes of ancestors and descendants in a common environment such as an outside garden, greenhouse, or climate chamber, may then reveal evolutionary changes. Ideally, plants are first grown in a common environment for an intermediate refresher generation to reduce parental and storage effects.
The aim of this thesis was to investigate the occurrence of adaptive evolution in natural plant populations in response to rapidly changing environments over the past three decades. I conducted three experiments using the resurrection approach to generate comprehensive data on the adaptive processes that acted on three plant populations from three different species over the last three decades. Furthermore, I filled knowledge gaps in plant evolutionary ecology and conceptually developed the resurrection approach further.
In Chapter I, I performed a novel approach by testing for adaptive evolution in natural plant populations using the resurrection approach in combination with in-situ transplantations. I cultivated seedlings from ancestors (23 – 26 years old) and contemporary descendants of three perennial species (Melica ciliata, Leontodon hispidus and Clinopodium vulgare) from calcareous grasslands in the greenhouse and In Chapter III, I assessed the reproducibility of phenotypic differences between genotypes among three different growth facilities (climate chamber, greenhouse, and outdoor garden). I also evaluated differences in phenotypic expression between plants grown after one vs. two intermediate generations (i.e., refresher generations). I performed this experiment within the framework of the resurrection approach and compared ancestors and descendants of the same population of Leontodon hispidus.
I observed very strong differences among plants growing in the different growth facilities. I found a significant interaction between the growth facility and the temporal origin (ancestors vs. descendants): descendants had significantly larger rosettes than ancestors only in the greenhouse and they flowered significantly later than ancestors exclusively in the climate chamber. I did not find significant differences between intermediate generations within the growth facilities. Overall, Chapter III shows that the use of a particular experimental system can dictate the presence and magnitude of phenotypic differences. This implies that absence of evidence is not evidence of absence when it comes to investigating genetically based trait differentiation among plant origins (in space or time). Experimental systems should be carefully designed to provide meaningful conditions, ideally mimicking the environmental conditions of the population’s origins. Finally, growing a second intermediate generation did not impact the genetic differences of ancestors and descendants within the environments, supporting the idea that only one intermediate generation may be sufficient to reduce detectable parental and storage effects.
The resurrection approach allows a better understanding of rapid plant adaptation, but some limitations deserve to be highlighted. I only studied one population per species, and Chapters II and III only focus on one population of L. hispidus, which is also hampering generalizations, as adaptive potential can vary greatly among populations of the same species. I only compared the ancestral genotypes to one descendant sample with a long time span in between (26 – 28 years), which makes it hard to pinpoint the selection agents that caused the genetic differentiation among the sampling years. Hence, closely monitoring biotic and abiotic factors of the studied populations between the ancestral and descendant sampling in future studies, would make identifying the responsible selection pressures more precise. I also recommend sampling multiple populations over consecutive years to improve the robustness of results and make generalizations more approachable.Furthermore, combining the resurrection approach with other methods such as in-situ transplantations will be valuable to offset the limitation that adaptations cannot be proven under artificial conditions (e.g., in the greenhouse).