TY - JOUR A1 - Floren, Andreas A1 - von Rintelen, Thomas A1 - Herbert, Paul D. N. A1 - de Araujo, Bruno Cancian A1 - Schmidt, Stefan A1 - Balke, Michael A1 - Narakusumo, Raden Pramesa A1 - Peggie, Djunijanti A1 - Ubaidillah, Rosichon A1 - von Rintelen, Kristina A1 - Müller, Tobias T1 - Integrative ecological and molecular analysis indicate high diversity and strict elevational separation of canopy beetles in tropical mountain forests JF - Scientific Reports N2 - Tropical mountain forests contribute disproportionately to terrestrial biodiversity but little is known about insect diversity in the canopy and how it is distributed between tree species. We sampled tree-specific arthropod communities from 28 trees by canopy fogging and analysed beetle communities which were first morphotyped and then identified by their DNA barcodes. Our results show that communities from forests at 1100 and 1700 m a.s.l. are almost completely distinct. Diversity was much lower in the upper forest while community structure changed from many rare, less abundant species to communities with a pronounced dominance structure. We also found significantly higher beta-diversity between trees at the lower than higher elevation forest where community similarity was high. Comparisons on tree species found at both elevations reinforced these results. There was little species overlap between sites indicating limited elevational ranges. Furthermore, we exploited the advantage of DNA barcodes to patterns of haplotype diversity in some of the commoner species. Our results support the advantage of fogging and DNA barcodes for community studies and underline the need for comprehensive research aimed at the preservation of these last remaining pristine forests. KW - beta-diversity KW - community data KW - gradients KW - insects KW - hypthesis KW - evolution KW - passes KW - ants Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-230565 VL - 10 ER - TY - JOUR A1 - Kadochová, Štěpánka A1 - Frouz, Jan A1 - Roces, Flavio T1 - Sun basking in red wood ants Formica polyctena (Hymenoptera, Formicidae): Individual behaviour and temperature-dependent respiration rates JF - PLoS ONE N2 - In early spring, red wood ants Formica polyctena are often observed clustering on the nest surface in large numbers basking in the sun. It has been hypothesized that sun-basking behaviour may contribute to nest heating because of both heat carriage into the nest by sunbasking workers, and catabolic heat production from the mobilization of the workers’ lipid reserves. We investigated sun-basking behaviour in laboratory colonies of F. polyctena exposed to an artificial heat source. Observations on identified individuals revealed that not all ants bask in the sun. Sun-basking and non-sun-basking workers did not differ in body size nor in respiration rates. The number of sun-basking ants and the number of their visits to the hot spot depended on the temperature of both the air and the hot spot. To investigate whether sun basking leads to a physiological activation linked with increased lipolysis, we measured respiration rates of individual workers as a function of temperature, and compared respiration rates of sun-basking workers before and two days after they were allowed to expose themselves to a heat source over 10 days, at self-determined intervals. As expected for ectothermic animals, respiration rates increased with increasing temperatures in the range 5 to 35˚C. However, the respiration rates of sun-basking workers measured two days after a long-term exposure to the heat source were similar to those before sun basking, providing no evidence for a sustained increase of the basal metabolic rates after prolonged sun basking. Based on our measurements, we argue that self-heating of the nest mound in early spring has therefore to rely on alternative heat sources, and speculate that physical transport of heat in the ant bodies may have a significant effect. KW - biology KW - ants KW - social systems KW - animal sociality KW - lipids KW - nesting habit KW - video recording KW - catabolism Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-171936 VL - 12 IS - 1 ER - TY - JOUR A1 - Römer, Daniela A1 - Bollazzi, Martin A1 - Roces, Flavio T1 - Carbon dioxide sensing in an obligate insect-fungus symbiosis: CO\(_{2}\) preferences of leaf-cutting ants to rear their mutualistic fungus JF - PLoS ONE N2 - Defense against biotic or abiotic stresses is one of the benefits of living in symbiosis. Leaf-cutting ants, which live in an obligate mutualism with a fungus, attenuate thermal and desiccation stress of their partner through behavioral responses, by choosing suitable places for fungus-rearing across the soil profile. The underground environment also presents hypoxic (low oxygen) and hypercapnic (high carbon dioxide) conditions, which can negatively influence the symbiont. Here, we investigated whether workers of the leaf-cutting ant Acromyrmex lundii use the CO\(_{2}\) concentration as an orientation cue when selecting a place to locate their fungus garden, and whether they show preferences for specific CO\(_{2}\) concentrations. We also evaluated whether levels preferred by workers for fungus-rearing differ from those selected for themselves. In the laboratory, CO\(_{2}\) preferences were assessed in binary choices between chambers with different CO\(_{2}\) concentrations, by quantifying number of workers in each chamber and amount of relocated fungus. Leaf-cutting ants used the CO\(_{2}\) concentration as a spatial cue when selecting places for fungus-rearing. A. lundii preferred intermediate CO\(_{2}\) levels, between 1 and 3%, as they would encounter at soil depths where their nest chambers are located. In addition, workers avoided both atmospheric and high CO\(_{2}\) levels as they would occur outside the nest and at deeper soil layers, respectively. In order to prevent fungus desiccation, however, workers relocated fungus to high CO\(_{2}\) levels, which were otherwise avoided. Workers’ CO\(_{2}\) preferences for themselves showed no clear-cut pattern. We suggest that workers avoid both atmospheric and high CO\(_{2}\) concentrations not because they are detrimental for themselves, but because of their consequences for the symbiotic partner. Whether the preferred CO\(_{2}\) concentrations are beneficial for symbiont growth remains to be investigated, as well as whether the observed preferences for fungus-rearing influences the ants’ decisions where to excavate new chambers across the soil profile. KW - fungi KW - nesting habits KW - carbon dioxide KW - ants KW - social systems KW - humidity KW - symbiosis KW - fungal physiology Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-159561 VL - 12 IS - 4 ER - TY - JOUR A1 - Halboth, Florian A1 - Roces, Flavio T1 - The construction of ventilation turrets in Atta vollenweideri leaf-cutting ants: Carbon dioxide levels in the nest tunnels, but not airflow or air humidity, influence turret structure JF - PLoS ONE N2 - Nest ventilation in the leaf-cutting ant Atta vollenweideri is driven via a wind-induced mechanism. On their nests, workers construct small turrets that are expected to facilitate nest ventilation. We hypothesized that the construction and structural features of the turrets would depend on the colony’s current demands for ventilation and thus might be influenced by the prevailing environmental conditions inside the nest. Therefore, we tested whether climate-related parameters, namely airflow, air humidity and CO\(_{2}\) levels in the outflowing nest air influenced turret construction in Atta vollenweideri. In the laboratory, we simulated a semi-natural nest arrangement with fungus chambers, a central ventilation tunnel providing outflow of air and an aboveground building arena for turret construction. In independent series, different climatic conditions inside the ventilation tunnel were experimentally generated, and after 24 hours, several features of the built turret were quantified, i.e., mass, height, number and surface area (aperture) of turret openings. Turret mass and height were similar in all experiments even when no airflow was provided in the ventilation tunnel. However, elevated CO\(_{2}\) levels led to the construction of a turret with several minor openings and a larger total aperture. This effect was statistically significant at higher CO\(_{2}\) levels of 5% and 10% but not at 1% CO\(_{2}\). The construction of a turret with several minor openings did not depend on the strong differences in CO\(_{2}\) levels between the outflowing and the outside air, since workers also built permeated turrets even when the CO\(_{2}\) levels inside and outside were both similarly high. We propose that the construction of turrets with several openings and larger opening surface area might facilitate the removal of CO\(_{2}\) from the underground nest structure and could therefore be involved in the control of nest climate in leaf-cutting ants. KW - carbon dioxide KW - animal sociality KW - ants KW - fungi KW - humidity KW - social systems KW - nesting habits KW - fungal structure Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-159133 VL - 12 IS - 11 ER - TY - JOUR A1 - Arenas, Andrés A1 - Roces, Flavio T1 - Avoidance of plants unsuitable for the symbiotic fungus in leaf-cutting ants: Learning can take place entirely at the colony dump JF - PLoS ONE N2 - Plants initially accepted by foraging leaf-cutting ants are later avoided if they prove unsuitable for their symbiotic fungus. Plant avoidance is mediated by the waste produced in the fungus garden soon after the incorporation of the unsuitable leaves, as foragers can learn plant odors and cues from the damaged fungus that are both present in the recently produced waste particles. We asked whether avoidance learning of plants unsuitable for the symbiotic fungus can take place entirely at the colony dump. In order to investigate whether cues available in the waste chamber induce plant avoidance in naïve subcolonies, we exchanged the waste produced by subcolonies fed either fungicide-treated privet leaves or untreated leaves and measured the acceptance of untreated privet leaves before and after the exchange of waste. Second, we evaluated whether foragers could perceive the avoidance cues directly at the dump by quantifying the visits of labeled foragers to the waste chamber. Finally, we asked whether foragers learn to specifically avoid untreated leaves of a plant after a confinement over 3 hours in the dump of subcolonies that were previously fed fungicide-treated leaves of that species. After the exchange of the waste chambers, workers from subcolonies that had access to waste from fungicide-treated privet leaves learned to avoid that plant. One-third of the labeled foragers visited the dump. Furthermore, naïve foragers learned to avoid a specific, previously unsuitable plant if exposed solely to cues of the dump during confinement. We suggest that cues at the dump enable foragers to predict the unsuitable effects of plants even if they had never been experienced in the fungus garden. KW - leaves KW - ants KW - fungi KW - foraging KW - animal sociality KW - social systems KW - learning KW - symbiosis Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-157559 VL - 12 IS - 3 ER - TY - JOUR A1 - Mildner, Stephanie A1 - Roces, Flavio T1 - Plasticity of Daily Behavioral Rhythms in Foragers and Nurses of the Ant Camponotus rufipes: Influence of Social Context and Feeding Times JF - PLoS One N2 - Daily activities within an ant colony need precise temporal organization, and an endogenous clock appears to be essential for such timing processes. A clock drives locomotor rhythms in isolated workers in a number of ant species, but its involvement in activities displayed in the social context is unknown. We compared locomotor rhythms in isolated individuals and behavioral rhythms in the social context of workers of the ant Camponotus rufipes. Both forager and nurse workers exhibited circadian rhythms in locomotor activity under constant conditions, indicating the involvement of an endogenous clock. Activity was mostly nocturnal and synchronized with the 12:12h light-dark-cycle. To evaluate whether rhythmicity was maintained in the social context and could be synchronized with non-photic zeitgebers such as feeding times, daily behavioral activities of single workers inside and outside the nest were quantified continuously over 24 hours in 1656 hours of video recordings. Food availability was limited to a short time window either at day or at night, thus mimicking natural conditions of temporally restricted food access. Most foragers showed circadian foraging behavior synchronized with food availability, either at day or nighttime. When isolated thereafter in single locomotor activity monitors, foragers mainly displayed arrhythmicity. Here, high mortality suggested potential stressful effects of the former restriction of food availability. In contrast, nurse workers showed high overall activity levels in the social context and performed their tasks all around the clock with no circadian pattern, likely to meet the needs of the brood. In isolation, the same individuals exhibited in turn strong rhythmic activity and nocturnality. Thus, endogenous activity rhythms were inhibited in the social context, and timing of daily behaviors was flexibly adapted to cope with task demands. As a similar socially-mediated plasticity in circadian rhythms was already shown in honey bees, the temporal organization in C. rufipes and honey bees appear to share similar basic features. KW - honey bees KW - biological locomotion KW - foraging KW - circadian rhythms KW - chronobiology KW - insects KW - nurses KW - ants Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-148010 VL - 12 IS - 1 ER - TY - JOUR A1 - Römer, Daniela A1 - Roces, Flavio T1 - Nest Enlargement in Leaf-Cutting Ants: Relocated Brood and Fungus Trigger the Excavation of New Chambers N2 - During colony growth, leaf-cutting ants enlarge their nests by excavating tunnels and chambers housing their fungus gardens and brood. Workers are expected to excavate new nest chambers at locations across the soil profile that offer suitable environmental conditions for brood and fungus rearing. It is an open question whether new chambers are excavated in advance, or will emerge around brood or fungus initially relocated to a suitable site in a previously-excavated tunnel. In the laboratory, we investigated the mechanisms underlying the excavation of new nest chambers in the leaf-cutting ant Acromyrmex lundi. Specifically, we asked whether workers relocate brood and fungus to suitable nest locations, and to what extent the relocated items trigger the excavation of a nest chamber and influence its shape. When brood and fungus were exposed to unfavorable environmental conditions, either low temperatures or low humidity, both were relocated, but ants clearly preferred to relocate the brood first. Workers relocated fungus to places containing brood, demonstrating that subsequent fungus relocation spatially follows the brood deposition. In addition, more ants aggregated at sites containing brood. When presented with a choice between two otherwise identical digging sites, but one containing brood, ants' excavation activity was higher at this site, and the shape of the excavated cavity was more rounded and chamber-like. The presence of fungus also led to the excavation of rounder shapes, with higher excavation activity at the site that also contained brood. We argue that during colony growth, workers preferentially relocate brood to suitable locations along a tunnel, and that relocated brood spatially guides fungus relocation and leads to increased digging activity around them. We suggest that nest chambers are not excavated in advance, but emerge through a self-organized process resulting from the aggregation of workers and their density-dependent digging behavior around the relocated brood and fungus. KW - fungi KW - ants KW - fungal structure KW - fungal pathogens KW - foraging KW - humidity KW - pupae KW - fungal diseases Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-112860 ER - TY - THES A1 - Kaiser, Dorkas T1 - Termites and ants in BURKINA FASO (WEST AFRICA): taxonomic and functional diversity along land-use gradients; ecosystem services of termites in the traditional ZAÏ SYSTEM T1 - Termiten und Ameisen in Burkina Faso (West Africa): Taxonomische und funktionelle Diversität entlang Landnutzungs-Gradienten, Ökosystemdienste von Termiten im traditionellen Zai system N2 - The consequences of habitat change for human well-being are assumed to be especially extreme in Burkina Faso. The country is located in a highly drought-sensitive zone of West Africa, and small‐scale subsistence farmers may be especially affected if losses of biodiversity lead to changes in ecosystem functioning; many depend on more or less degraded lands for agricultural production. The overall aim of the present thesis consequently was to characterize the functional traits of soil-organisms which are crucial for a productive and balanced soil environment in the study region – termites and ants. They are true ecosystem engineers whose activity alters the habitat. Through soil-turnover in the course of constructing biogenic structures of varying size and nature (mounds, nests, galleries, soil-sheetings, foraging-holes), they bioturbate huge amounts of soil masses and exert massive effects on soil structure, positively influencing the fertility, stability, aeration and water infiltration rate into soils; and they provide habitats for other species. In sub-Saharan Africa, ants and termites are the only active soil macrofauna during the long dry season; in the sub-Sahel zone of Burkina Faso, termites even represent the only active, quantitatively remarkable decomposers all year round. Since no information was available about the actual diversity of the focal arthropods, I divided the thesis in two main parts: In the first part, a baseline study, I assessed the local termite and ant fauna, and investigated their quantitative and qualitative response to changing habitat parameters resulting from increasing human impact (‘functional response traits’). In the second and applied part, I addressed the impact of the biogenic structures which are important for the restoration of degraded soils (‘functional effect traits’). Two traditional agricultural systems characteristic for the study region were selected. Each system represented a land-use intensification gradient comprising four distinct habitats now differing in the magnitude of human intervention but formerly having the same initial state. The first disturbance gradient, the temporal cross-section of a traditional soil water conservation technique to restore degraded heavily encrusted, barren soil named Zaï in Ouahigouya (Yatenga province, sub-Sahel zone); the second disturbance gradient, an agriculture type using crop rotation and fallow as nutrient management techniques near Fada N’Gourma (Gourma province, North-Sudanese zone). No standard protocol existed for the assessment of termite and ant diversity in semi-arid (agro-) ecosystems; two widely accepted standard protocols provided the basis for the newly revised and combined rapid assessment protocol ‘RAP’: the ALL protocol for leaf litter ants of Agosti and Alonso (2000), and the transect protocol for termites in tropical forests of Jones and Eggleton (2000). In each study site, three to four replicate transects were conducted during the rainy seasons (2004—2008). The RAP-protocol turned out to be very effective to characterize, compare and monitor the taxonomic and functional diversity of termites and ants; between 70% and 90% of the estimated total species richness were collected on all levels (transects, habitats, regions). Together in both regions, 65 ant species (25 genera) and 39 termite species (13 genera) were collected. These findings represent the first records for Burkina Faso. The data indicate a high sensitivity of termites and ants to land-use intensification. The diversity strongly decreased with increasing anthropogenic impact in the North-Sudan region. In total, 53 ant species (23 genera) and 31 termite species (12 genera) were found. Very promising results concerning the recovery potential of the soil-arthropods’ diversity were gathered in the Zaï system. The diversity of both taxa strongly increased with increasing habitat rehabilitation – in total, 41 ant species (16 genera) and 33 termite species (11 genera) were collected. For both taxa significant differences could be noted in the shape of the density variations along the gradient. For instance termites: Fungus-growers showed the greatest adaptability to different management practices. The greatest variations between the habitats were observed in soil and grass-feeding termites. Whole functional groups were missing in heavily impacted habitats, e.g. soil-, grass-, and wood-feeders were absent in the degraded site in the sub-Sahel zone. Several environmental parameters could be identified which significantly explained a great part of the variations in the composition of the arthropods’ communities; they indicate the importance of the habitats’ structural complexity (vegetation structure) and concomitant effects on diurnal temperature and moisture fluctuations, the availability of food sources, and the soil-structure. The diversity of termites in the sub-Sahel region was strongly correlated with the crown-cover percentages, the topsoils’ sand-content, and the availability of litter; in the North-Sudan region with the cumulated woody plant basal area, the topsoils’ clay- and organic matter-content. The parameters identified for ant communities in the Zaï system, were the height of trees, the topsoils’ clay-content and air humidity; in the North-Sudan region the habitats’ crown-cover percentages, the quantity of litter and again the height of trees. In the second part of the thesis, I first rapidly assessed the (natural) variations in the amount of epigeal soil-structures along the two disturbance gradients in order to judge the relative importance of termites and ants for soil-turnover. The results illustrated impressively that a) in all study sites, termites were the main bioturbators while ant structures were of minor importance for soil turn-over; b) earthworms and grass-feeding termites contributed significantly to soil turn-over in the more humid North-Sudan region; and c) the bioturbated soil mass varied between seasons and years, however, the relative importance of the different taxa seemed to be fairly constant. In the sub-Sahel zone, fungus-growing Odontotermes and Macrotermes species fully take over the important function of bioturbation, leading to the transport of huge amounts of fine-textured soil material to the surface; with increasing habitat restoration, coarse fragments decreased in the upper horizons and became concentrated deeper along the soil profile. Consequently, in the applied part, I concentrated on the bioturbation activity of fungus-growing termites in the four main stages of the Zaï system: crusted bare soil (initial stage), millet field, young and old forest. In each of the four Zaï sites nine experimental blocks (each comprising four plots of 1m2) were used to stimulate the foraging activity of fungus-growing termites with different, locally available organic materials (Aristida kerstingii hay, Bombax costatum wooden blocks, compost and a control without any organic amendment). The experiment was conducted twice for the duration of four weeks (rainy season 2005, dry season 2006). The plots were regularly checked and the increase of the area covered by sheetings chronologically followed. After four weeks a) all sheeting-soil was collected, air dried and separately weighed according to the different genera, and b) the foraging-holes were counted and their diameter measured. Additionally, c) ponded water infiltration was measured in selected plots, and d) the physicochemical properties of sheeting-soil were analyzed. In case of complete consumption of the offered hay during the experimental 4-weeks-duration, the same procedure (a, b) was followed before adding new hay to the respective plot. The comparison between the different plots, sites and seasons revealed clearly that hay was the most attractive bait; for each gram of hay removed, Odontotermes brought about 12 g soil to the surface, Macrotermes 4 g. Odontotermes was the only genus attracted by organic material to the degraded area, and was therefore the decisive primary physical ecosystem engineer in the Zaï system, initiating the restoration process. The mass of soil bioturbated in the course of foraging increased strongly from the degraded, barren towards the most rehabilitated reforested site. Combining all 36 experimental plots per Zaï stage, Odontotermes bioturbated 31.8 tons of soil per hectare and month dry season in the degraded area, and 32.4 tons ha-1 mon-1 in the millet fields; both genera moved 138.9 tons ha-1 mon-1 in the young and 215.5 tons ha-1 mon-1 in the old Zaï forest. Few comparable figures were found in the literature. In northern Burkina Faso, both genera constructed 20 tons of sheetings ha-1 mon-1 after mulching with a straw-wood mixture (Mando & Miedema 1997), and in Senegal, around 10 tons ha-1 mon-1 were moved in heavily foraged plots (Rouland et al. 2003). Within a site, soil turn-over and the number of foraging holes created was always highest in hay, followed by compost, then by wood and in the end control. The fungus-growers’ foraging-activity was leading to an enormous increase in surface pore space – after one month of induced foraging activity in hay-plots, the median number of foraging-holes increased from 142 m-2 in the degraded site up to 921 m-2 in the old Zaï forest. The creation of subterranean galleries and macropores significantly increased the water infiltration rate by a mean factor 2–4. Laboratory analyses revealed that sheeting-soil differed strongly from the respective control soil as well as between the seasons, the food-type covered, and the two genera. Odontotermes-sheetings differed in more parameters than Macrotermes-sheetings, and dry season sheetings differed in more parameters (and more strongly) than rainy season sheetings. In the present study, soil organic matter, carbon and nitrogen contents were significantly increased in all dry season sheetings; in the rainy season mainly in those built on compost. Texture analysis pointed out that both genera used topsoil and soil from deeper horizons in varying mixture ratios, thereby supporting findings of Jouquet et al. (2006). To summarize, the present thesis contributes to a better understanding of the functional response traits of termites and ants to changing environmental parameters resulting from increasing human impact. The RAP-protocol represents an easy-to-learn and very effective method to representatively characterize, compare and monitor the taxonomic and functional diversity of termites and ants. The experiment has provided conclusive evidence of the importance of the consideration of fungus-growing termites (particularly Odontotermes and Macrotermes species) when aiming to restore infertile, degraded and crusted soils and to maintain a sustainable agricultural production in the Sahel‐Sudanese zone of West Africa. N2 - Die Folgen von Lebensraumveränderungen für die Lebensqualität der Bevölkerung sind vermutlich besonders extrem in Burkina Faso. Das Land liegt in einem für Dürren sehr anfälligen Gebiet von Westafrika. Die Kleinbauern, welche die Hauptproduzenten für Lebensmittel der Region sind, können besonders betroffen sein, wenn Verluste der biologischen Vielfalt zu Veränderungen in den Ökosystemfunktionen führen, da viele von degradierten Flächen für die landwirtschaftliche Produktion abhängen. Das Hauptziel der vorliegenden Arbeit war daher, die funktionellen Merkmale derjenigen Bodenorganismen zu charakterisieren, die im Untersuchungsgebiet von entscheidender Bedeutung für ertragreiche und ausgewogene Böden sind: Termiten und Ameisen. Sie sind wahre Ökosystem‐Ingenieure, deren Aktivität den Lebensraum verändert. Durch Bodenumwälzung während des Baus von biogenen Strukturen unterschiedlicher Größe und Natur (Hügel, Nester, unterirdischer Gänge, Schutzschichten aus Erde, sogenannte „soil-sheetings“, Furagierlöcher, etc.) bewegen sie riesige Bodenmassen und haben enorme Auswirkungen auf die Bodenstruktur. Dies wirkt sich wiederrum positiv auf die Bodenfruchtbarkeit, die Stabilität, die Bodenbelüftung und die Wasserinfiltration aus, und bietet so auch Lebensraum für andere Arten. In den afrikanischen Ländern südlich der Sahara sind Ameisen und Termiten die einzige nennenswerte aktive Bodenmakrofauna während des gesamten Jahres. In der Sub-Sahelregion von Burkina Faso sind während der Trockenzeit Termiten die einzigen aktiven Primärzersetzer. Da keine Informationen über den Artenreichtum der Termiten- und Ameisen-Fauna in Burkina Faso vorlagen, setzte ich in der Dissertation zwei Schwerpunkte: Im ersten Teil, einer Grundlagenstudie, erfasste ich die lokale Termiten und Ameisenfauna in verschiedenen Landnutzungssystemen und untersuchte deren quantitative und qualitative Reaktion auf sich ändernde Umweltbedingungen, die aus dem zunehmenden Einfluss des Menschen resultieren ("funktionelle Reaktionsmerkmale"). Im zweiten und anwendungsbezogenen Teil befasste ich mich mit dem Einfluss der für die Regeneration degradierter Böden wichtigen biogenen Strukturen ("funktionelle Wirkungsmerkmale"). Es wurden zwei für die Untersuchungsregion typische traditionelle Landwirtschafts-formen ausgewählt. Jede stellte einen Landnutzungsgradienten dar, der vier verschiedene Habitate umfasste, welche sich in der Stärke des anthropogenen Einflusses unterschieden, ursprünglich aber den gleichen Anfangszustand hatten. Der erste Nutzungsgradient in Ouahigouya (Provinz Yatenga, Sub-Sahel-Zone) – namens Zaï – war ein zeitlicher Querschnitt durch eine traditionelle Boden- und Wasserschutztechnik zur Regeneration stark verkrusteter, degradierter Böden. Der zweite Nutzungsgradient nahe der Stadt Fada N’Gourma (Provinz Gourma, Nord-Sudan Region) war ein Landwirtschaftstyp, der Fruchtfolge und Brachzeiten für das Nährstoffmanagement nutzte. Zur Erhebung der Termiten- und Ameisen-Diversität in semi-ariden (Agrar-) Ökosystemen existierte kein Standardprotokoll; zwei international akzeptierte Protokolle bildeten die Grundlage für das neu überarbeitete und kombinierte Protokoll „RAP“ zur schnellen Erhebung der Termiten- und Ameisenfauna: Das ALL-Protokoll für Ameisen der Laubstreuschicht von Agosti and Alonso (2000) und das Transektprotokoll für Termiten in tropischen Wäldern von Jones and Eggleton (2000). In meiner Untersuchung wurden zwischen 2004 und 2008 während der Regenzeit in jedem der Untersuchungsgebiete drei bis vier Transekte abgesammelt. Das RAP-Protokoll erwies sich als sehr effektive Methode, um die taxonomische und funktionelle Vielfalt von Termiten und Ameisen zu beschreiben, zu vergleichen und zu überwachen. Zwischen 70% und 90% der geschätzten Gesamtartenzahl wurden auf allen Ebenen (Transekte, Lebensräume, Regionen) gesammelt. Insgesamt wurden in beiden Regionen 65 Ameisenarten (25 Gattungen) und 39 Termitenarten (13 Gattungen) gesammelt. Dies sind bislang die ersten Nachweise für Burkina Faso. Die Daten weisen auf eine hohe Sensitivität von Termiten und Ameisen gegenüber einer Landnutzungsintensivierung hin. Mit zunehmendem anthropogenem Einfluss nahm die Artenvielfalt in der Nord-Sudanregion stark zu. Insgesamt wurden 53 Ameisenarten (23 Gattungen) und 31 Termitenarten (12 Gattungen) gefunden. Sehr vielversprechende Ergebnisse wurden bezüglich des Erholungspotenzials der Bodenarthropoden-Diversität im Zaï-System gesammelt; die Vielfalt beider Taxa nahm in mit zunehmender Lebensraumsanierung stark zu: Insgesamt wurden 41 Ameisenarten (16 Gattungen) und 33 Termitenarten (11 Gattungen) dieser Region gefunden. Entlang der Landnutzungsgradienten zeigten sich signifikante Unterschiede im Vorkommen von Termiten und Ameisen. So bewiesen bei Termiten beispielsweise die Pilzzüchter die größte Anpassungsfähigkeit an die unterschiedlichen Bewirtschaftungspraktiken. Die größten Unterschiede zwischen den Lebensräumen wurden bei den boden- und den grasfressenden Termiten beobachtet. In stark vom Menschen beeinflussten Lebensräumen fehlten ganze funktionelle Gruppen, beispielsweise kamen in der degradierten Fläche der Sub-Sahelregion weder Bodenfresser noch Grasfresser oder Holzfresser vor. Mehrere Umweltparameter wurden identifiziert, welche einen großen Teil der Veränderungen in der Zusammensetzung der Arthropoden-Gemeinschaften entlang der Gradienten signifikant erklärten; sie lassen auf eine große Bedeutung der strukturellen Habitat-Komplexität (Vegetationsstruktur) und den damit verbundenen mikroklimatischen Schwankungen (Temperatur- und Feuchtigkeit), der Nahrungsverfügbarkeit und der Bodenstruktur schließen. Die Termitenvielfalt in der Sub-Sahelzone korrelierte stark mit dem Überschirmungsgrad, dem Sandgehalt im Oberboden und der Verfügbarkeit von Streu. Ihre Vielfalt in der Nord-Sudanregion korrelierte stark mit der kumulierten Gehölzpflanzen-Grundfläche, dem Tongehalt und dem organischen Material im Oberboden. Die identifizierten Parameter für die Ameisen-Gemeinschaften im Zaï-System waren die Höhe der Bäume, der Sandgehalt im Oberboden und die Luftfeuchte. Ihre Vielfalt in der Nord-Sudanregion korrelierte stark mit dem Überschirmungsgrad, dem Trockengewicht der verfügbaren Streu und der Baumhöhe. Um die relative Bedeutung von Termiten und Ameisen für die Bodenumwälzung beurteilen zu können, erfasste ich im zweiten Teil der Arbeit zunächst die natürlichen Schwankungen im Trockengewicht der in jedem Untersuchungsgebiet oberirdisch vorhandenen biogenen Strukturen. Die Ergebnisse veranschaulichen eindrucksvoll, dass: 1. Termiten in allen Untersuchungsgebieten die Hauptumwälzer, Ameisenstrukturen dagegen von untergeordneter Bedeutung für die Bioturbation waren; 2. Regenwürmer und grasfressende Termiten in der regenreicheren Nord-Sudanregion wesentlich zur Bodenumwälzung beitrugen; 3. die Gesamtmasse der umgewälzten Erde von Jahr zu Jahr schwankte, die relative Bedeutung beider Taxa für die Bioturbation jedoch ziemlich konstant war; 4. in der Sub-Sahelzone die wichtige Funktion der Bodenumwälzung vollständig von pilzzüchtenden Macrotermes- und Odontotermes-Arten übernommen wird, die zusammen große Mengen von feinkörnigem Bodenmaterial an die Oberfläche transportieren. Dadurch sank mit zunehmender Habitat-Rehabilitation der Gehalt an grobkörnigem Bodenmaterial in den oberen Bodenschichten und reicherte sich zunehmend in den tieferen Horizonten an. Im anwendungsbezogen Teil der Arbeit konzentrierte ich mich daher auf die Bioturbationsleistung pilzzüchtender Termiten in den vier Hauptstadien des Zaï-Systems: der degradierten Fläche (Ausgangsstadium der vier Sukzessionsstadien), dem Hirsefeld, dem jungen und dem alten Zaï-Wald. In jedem dieser vier Sukzessionsstadien wurde die Furagiertätigkeit von pilzzüchtenden Termiten folgendermaßen angeregt: Es wurden neun Versuchsblöcke installiert, mit je vier Unterquadraten mit einer Fläche von 1 m2. Drei der Unterquadrate wurde mit unterschiedlichen, lokal verfügbaren organischen Materialien bedeckt (mit Aristida kerstingii Stroh, Bombax costatum Holz, Kompost), eines blieb als Kontrolle ohne organisches Material. Das vierwöchige Experiment wurde zweimal durchgeführt (Regenzeit 2005, Trockenzeit 2006). Dabei wurden die Untersuchungsflächen regelmäßig auf Termitenaktivität überprüft und die Zunahme der “soil-sheetings“ kartiert. Nach vier Wochen wurde: i. Die gesamte Termitenerde gesammelt, luftgetrocknet und für jede Gattung getrennt gewogen; ii. die Furagierlöcher gezählt und ihr Durchmesser vermessen; iii. in ausgewählten Flächen die Wasserinfiltrationsrate gemessen; iv. die physikalisch-chemischen Eigenschaften der Sheeting-Erde analysiert. Sobald das Stroh in einem Unterquadrat abgetragen war, wurde nach den betreffenden Messungen (s. oben i. und ii.) neues aufgebracht. Der Vergleich der Ergebnisse beider Durchläufe zeigte deutlich, dass Stroh der attraktivste Köder war. Für jedes Gramm abgetragenes Stroh wurden von Odontotermes etwa 12 g, von Macrotermes etwa 4 g Erde an die Oberfläche gebracht. Odontotermes war die einzige Gattung, die in der degradierten Fläche von organischem Material angelockt wurde. Sie ist damit der entscheidende primäre physikalische Ökosystem-Ingenieur im Zaï-System, der den Restaurierungsprozess anstößt. Mit zunehmender Habitatsanierung nahm die Menge der umgewälzten Erde stark zu: In den 36 Unterquadraten der degradierten Fläche bewegte Odontotermes insgesamt 31,8 Tonnen Erde pro Hektar und Monat Trockenzeit, in denen der Hirsefelder insgesamt 32,4 Tonnen. Beide Gattungen zusammen bewegten im jungen Zaï-Wald insgesamt 138,9 Tonnen, im alten Wald 215,5 Tonnen Erde pro Hektar und Monat Trockenzeit. In jedem Sukzessionsstadium waren sowohl die Bodenumwälzung als auch die Anzahl der Furagierlöcher in den Versuchsflächen mit Stroh am größten, gefolgt von denen mit Kompost, dann denen mit Holz und zuletzt den Kontrollflächen. Die Furagiertätigkeit der pilzzüchtenden Termiten führte zu einer starken Zunahme der Makroporosität des Oberbodens. Nach einem Monat induzierter Fraßaktivität stieg im Mittel die Anzahl der Furagierlöcher pro Quadratmeter von 142 in der degradierten Fläche auf 921 Löcher im alten Zaï Wald. Die bei der Nahrungssuche gegrabenen Gänge und Löcher führten zu einem signifikanten Anstieg der Wasserinfiltrationsrate, im Mittel um den Faktor 2–4. Nur wenige vergleichbare Zahlen konnten in der Literatur gefunden werden. Bei den Untersuchungen von Mando and Miedema (1997) im Norden von Burkina Faso wälzten die beiden Gattungen nach Mulchen mit einem Holz-Stroh-Gemisch Sheetings mit einem Trockengewicht von insgesamt 20 Tonnen je Hektar und Monat Trockenzeit um. Im Senegal wurden in Versuchsflächen mit starker Furagieraktivität rund 10 Tonnen Erde bewegt (Rouland et al. 2003). Laboranalysen ergaben, dass sich Sheeting-Erde stark sowohl von der entsprechenden Kontroll-Erde unterschied als auch dem überdeckten Futtertyp und ebenso zwischen den beiden Gattungen. Dabei unterschied sich Sheeting-Erde von Odontotermes in mehr Parametern als Sheeting-Erde von Macrotermes, und Sheetings aus der Trockenzeit unterschieden sich in mehreren Parametern und in stärkerem Maße als Sheetings aus der Regenzeit. Der Gehalt an organischem Material, an Kohlenstoff und Stickstoff war in allen Trockenzeit-Sheetings deutlich erhöht, in der Regenzeit vor allem in Sheetings, die über Kompost gebaut wurden. Die Analyse der Korngrößenverteilung ließ darauf schließen, dass beide Gattungen Erde aus dem Oberboden und aus tieferen Horizonten in unterschiedlichen Mischungsverhältnissen nutzten. Dies bestätigt Beobachtungen von Jouquet et al. (2006). Zusammenfassend lässt sich sagen, dass die vorliegende Untersuchung zu einem besseren Verständnis der funktionellen Reaktionsmerkmale von Termiten und Ameisen auf sich ändernde Umweltparameter beiträgt, die aus dem zunehmenden Einfluss des Menschen resultieren. Das RAP-Protokoll erwies sich als eine einfach zu erlernende und sehr effektive Methode, um die taxonomische und funktionelle Vielfalt von Termiten und Ameisen in semi-ariden Savannen und Agrarökosystemen repräsentativ zu charakterisieren, zu vergleichen und zu überwachen. Das Experiment erbrachte schlüssige Beweise für die Bedeutung pilzzüchtender Termiten (insbesondere Odontotermes und Macrotermes-Arten) für die Sanierung vollständig degradierter und verkrusteter Böden, und für eine nachhaltige landwirtschaftliche Produktion in der Sub-Sahelzone in Westafrika. KW - Termiten KW - termites KW - Ameisen KW - Biodiversität KW - menschlicher Einfluss KW - ants KW - diversity KW - human impact Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-107001 ER - TY - JOUR A1 - Roces, Flavio A1 - Pielström, Steffen T1 - Soil Moisture and Excavation Behaviour in the Chaco Leaf-Cutting Ant (Atta vollenweideri): Digging Performance and Prevention of Water Inflow into the Nest N2 - The Chaco leaf-cutting ant Atta vollenweideri is native to the clay-heavy soils of the Gran Chaco region in South America. Because of seasonal floods, colonies are regularly exposed to varying moisture across the soil profile, a factor that not only strongly influences workers' digging performance during nest building, but also determines the suitability of the soil for the rearing of the colony's symbiotic fungus. In this study, we investigated the effects of varying soil moisture on behaviours associated with underground nest building in A. vollenweideri. This was done in a series of laboratory experiments using standardised, plastic clay-water mixtures with gravimetric water contents ranging from relatively brittle material to mixtures close to the liquid limit. Our experiments showed that preference and group-level digging rate increased with increasing water content, but then dropped considerably for extremely moist materials. The production of vibrational recruitment signals during digging showed, on the contrary, a slightly negative linear correlation with soil moisture. Workers formed and carried clay pellets at higher rates in moist clay, even at the highest water content tested. Hence, their weak preference and low group-level excavation rate observed for that mixture cannot be explained by any inability to work with the material. More likely, extremely high moistures may indicate locations unsuitable for nest building. To test this hypothesis, we simulated a situation in which workers excavated an upward tunnel below accumulated surface water. The ants stopped digging about 12 mm below the interface soil/water, a behaviour representing a possible adaptation to the threat of water inflow field colonies are exposed to while digging under seasonally flooded soils. Possible roles of soil water in the temporal and spatial pattern of nest growth are discussed. KW - ants KW - fungi KW - surface water KW - vibration KW - acoustic signals KW - physical properties KW - analysis of variance KW - fungal structure Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-111298 ER - TY - THES A1 - Ratzka, Carolin T1 - Immune responses of the ant Camponotus floridanus towards pathogens and its obligate mutualistic endosymbiont Blochmannia floridanus T1 - Immunantworten der Ameise Camponotus floridanus gegen Pathogene und ihren obligaten mutalistischen Endosymbionten Blochmannia floridanus N2 - Ants of the species Camponotus floridanus live in huge colonies composed of genetically identical or closely related animals, which should predispose them to an increased vulnerability towards infection by pathogens (Cremer et al. 2007). Therefore the question is how ants (or social insects in general) can nevertheless efficiently combat infections. In order to investigate the immune response of the ant C. floridanus, the present study initially focused on the identification of possible immune factors, encoded by the ant´s genome. By using the method “suppression subtractive hybridization” as well as by Illumnia sequencing technology, several immune-related genes could be identified. Among these were genes encoding proteins involved in pathogen recognition, signal transduction, antimicrobial activity, or general stress response. In accordance with the ant´s genome sequence (Bonasio et al. 2010), only three antimicrobial peptide (AMP) genes could be identified in C. floridanus. The gene and cDNA sequences of these AMPs were established and their expression was shown to be induced by microbial challenge. Two different defensin genes (type 1 and 2) were characterized. A detailed characterization of the mRNA and gene sequence of the other AMP, a hymenoptaecin, revealed a special repeat structure. The C. floridanus hymenoptaecin has a signal and a pro-sequence followed by a hymenoptaecin-like domain and six directly repeated hymenoptaecin domains (HDs). Since each HD is flanked by two known processing sites, proteolytic processing of the precursor protein may generate several mature AMPs. Bioinformatical analyses revealed the presence of hymenoptaecin genes with similar multipeptide precursor structure in genomes of other ant species suggesting an evolutionary conserved important role of this gene in ant immunity. C. floridanus ants harbor the obligate intracellular bacterium, Blochmannia floridanus, in specialized cells (so-called bacteriocytes), which are intercalated between midgut cells as well as in ovaries of females (Blochmann 1882; Sauer et al. 2002; Schröder et al. 1996). Ant hosts face the problem that on the one hand they have to maintain the beneficial symbiotic bacteria and on the other hand they need to raise an immune response against harmful pathogenic bacteria during an infection. It was investigated, if endosymbionts are actually detected by the host immune system. Injection of B. floridanus induced an immune response of its host C. floridanus, which was comparable to the one towards pathogens. This means that, despite the evolutionary established cooperation of the endosymbionts and their hosts, these bacteria are still recognized as „non-self“ by the host immune system. This finding led to the question, if the ant immune system might be involved in regulation of the endosymbiont number in the midgut tissue in order to avoid their uncontrolled replication. During the holometabolous life cycle of the ant hosts the distribution of bacteriocytes and of Blochmannia endosymbionts is remarkably dynamic and peaks in late pupal stages, in which the entire midgut is transformed into a symbiotic organ (Stoll et al. 2010). It was hypothesized that hosts could regulate the number of endosymbionts present in their tissues via the innate immune system. A quantitative gene expression analysis of assumed symbiosis-relevant candidate genes revealed distinct expression patterns of some genes according to developmental stage and tissue. Moreover, the immune gene expression in response to bacterial challenge was investigated in the pupal stage. By an artificial immune-challenge of pupae it was confirmed that in fact the immune response of the endosymbiont-bearing midgut tissue differs from that of other body parts. The data support a key role for amidase peptidoglycan recognition proteins (PGRPs), especially PGRP-LB, in endosymbiont tolerance and suggest an involvement of the lysosomal system in control of Blochmannia endosymbionts. In sum, this thesis provides a first description of the immune response of the ant C. floridanus. A comprehensive set of immune-relevant genes was determined. Especially, the identification and molecular characterization of the hymenoptaecin gene delivered new insights into the immune competence of ants in general. Moreover, first indications could be gathered for the involvement of the immune system in controlling the endosymbiont B. floridanus. N2 - Ameisen der Art Camponotus floridanus leben in großen Kolonien, welche sich aus genetisch identischen oder nahe verwandten Individuen zusammensetzen. Demnach sollten diese Tiere eine erhöhte Anfälligkeit gegenüber Infektionen durch Pathogene haben (Cremer et al. 2007). Somit stellt sich die Frage, wie Ameisen (oder allgemein soziale Insekten) Infektionen dennoch effizient bekämpfen können. Um die Immunantwort der Ameise C. floridanus zu untersuchen, befasste sich die vorliegende Arbeit zunächst mit der Identifizierung von möglichen Immunfaktoren, welche im Genom der Ameise kodiert sind. Unter Verwendung der Methode “Suppression Subtractive Hybridization” sowie durch Illumnia Sequenzierungstechnologie konnten mehrere immun-relevante Gene ermittelt werden. Darunter befanden sich Gene, welche Proteine kodieren, die eine Rolle bei der Erkennung von Pathogenen, der Signalübertragung, der antimikrobiellen Aktivität oder der allgemeinen Stressantwort spielen. In Übereinstimmung mit der Genomsequenz der Ameise (Bonasio et al. 2010), konnten nur drei antimikrobielle Peptid (AMP) Gene in C. floridanus identifiziert werden. Die Gen- und cDNA-Sequenzen dieser AMPs wurden charakterisiert und es wurde gezeigt, dass ihre Expression durch mikrobielle Attacken induziert wird. Zwei verschiedene Defensin Gene (Typ 1 und 2) wurden charakterisiert. Eine detaillierte Charakterisierung der mRNA- und Gen-Sequenz des anderen AMPs, eines Hymenoptaecins, ergab eine besondere Wiederholungsstruktur. Das C. floridanus Hymenoptaecin hat eine Signal- und eine Pro-Sequenz gefolgt von einer Hymenoptaecin-ähnlichen Domäne und sechs direkt wiederholten Hymenoptaecin Domänen (HD). Da jede HD von bekannten Schnittstellen flankiert wird, könnte die proteolytische Bearbeitung des Vorläufer Proteins mehrere reife AMPs hervorbringen. Bioinformatische Analysen enthüllten die Anwesenheit von Hymenoptaecin Genen mit ähnlicher Multipeptid-Vorläufer-Struktur in den Genomen von anderen Ameisenarten, was eine evolutionär konservierte wichtige Aufgabe dieses Gens bei der Immunität von Ameisen andeutet. C. floridanus Ameisen beherbergen das obligat intrazelluläre Bakterium, Blochmannia floridanus, in speziellen Zellen (den sogenannten Bakteriozyten), welche sich zwischen Zellen des Mitteldarms befinden sowie in den Ovarien von Weibchen (Blochmann 1882; Sauer et al. 2002; Schröder et al. 1996). Die Wirtstiere stehen vor dem Problem, dass sie einerseits die für sie nützlichen symbiontischen Bakterien erhalten müssen und andererseits bei einer Infektion eine Immunantwort gegenüber schädlichen pathogenen Bakterien aufbringen müssen. Es wurde untersucht, ob die Endosymbionten vom Wirtsimmunsystem überhaupt erkannt werden. Injektion des eigenen Endosymbionten B. floridanus induzierte eine Immunantwort seines Wirtes C. floridanus, welche vergleichbar war mit der gegenüber Pathogenen. Dies bedeutet, dass trotz der Koevolution zwischen den Endosymbionten und ihren Wirte, diese Bakterien immer noch als „nicht-selbst“ vom Wirtsimmunsystem erkannt werden. Dieses Ergebnis warf die Frage auf, ob das Ameisen-Immunsystem an der Regulation der Anzahl von Endosymbionten im Mitteldarmgewebe beteiligt sein könnte, um deren unkontrollierte Replikation zu vermeiden. Während des holometabolen Lebenszyklus der Ameisen-Wirte ist die Verteilung der Bakteriozyten und der Blochmannia Endosymbionten bemerkenswert dynamisch und erreicht den Höhepunkt in den späten Puppenstadien, in welchen der gesamte Mitteldarm zu einem symbiotischen Organ umgewandelt wird (Stoll et al. 2010). Es wurde vermutet, dass die Wirte die vorhandene Anzahl von Endosymbionten in ihren Geweben durch das angeborene Immunsystem regulieren könnten. Eine quantitative Genexpressionsanalyse von vermeintlich Symbiose-relevanten Kandidatengenen ergab verschiedene Expressionsmuster von einigen Genen in Abhängigkeit vom Entwicklungsstadium und Gewebe. Außerdem wurde die Immungenexpression nach einer bakteriellen Attacke im Puppenstadium untersucht. Durch eine künstliche Immunanregung von Puppen wurde bestätigt, dass sich die Immunantwort des Endosymbiont-tragenden Mitteldarm Gewebes in der Tat von der anderer Körperteile unterscheidet. Die Daten befürworten eine Schlüsselrolle von Amidase Peptidoglykan Erkennungsproteinen (PGRPs), insbesondere von PGRP-LB, für die Duldung von Endosymbionten und deuten auf eine Beteiligung des lysosomalen Systems an der Kontrolle von Blochmannia Endosymbionten hin. Insgesamt stellt die vorliegende Arbeit eine erste Charakterisierung der Immunantwort der Ameise C. floridanus dar. Eine Vielzahl an immun-relevanten Genen wurde bestimmt. Insbesondere die Identifizierung und molekulare Charakterisierung des Hymenoptaecin Gens lieferte neue Einblicke in die Immun-Kompetenz von Ameisen im Allgemeinen. Außerdem konnten erste Hinweise für die Beteiligung des Immunsystems an der Kontrolle des Endosymbionten B. floridanus gesammelt werden. KW - Humorale Immunität KW - Ameisen KW - Intrazelluläre Symbiose KW - Camponotus KW - Blochmannia KW - insect immunity KW - ants KW - symbiosis Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-69350 ER -