TY - JOUR A1 - Römer, Daniela A1 - Cosarinsky, Marcela I. A1 - Roces, Flavio T1 - Selection and spatial arrangement of building materials during the construction of nest turrets by grass-cutting ants JF - Royal Society Open Science N2 - Ants build complex nest structures by reacting to simple, local stimuli. While underground nests result from the space generated by digging, some leaf- and grass-cutting ants also construct conspicuous aboveground turrets around nest openings. We investigated whether the selection of specific building materials occurs during turret construction in Acromyrmex fracticornis grass-cutting ants, and asked whether single building decisions at the beginning can modify the final turret architecture. To quantify workers' material selection, the original nest turret was removed and a choice between two artificial building materials, thin and thick sticks, was offered for rebuilding. Workers preferred thick sticks at the very beginning of turret construction, showed varying preferences thereafter, and changed to prefer thin sticks for the upper, final part of the turret, indicating that they selected different building materials over time to create a stable structure. The impact of a single building choice on turret architecture was evaluated by placing artificial beams that divided a colony's nest entrance at the beginning of turret rebuilding. Splitting the nest entrance led to the self-organized construction of turrets with branched galleries ending in multiple openings, showing that the spatial location of a single building material can strongly influence turret morphology. KW - collective building KW - behavioural plasticity KW - Acromyrmex fracticornis KW - quantitative stigmergy KW - self-organization KW - leaf-cutting ants Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-230458 VL - 7 ER - TY - JOUR A1 - Cosarinsky, Marcela I. A1 - Römer, Daniela A1 - Roces, Flavio T1 - Nest Turrets of Acromyrmex Grass-Cutting Ants: Micromorphology Reveals Building Techniques and Construction Dynamics JF - Insects N2 - Acromyrmex fracticornis grass-cutting ants construct conspicuous chimney-shaped nest turrets made of intermeshed grass fragments. We asked whether turrets are constructed by merely piling up nearby materials around the entrance, or whether ants incorporate different materials as the turret develops. By removing the original nest turrets and following their rebuilding process over three consecutive days, age-dependent changes in wall morphology and inner lining fabrics were characterized. Micromorphological descriptions based on thin sections of turret walls revealed the building behaviors involved. Ants started by collecting nearby twigs and dry grass fragments that are piled up around the nest entrance. Several large fragments held the structure like beams. As a net-like structure grew, soil pellets were placed in between the intermeshed plant fragments from the turret base to the top, reinforcing the structure. Concomitantly, the turret inner wall was lined with soil pellets, starting from the base. Therefore, the consolidation of the turret occurred both over time and from its base upwards. It is argued that nest turrets do not simply arise by the arbitrary deposition of nearby materials, and that workers selectively incorporate large materials at the beginning, and respond to the developing structure by reinforcing the intermeshed plant fragments over time. KW - building behavior KW - Acromyrmex fracticornis KW - leaf-cutting ants KW - collective pattern KW - architecture KW - self-organization KW - microstructure KW - material composition KW - thin sections Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-200680 SN - 2075-4450 VL - 11 IS - 2 ER - TY - THES A1 - Römer, Daniela T1 - Where and how to build? Influence of social and environmental cues on nest building behavior in leaf-cutting ants T1 - Wo und wie Bauen? Der Einfluss von sozialen und Umwelt-Hinweisen auf das Nestbauverhalten von Blattschneiderameisen N2 - This thesis explores the influence of social and environmental cues on the nest building behavior of leaf-cutting ants. Especially, the investigations are aimed at evaluating the mechanisms of nest building and how the nest environment can spatially guide building responses that lead to an adaptive nest architecture. The emergence of nest chambers in the nest of the leaf-cutting ant Acromyrmex lundi were evaluated. Rather than excavating nest chambers in advance, at places where workers encounter suitable environmental conditions for brood and fungus rearing, these items have to be present at a site. When presented in the laboratory with a choice between two otherwise identical digging sites, offering suitable environmental conditions, but one containing brood, the workers displayed a higher excavation activity at the site where they encountered the putative content of a chamber. The shape of the excavated cavity was also more round and chamber-like. It is concluded that leaf-cutting ants respond to social cues during nest building. Excavation is a costly process and colonies have to spend a part of their energy stores on nest building, so that regulatory responses for the control of nest excavation are expected to occur. Worker density at the beginning of the digging process influenced digging activity while the presence of in-nest stores did not. Stored brood and fungus did however influence the architecture of the excavated nest, leading to the excavation of larger chambers and smaller tunnels. While self-organized mechanisms appear to be involved in the nest building process, the social cues of the ants’ environment during building clearly influence the nest architecture and lead to an adjustment of the nest size to the current space needs of the colony. Workers secondarily regulated nest size by the opportunistic refilling of unused space with excavated soil pellets. As the ants should provide suitable conditions for brood and fungus rearing, they should show a behavioral response to CO2 concentrations, as the gas is known to hinder fungus respiration. Workers of A. lundi did indeed avoid high CO2-levels for fungus rearing but actually preferred CO2-values in the range encountered close to the soil surface, where this species excavates their nests. However, different CO2-levels did not affect their excavation behavior. While fungus chambers make up part of a leaf-cutting ant nest, most leaf-cutting ants of the genus Atta also spent part of the colony’s energy on excavating large, voluminous chambers for waste disposal, rather than scattering the material aboveground. It is expected that leaf-cutting ants also show environmental preferences for waste management. In experiments Atta laevigata workers preferred deposition in a warm and dry environment and showed no preference for specific CO2-levels. The continued accumulation of waste particles in a waste chamber seems to be based on the use of volatiles. These originate from the waste itself, and seem to be used as an orientation cue by workers relocating the material. The ensuing large accumulation of waste at one site should result in the emergence of more voluminous chambers for waste disposal. N2 - Diese Arbeit erforscht den Einfluss von sozialen und Umwelt-Hinweisen auf das Nestbauverhalten von Blattschneider-Ameisen. Die Untersuchungen sind besonders darauf gerichtet, die Mechanismen des Nestbaus zu erforschen, und wie die Umgebung des Nestes Bau-Antworten räumlich beeinflussen kann, wodurch eine adaptierte Nestarchitektur entsteht. Die Entstehung von Nestkammern in Nestern der Blattschneiderameise Acromyrmex lundi wurde untersucht. Anstatt Nestkammern im Voraus zu graben, an Orten an denen Arbeiterinnen geeignete Umweltbedingungen für Brut- und Pilzwachstum vorfinden, müssen diese Elemente an dieser Stelle anwesend sein. Wenn Arbeiter im Labor die Wahl hatten, an identischen Grabeorten zu graben, aber ein Grabeort ebenfalls Brut anbot, kam es zu einer höheren Grabeaktivität an dem Ort, an dem der voraussichtliche Inhalt einer Kammer, Brut und Pilz, anwesend war. Die Form des gegrabenen Hohlraumes war außerdem runder und entsprach mehr der einer Kammer. Es wurde geschlussfolgert, dass Blattschneiderameisen auf die Anwesenheit dieser sozialen Hinweise während des Nestbaus reagieren. Graben ist ein kostspieliger Prozess und Kolonien müssen einen Teil ihrer Energiereserven für den Nestbau aufwenden. Daher werden regulatorische Prozesse für die Kontrolle des Nestgrabens erwartet. Die Dichte der Arbeiter zu Beginn des Grabeprozesses beeinflusste die Grabeaktivität, während die Anwesenheit von Brut und Pilz dies nicht taten. Anwesende Brut und Pilz beeinflussten hingegen die Architektur des gegrabenen Nestes und führten zum Graben von größeren Kammern und kleineren Tunneln. Während Mechanismen der Selbst-Organisation am Nestbau-Prozess beteiligt sind, beeinflussen die sozialen Hinweise während des Nest-Baus anscheinend die Nest-Architektur und führen zu einer Anpassung der Nestgröße an die momentanen Ansprüche der Kolonie. Arbeiterinnen regulierten sekundär die Nestgröße, indem sie opportunistisch ungenutzten Platz mit ausgegrabenen Pellets auffüllen. Da die Ameisen Brut und Pilz unter geeigneten Umweltbedingungen entwickeln sollten, sollten sie Verhaltensantworten auf verschiedene CO2 Konzentrationen zeigen, da es bekannt ist, dass das Gas die Atmung des symbiontischen Pilzes negativ beeinflussen kann. Arbeiter vermieden in der Tat 4% CO2, zogen aber Konzentrationen von 1% CO2 vor, wie sie auch in den oberflächennahen Erdschichten vorzufinden sind, in denen die untersuchte Art, Acromyrmex lundi, ihre Nester gräbt. Allerdings beeinflussten höhere CO2 Konzentrationen nicht die Grabeaktivität der Arbeiterinnen. Während die Pilzkammern einen Teil eines Blattschneider-Nestes bilden, so verwenden die meisten Arten der Gattung Atta auch einen Teil der Energie der Kolonie auf das Graben von großen, voluminösen Abfallkammern, anstatt das Material an der Erdoberfläche zu verstreuen. Es wird daher erwartet, dass Blattschneiderameisen während der Abfallentsorgung bestimmte Präferenzen für ihre Umwelt zeigen. In Experimenten präferierten Arbeiterinnen von Atta laevigata eine warme und trockene Umgebung, zeigten jedoch keinerlei Präferenz für die CO2 Konzentration ihrer Umgebung. Die kontinuierliche Anhäufung von Abfallpartikeln in einer Abfallkammer scheint auf der Wahrnehmung von Volatilen zu basieren. Diese scheinen vom Abfall selbst auszugehen und zur Orientierung der abfalltragenden Arbeiterinnen zu dienen. Die darauf erfolgende Anhäufung von Abfall an einem Ort sollte zur Entstehung von großvolumigen Kammern zur Abfallentsorgung führen. KW - Nestbau KW - nest building KW - self-organization KW - leaf-cutting ant KW - environmental cues KW - symbiotic fungus KW - Blattschneiderameisen Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-109409 ER -