TY - THES A1 - Seitz, Nicola T1 - Bee demise and bee rise: From honey bee colony losses to finding measures for advancing entire bee communities T1 - Bienenschwund und Bienenaufschwung: Von Honigbienen-Kolonieverlusten zur Förderung von gesamten Bienengemeinschaften N2 - My dissertation comprises three studies: (1) an assessment of honey bee colony losses in the USA between 2014 and 2015, (2) an exploration of the potential of reclaimed sand mines as bee habitat, and (3) an evaluation of native and non-native pollinator friendly plants in regard to their attraction to bees. While the first study focuses on honey bees, the latter two studies primarily take wild bees or entire bee communities in focus. The study on honey bee colony losses was conducted within the framework of the Bee Informed Partnership (BIP, beeinformed.org) and aligns with the annual colony loss surveys which have been conducted in the USA since the winter of 2006/2007. It was the fourth year for which summer and annual losses were calculated in addition to winter losses. Among participants, backyard beekeepers were the largest group (n = 5690), although sideline (n = 169) and commercial (n = 78) beekeepers managed the majority (91.7 %) of the 414 267 surveyed colonies. Overall, 15.1 % of the estimated 2.74 million managed colonies in the USA were included in the study. Total honey bee colony losses (based on the entirety of included colonies) were higher in summer (25.3 %) than in winter (22.3 %) and amounted to 40.6 % for the entire 2014/2015 beekeeping year. Average colony losses per beekeeper or operation were higher in winter (43.7 %) than in summer (14.7 %) and amounted to 49 % for the entire 2014/2015 beekeeping year. Due to the dominance of backyard beekeepers among participants, average losses per operation (or unweighted loss) stronger reflected this smaller type of beekeeper. Backyard beekeepers mainly named colony management issues (e.g., starvation, weak colony in the fall) as causes for mortality, while sideline and commercial beekeepers stronger emphasized parasites or factors outside their control (e.g., varroa, nosema, queen failure). The second study took place at reclaimed sand mines. Sand mines represent anthropogenically impacted habitats found worldwide, which bear potential for bee conservation. Although floral resources can be limited at these habitats, vegetation free patches of open sandy soils and embankments may offer good nesting possibilities for sand restricted and other bees. We compared bee communities as found in three reclaimed sand mines and at adjacent roadside meadows in Maryland, USA, over two years. Both sand mines and roadsides hosted diverse bee communities with 111 and 88 bee species, respectively. Bee abundances as well as richness and Shannon diversity of bee species were higher in sand mines than at roadsides and negatively correlated with the percentage of vegetational ground cover. Species composition also differed significantly between habitats. Sand mines hosted a higher proportion of ground nesters, more uncommon and more ‘sand loving’ bees similar to natural sandy areas of Maryland. Despite the destruction of the original pre-mining habitat, sand mines thus appear to represent a unique habitat for wild bees, particularly when natural vegetation and open sand spots are encouraged. Considering habitat loss, the lack of natural disturbance regimes, and ongoing declines of wild bees, sand mines could add promising opportunities for bee conservation which has hitherto mainly focused on agricultural and urban habitats. The third study was an experimental field study on pollinator friendly plants. Bees rely on the pollen and nectar of plants as their food source. Therefore, pollinator friendly plantings are often used for habitat enhancements in bee conservation. Non-native pollinator friendly plants may aid in bee conservation efforts, but have not been tested and compared with native pollinator friendly plants in a common garden experiment. In this study, we seeded mixes of 20 native and 20 non-native pollinator friendly plants in two separate plots at three sites in Maryland, USA. For two years, we recorded flower visitors to the plants throughout the blooming period and additionally sampled bees with pan traps. A total of 3744 bees (120 species) were sampled in the study. Of these, 1708 bees (72 species) were hand netted directly from flowers for comparisons between native and non-native plants. Depending on the season, bee abundance and species richness was either similar or lower (early season and for richness also late season) at native plots compared to non-native plots. Additionally, the overall bee community composition differed significantly between native and non-native plots. Furthermore, native plants were associated with more specialized plant-bee visitation networks compared to non-native plants. In general, visitation networks were more specialized in the early season than the later seasons. Four species (Bombus impatiens, Halictus poeyi/ligatus, Lasioglossum pilosum, and Xylocopa virginica) out of the five most abundant bee species (also including Apis mellifera) foraged more specialized on native than non-native plants. Our study showed that non-native plants were well accepted by a diverse bee community and had a similar to higher attraction for bees compared to native plants. However, we also demonstrated alterations in foraging behavior, bee community assemblage, and visitation networks. As long as used with caution, non-native plants can be a useful addition to native pollinator friendly plantings. This study gives a first example of a direct comparison between native and non-native pollinator friendly plants. N2 - Meine Dissertation umfasst drei Studien: (1) eine Erfassung von Honigbienen-Kolonieverlusten in den USA zwischen 2014 und 2015, (2) die Erforschung des Potenzials renaturierter Sandminen als Habitat für Bienen und (3) eine Evaluierung nativer sowie standortfremder bestäuberfreundlicher Pflanzen hinsichtlich ihrer Attraktivität für Bienen. Während die erste Studie Honigbienen im Fokus hat, verschiebt sich der Fokus der zwei weiteren Studien hin zu Wildbienen bzw. gesamten Bienengemeinschaften. Die Studie zu Honigbienenkolonieverlusten wurde im Rahmen des Bee Informed Partnerships (BIP, beeinformed.org) durchgeführt und reiht sich ein in die seit dem Winter 2006/2007 jährlich durchgeführten Untersuchungen in den USA. Es ist das vierte Jahr in dem Sommer- und Jahresverluste zusätzlich zu den Winterverlusten kalkuliert wurden. Unter den Teilnehmern bildete die Gruppe der Hobby-Imker den größten Anteil (n = 5690), obwohl nebenberufliche (n = 169) und kommerzielle (n = 78) Imker den Großteil (91,7 %) der 414 267 begutachteten Bienenvölkern bzw. Kolonien hielten. Insgesamt enthielt die Studie 15,1 % der auf 2,74 Mio. geschätzten Gesamtzahl an gehaltenen Bienenvölkern in den USA. Die Gesamtverluste an Honigbienenvölkern (basierend auf der Gesamtheit der erfassten Völker) waren im Sommer mit 25,3 % höher als im Winter mit 22,3 % und bezifferten sich auf 40,6 % für das gesamte Imkerjahr in 2014/2015. Durchschnittliche Kolonieverluste pro Imkerbetrieb waren höher im Winter (43,7 %) als im Sommer (14,7 %) und betrugen 49 % für das gesamte Imkerjahr in 2014/2015. Aufgrund der hohen Anzahl an Hobby-Imkern unter den Teilnehmern reflektieren die durchschnittlichen Kolonieverluste pro Imkerbetrieb (oder ungewichtete Verluste) v.a. die Situation dieser kleineren Imkerbetriebe. Hobby-Imker nannten als Gründe für die Honigbienenmortalität hauptsächlich Probleme des Koloniemanagements (z.B. Verhungerung, schwache Völker im Herbst), während nebenberufliche und kommerzielle Imker stärker Faktoren betonten, die außerhalb ihrer Kontrolle lagen (z.B. Varroamilben, Nosemasporen, Versagen der Königin). Die zweite Studie fand in renaturierten Sandminen statt. Sandminen sind weltweit zu findende anthropogen veränderte Landschaften, die ein Potenzial für Bienenschutz haben. Obwohl florale Ressourcen in diesen Habitaten limitiert sein können, könnten die vegetationsfreien Flecken auf offenen Sandböden und Böschungen gute Nistplätze für auf Sand spezialisierte und andere Bienen bieten. Wir haben Bienengemeinschaften aus drei renaturierten Sandminen sowie jeweils nahe gelegenen bepflanzten Straßenrändern in Maryland, USA verglichen. Sowohl die Sandminen als auch die Straßenränder enthielten vielfältige Bienengemeinschaften mit 111 (Sandminen) und 88 (Straßenränder) Bienenarten. Bienenabundanz, Artenreichtum und Shannon Diversität waren höher in den Sandminen als an den Straßenrändern und korrelierten negativ mit dem Anteil an vorhandener Bodenvegetation. Darüber hinaus unterschied sich die Artzusammensetzung signifikant zwischen den beiden Habitattypen. Sandminen enthielten einen größeren Anteil an Bodennistern, mehr seltene Arten und mehr sandliebende Arten, ähnlich natürlicher sandiger Gebiete in Maryland. Trotz der Zerstörung des ursprünglichen prä-Minen Habitats, scheinen Sandminen daher ein einzigartiges Bienenhabitat für Wildbienen darzustellen, besonders wenn die natürliche Besiedlung von Vegetation und offene Sandflächen gefördert werden. Im Hinblick auf Habitatverluste, auf das Fehlen von natürlichen Landschaftsstörungen und auf den weiterschreitenden Rückgang an Wildbienen, könnten Sandminen eine vielversprechende Möglichkeit für Bienenschutz darstellen, der sich bisher stark auf landwirtschaftliche und urbane Habitate konzentrierte. Bei der dritten Studie handelt es sich um eine experimentelle Feldstudie zu bestäuberfreundlichen Pflanzen. Bienen sind auf Pollen und Nektar von Pflanzen als Nahrungsquelle angewiesen. Aus diesem Grund werden bestäuberfreundliche Pflanzen oft für Habitatverbesserungen im Rahmen von Bienenschutzmaßnahmen gepflanzt. Standortfremde bestäuberfreundliche Pflanzen können dabei die Bienenschutzmaßnahmen unterstützen, wurden aber bisher nicht in einem Common Garden Experiment zusammen mit nativen bestäuberfreundlichen Pflanzen getestet bzw. verglichen. In dieser Studie haben wir Saatgutmischungen mit jeweils 20 nativen und 20 standortfremden Pflanzen in zwei separaten Plots in drei Gebieten in Maryland, USA ausgesät. Zwei Jahre lang protokollierten wir über die gesamten Blühzeiträume hinweg Pflanzenbesucher und sammelten Bienen mit Farbschalen. Insgesamt erfassten wir 3744 Bienen (120 Arten), von denen 1708 Individuen (72 Arten) per Hand direkt von den Blüten gesammelt wurden für die Vergleiche zwischen nativen und standortfremden Pflanzen. Abhängig von der Saison waren Bienenabundanz und Artenreichtum entweder ähnlich oder niedriger (frühe Saison und für Artenreichtum auch späte Saison) in nativen Plots verglichen mit den standortfremden Plots. Zusätzlich unterschied sich die Zusammensetzung der Bienengemeinschaft signifikant zwischen nativen und standortfremnden Pflanzen. Darüber hinaus waren die Bienen-Pflanzen-Besuchs-Netzwerke nativer Pflanzen spezialisierter als die Besuchs-Netzwerke standortfremder Pflanzen. Im Allgemeinen waren die Besuchs-Netzwerke in der frühen Saison spezialisierter als in der späten Saison. Vier Arten (Bombus impatiens, Halictus poeyi/ligatus, Lasioglossum pilosum, und Xylocopa virginica) der fünf am häufigsten vorkommenden Arten (zusätzlich auch Apis mellifera) fouragierten spezialisierter auf nativen Pflanzen als auf standortfremden Pflanzen. Unsere Studie zeigte, dass standortfremde Pflanzen weitläufig von einer artenreichen Bienengemeinschaft angenommen wurden und eine ähnliche bis höhere Attraktivität für Bienen aufwiesen verglichen mit nativen Pflanzen. Allerdings demonstrierten wir auch Änderungen im Fouragierverhalten, in der Zusammensetzung der Bienengemeinschaft und in den Besuchs-Netzwerken. Insgesamt kann ein vorsichtiger Einsatz standortfremder Pflanzen eine sinnvolle Ergänzung zu nativen bestäuberfreundlichen Anpflanzungen sein. Diese Studie stellt ein erstes Beispiel eines direkten Vergleichs von nativen und standortfremden bestäuberfreundlichen Anpflanzungen dar. KW - Biene KW - Wildbienen KW - Renaturierung <Ökologie> KW - Naturschutz KW - Honigbienen KW - exotische Pflanzen KW - Sandminen KW - Pflanzen-Bienen-Netzwerke KW - bestäuberfreundliche Pflanzen KW - wild bees KW - honey bees KW - sand mine KW - pollinator friendly plants KW - plant-bee visitation networks Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-184180 ER - TY - JOUR A1 - Boff, Samuel A1 - Henrique, Jessica Amaral A1 - Friedel, Anna A1 - Raizer, Josué T1 - Disentangling the path of pollinator attraction in temporarily colored flowers JF - International Journal of Tropical Insect Science N2 - Plants may use different strategies to attract pollinators in long distance (e.g. floral display) and in short distance (e.g. ratio between differentially colored flowers) scales. The Verbenaceae Lantana canescens Kunth is a wide spread species in open sites of the Brazilian Pantanal wetland. Individuals of this generalist species can produce a variable number of open inflorescences with yellow and white flowers that are organized in whorls. In this study we tested the hypothesis that increased floral display (long distance attraction) and the ratio between yellow and white flowers (short distance attraction) enhances the number of pollinator species and individuals. We observed flower visitors and calculated floral parameters in 38 plots of 1 m2 each, that contained a varying number of flowering L. canescens individuals. Non-metric multidimensional scaling and Bray-Curtis distances were used to account for flower visitor composition and the relative visitation rate, respectively. We used a structural equation model to test the power of each predictor variable on the visitation rate and a covariance analysis to disentangle the effect of each independent variable on the frequency of plant-pollinator interactions. We found that the number of flower visitors and the visitation rate increased with increasing number of inflorescences. Disentangling long and short distance attraction indicated that the number of inflorescences (per plot) and the number of yellow flowers (yellowing effect) contributed most to flower visitation at long and short distance, respectively. KW - floral display KW - lantana canescens KW - pantanal wetland KW - honey bees KW - neotropical region KW - pollinator attraction Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-235402 VL - 41 ER - TY - JOUR A1 - Ruedenauer, Fabian A. A1 - Wöhrle, Christine A1 - Spaethe, Johannes A1 - Leonhardt, Sara D. T1 - Do honeybees (Apis mellifera) differentiate between different pollen types? JF - PLoS ONE N2 - Bees receive nectar and pollen as reward for pollinating plants. Pollen of different plant species varies widely in nutritional composition. In order to select pollen of appropriate nutritional quality, bees would benefit if they could distinguish different pollen types. Whether they rely on visual, olfactory and/or chemotactile cues to distinguish between different pollen types, has however been little studied. In this study, we examined whether and how Apis mellifera workers differentiate between almond and apple pollen. We used differential proboscis extension response conditioning with olfactory and chemotactile stimulation, in light and darkness, and in summer and winter bees. We found that honeybees were only able to differentiate between different pollen types, when they could use both chemotactile and olfactory cues. Visual cues further improved learning performance. Summer bees learned faster than winter bees. Our results thus highlight the importance of multisensory information for pollen discrimination. KW - pollen KW - bees KW - honey bees KW - conditioned response KW - behavioral conditioning KW - foraging KW - nutrients KW - sensory cues Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-177537 VL - 13 IS - 11 ER - TY - JOUR A1 - Danner, Nadja A1 - Keller, Alexander A1 - Härtel, Stephan A1 - Steffan-Dewenter, Ingolf T1 - Honey bee foraging ecology: Season but not landscape diversity shapes the amount and diversity of collected pollen JF - PLoS ONE N2 - The availability of pollen in agricultural landscapes is essential for the successful growth and reproduction of honey bee colonies (Apis mellifera L.). The quantity and diversity of collected pollen can influence the growth and health of honey bee colonies, but little is known about the influence of landscape structure on pollen diet. In a field experiment, we rotated 16 honey bee colonies across 16 agricultural landscapes, used traps to collect samples of collected pollen and observed intra-colonial dance communication to gain information about foraging distances. DNA metabarcoding was applied to analyze mixed pollen samples. Neither the amount of collected pollen nor pollen diversity was related to landscape diversity. However, we found a strong seasonal variation in the amount and diversity of collected pollen in all sites independent of landscape diversity. The observed increase in foraging distances with decreasing landscape diversity suggests that honey bees compensated for lower landscape diversity by increasing their pollen foraging range in order to maintain pollen amount and diversity. Our results underscore the importance of a diverse pollen diet for honey bee colonies. Agri-environmental schemes aiming to support pollinators should focus on possible spatial and temporal gaps in pollen availability and diversity in agricultural landscapes. KW - honey bees KW - pollen KW - season KW - foraging Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-170424 VL - 12 IS - 8 ER - TY - JOUR A1 - Sommerlandt, Frank M. J. A1 - Spaethe, Johannes A1 - Rössler, Wolfgang A1 - Dyer, Adrian G. T1 - Does Fine Color Discrimination Learning in Free-Flying Honeybees Change Mushroom-Body Calyx Neuroarchitecture? JF - PLoS One N2 - Honeybees learn color information of rewarding flowers and recall these memories in future decisions. For fine color discrimination, bees require differential conditioning with a concurrent presentation of target and distractor stimuli to form a long-term memory. Here we investigated whether the long-term storage of color information shapes the neural network of microglomeruli in the mushroom body calyces and if this depends on the type of conditioning. Free-flying honeybees were individually trained to a pair of perceptually similar colors in either absolute conditioning towards one of the colors or in differential conditioning with both colors. Subsequently, bees of either conditioning groups were tested in non-rewarded discrimination tests with the two colors. Only bees trained with differential conditioning preferred the previously learned color, whereas bees of the absolute conditioning group, and a stimuli-naïve group, chose randomly among color stimuli. All bees were then kept individually for three days in the dark to allow for complete long-term memory formation. Whole-mount immunostaining was subsequently used to quantify variation of microglomeruli number and density in the mushroom-body lip and collar. We found no significant differences among groups in neuropil volumes and total microglomeruli numbers, but learning performance was negatively correlated with microglomeruli density in the absolute conditioning group. Based on these findings we aim to promote future research approaches combining behaviorally relevant color learning tests in honeybees under free-flight conditions with neuroimaging analysis; we also discuss possible limitations of this approach.q KW - bees KW - behavioral conditioning KW - learning KW - color vision KW - vision KW - calyx KW - cognition KW - honey bees Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-147932 VL - 11 IS - 10 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 - Lichtenstein, Leonie A1 - Sommerlandt, Frank M. J. A1 - Spaethe, Johannes T1 - Dumb and Lazy? A Comparison of Color Learning and Memory Retrieval in Drones and Workers of the Buff-Tailed Bumblebee, Bombus terrestris, by Means of PER Conditioning JF - PLoS One N2 - More than 100 years ago, Karl von Frisch showed that honeybee workers learn and discriminate colors. Since then, many studies confirmed the color learning capabilities of females from various hymenopteran species. Yet, little is known about visual learning and memory in males despite the fact that in most bee species males must take care of their own needs and must find rewarding flowers to obtain food. Here we used the proboscis extension response (PER) paradigm to study the color learning capacities of workers and drones of the bumblebee, Bombus terrestris. Light stimuli were paired with sucrose reward delivered to the insects’ antennae and inducing a reflexive extension of the proboscis. We evaluated color learning (i.e. conditioned PER to color stimuli) in absolute and differential conditioning protocols and mid-term memory retention was measured two hours after conditioning. Different monochromatic light stimuli in combination with neutral density filters were used to ensure that the bumblebees could only use chromatic and not achromatic (e.g. brightness) information. Furthermore, we tested if bees were able to transfer the learned information from the PER conditioning to a novel discrimination task in a Y-maze. Both workers and drones were capable of learning and discriminating between monochromatic light stimuli and retrieved the learned stimulus after two hours. Drones performed as well as workers during conditioning and in the memory test, but failed in the transfer test in contrast to workers. Our data clearly show that bumblebees can learn to associate a color stimulus with a sugar reward in PER conditioning and that both workers and drones reach similar acquisition and mid-term retention performances. Additionally, we provide evidence that only workers transfer the learned information from a Pavlovian to an operant situation. KW - memory KW - bumblebees KW - behavioral conditioning KW - honey bees KW - flowers KW - sucrose KW - bees KW - learning Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-125832 VL - 10 IS - 7 ER - TY - JOUR A1 - Leonhardt, Sara D. A1 - Kaltenpoth, Martin T1 - Microbial Communities of Three Sympatric Australian Stingless Bee Species JF - PLoS ONE N2 - Bacterial symbionts of insects have received increasing attention due to their prominent role in nutrient acquisition and defense. In social bees, symbiotic bacteria can maintain colony homeostasis and fitness, and the loss or alteration of the bacterial community may be associated with the ongoing bee decline observed worldwide. However, analyses of microbiota associated with bees have been largely confined to the social honeybees (Apis mellifera) and bumblebees (Bombus spec.), revealing – among other taxa – host-specific lactic acid bacteria (LAB, genus Lactobacillus) that are not found in solitary bees. Here, we characterized the microbiota of three Australian stingless bee species (Apidae: Meliponini) of two phylogenetically distant genera (Tetragonula and Austroplebeia). Besides common plant bacteria, we find LAB in all three species, showing that LAB are shared by honeybees, bumblebees and stingless bees across geographical regions. However, while LAB of the honeybee-associated Firm4–5 clusters were present in Tetragonula, they were lacking in Austroplebeia. Instead, we found a novel clade of likely host-specific LAB in all three Australian stingless bee species which forms a sister clade to a large cluster of Halictidae-associated lactobacilli. Our findings indicate both a phylogenetic and geographical signal of host-specific LAB in stingless bees and highlight stingless bees as an interesting group to investigate the evolutionary history of the bee-LAB association. KW - bacteria KW - lactic acid bacteria KW - sequence alignment KW - insects KW - lactobacillus KW - sequence databases KW - honey bees Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-119341 VL - 9 IS - 8 ER - TY - JOUR A1 - Hendriksma, Harmen P. A1 - Küting, Meike A1 - Härtel, Stephan A1 - Näther, Astrid A1 - Dohrmann, Anja B. A1 - Steffan-Dewenter, Ingolf A1 - Tebbe, Christoph C. T1 - Effect of Stacked Insecticidal Cry Proteins from Maize Pollen on Nurse Bees (Apis mellifera carnica) and Their Gut Bacteria JF - PLoS ONE N2 - Honey bee pollination is a key ecosystem service to nature and agriculture. However, biosafety research on genetically modified crops rarely considers effects on nurse bees from intact colonies, even though they receive and primarily process the largest amount of pollen. The objective of this study was to analyze the response of nurse bees and their gut bacteria to pollen from Bt maize expressing three different insecticidal Cry proteins (Cry1A.105, Cry2Ab2, and Cry3Bb1). Naturally Cry proteins are produced by bacteria (Bacillus thuringiensis). Colonies of Apis mellifera carnica were kept during anthesis in flight cages on field plots with the Bt maize, two different conventionally bred maize varieties, and without cages, 1-km outside of the experimental maize field to allow ad libitum foraging to mixed pollen sources. During their 10-days life span, the consumption of Bt maize pollen had no effect on their survival rate, body weight and rates of pollen digestion compared to the conventional maize varieties. As indicated by ELISA-quantification of Cry1A.105 and Cry3Bb1, more than 98% of the recombinant proteins were degraded. Bacterial population sizes in the gut were not affected by the genetic modification. Bt-maize, conventional varieties and mixed pollen sources selected for significantly different bacterial communities which were, however, composed of the same dominant members, including Proteobacteria in the midgut and Lactobacillus sp. and Bifidobacterium sp. in the hindgut. Surprisingly, Cry proteins from natural sources, most likely B. thuringiensis, were detected in bees with no exposure to Bt maize. The natural occurrence of Cry proteins and the lack of detectable effects on nurse bees and their gut bacteria give no indication for harmful effects of this Bt maize on nurse honey bees. KW - communities KW - 16S ribosomal-RNA KW - T-RFLP analysis KW - honey bees KW - bacillus thuringiensis KW - risk assessment KW - multivariate analyses KW - worker honeybees KW - corn pollen KW - larvae Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-131025 VL - 8 IS - 3 ER - TY - JOUR A1 - Streinzer, Martin A1 - Brockmann, Axel A1 - Nagaraja, Narayanappa A1 - Spaethe, Johannes T1 - Sex and Caste-Specific Variation in Compound Eye Morphology of Five Honeybee Species JF - PLoS ONE N2 - Ranging from dwarfs to giants, the species of honeybees show remarkable differences in body size that have placed evolutionary constrains on the size of sensory organs and the brain. Colonies comprise three adult phenotypes, drones and two female castes, the reproductive queen and sterile workers. The phenotypes differ with respect to tasks and thus selection pressures which additionally constrain the shape of sensory systems. In a first step to explore the variability and interaction between species size-limitations and sex and caste-specific selection pressures in sensory and neural structures in honeybees, we compared eye size, ommatidia number and distribution of facet lens diameters in drones, queens and workers of five species (Apis andreniformis, A. florea, A. dorsata, A. mellifera, A. cerana). In these species, male and female eyes show a consistent sex-specific organization with respect to eye size and regional specialization of facet diameters. Drones possess distinctly enlarged eyes with large dorsal facets. Aside from these general patterns, we found signs of unique adaptations in eyes of A. florea and A. dorsata drones. In both species, drone eyes are disproportionately enlarged. In A. dorsata the increased eye size results from enlarged facets, a likely adaptation to crepuscular mating flights. In contrast, the relative enlargement of A. florea drone eyes results from an increase in ommatidia number, suggesting strong selection for high spatial resolution. Comparison of eye morphology and published mating flight times indicates a correlation between overall light sensitivity and species-specific mating flight times. The correlation suggests an important role of ambient light intensities in the regulation of species-specific mating flight times and the evolution of the visual system. Our study further deepens insights into visual adaptations within the genus Apis and opens up future perspectives for research to better understand the timing mechanisms and sensory physiology of mating related signals. KW - eyes KW - foraging KW - honey bees KW - insect flight KW - physiological parameters KW - sensory systems KW - vision KW - visual system Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-96412 ER -