TY - JOUR A1 - Müller, Jörg A1 - Ulyshen, Mike A1 - Seibold, Sebastian A1 - Cadotte, Marc A1 - Chao, Anne A1 - Bässler, Claus A1 - Vogel, Sebastian A1 - Hagge, Jonas A1 - Weiß, Ingmar A1 - Baldrian, Petr A1 - Tláskal, Vojtěch A1 - Thorn, Simon T1 - Primary determinants of communities in deadwood vary among taxa but are regionally consistent JF - Oikos N2 - The evolutionary split between gymnosperms and angiosperms has far‐reaching implications for the current communities colonizing trees. The inherent characteristics of dead wood include its role as a spatially scattered habitat of plant tissue, transient in time. Thus, local assemblages in deadwood forming a food web in a necrobiome should be affected not only by dispersal ability but also by host tree identity, the decay stage and local abiotic conditions. However, experiments simultaneously manipulating these potential community drivers in deadwood are lacking. To disentangle the importance of spatial distance and microclimate, as well as host identity and decay stage as drivers of local assemblages, we conducted two consecutive experiments, a 2‐tree species and 6‐tree species experiment with 80 and 72 tree logs, respectively, located in canopy openings and under closed canopies of a montane and a lowland forest. We sampled saproxylic beetles, spiders, fungi and bacterial assemblages from logs. Variation partitioning for community metrics based on a unified framework of Hill numbers showed consistent results for both studies: host identity was most important for sporocarp‐detected fungal assemblages, decay stage and host tree for DNA‐detected fungal assemblages, microclimate and decay stage for beetles and spiders and decay stage for bacteria. Spatial distance was of minor importance for most taxa but showed the strongest effects for arthropods. The contrasting patterns among the taxa highlight the need for multi‐taxon analyses in identifying the importance of abiotic and biotic drivers of community composition. Moreover, the consistent finding of microclimate as the primary driver for saproxylic beetles compared to host identity shows, for the first time that existing evolutionary host adaptions can be outcompeted by local climate conditions in deadwood. KW - deadwood experiments KW - dispersal KW - forest management KW - habitat filter KW - wood-inhabiting fungi Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-228201 VL - 129 IS - 10 SP - 1579 EP - 1588 ER - TY - JOUR A1 - Thorn, Simon A1 - Seibold, Sebastian A1 - Leverkus, Alexandro B A1 - Michler, Thomas A1 - Müller, Jörg A1 - Noss, Reed F A1 - Stork, Nigel A1 - Vogel, Sebastian A1 - Lindenmayer, David B T1 - The living dead: acknowledging life after tree death to stop forest degradation JF - Frontiers in Ecology and the Environment N2 - Global sustainability agendas focus primarily on halting deforestation, yet the biodiversity crisis resulting from the degradation of remaining forests is going largely unnoticed. Forest degradation occurs through the loss of key ecological structures, such as dying trees and deadwood, even in the absence of deforestation. One of the main drivers of forest degradation is limited awareness by policy makers and the public on the importance of these structures for supporting forest biodiversity and ecosystem function. Here, we outline management strategies to protect forest health and biodiversity by maintaining and promoting deadwood, and propose environmental education initiatives to improve the general awareness of the importance of deadwood. Finally, we call for major reforms to forest management to maintain and restore deadwood; large, old trees; and other key ecological structures. KW - forest degradation KW - biodiversity KW - deadwood Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-218575 VL - 18 IS - 9 SP - 505 EP - 512 ER - TY - JOUR A1 - Elias, Johannes A1 - Heuschmann, Peter U. A1 - Schmitt, Corinna A1 - Eckhardt, Frithjof A1 - Boehm, Hartmut A1 - Maier, Sebastian A1 - Kolb-Mäurer, Annette A1 - Riedmiller, Hubertus A1 - Müllges, Wolfgang A1 - Weisser, Christoph A1 - Wunder, Christian A1 - Frosch, Matthias A1 - Vogel, Ulrich T1 - Prevalence dependent calibration of a predictive model for nasal carriage of methicillin-resistant Staphylococcus aureus JF - BMC Infectious Diseases N2 - Background Published models predicting nasal colonization with Methicillin-resistant Staphylococcus aureus among hospital admissions predominantly focus on separation of carriers from non-carriers and are frequently evaluated using measures of discrimination. In contrast, accurate estimation of carriage probability, which may inform decisions regarding treatment and infection control, is rarely assessed. Furthermore, no published models adjust for MRSA prevalence. Methods Using logistic regression, a scoring system (values from 0 to 200) predicting nasal carriage of MRSA was created using a derivation cohort of 3091 individuals admitted to a European tertiary referral center between July 2007 and March 2008. The expected positive predictive value of a rapid diagnostic test (GeneOhm, Becton & Dickinson Co.) was modeled using non-linear regression according to score. Models were validated on a second cohort from the same hospital consisting of 2043 patients admitted between August 2008 and January 2012. Our suggested correction score for prevalence was proportional to the log-transformed odds ratio between cohorts. Calibration before and after correction, i.e. accurate classification into arbitrary strata, was assessed with the Hosmer-Lemeshow-Test. Results Treating culture as reference, the rapid diagnostic test had positive predictive values of 64.8% and 54.0% in derivation and internal validation corhorts with prevalences of 2.3% and 1.7%, respectively. In addition to low prevalence, low positive predictive values were due to high proportion (> 66%) of mecA-negative Staphylococcus aureus among false positive results. Age, nursing home residence, admission through the medical emergency department, and ICD-10-GM admission diagnoses starting with “A” or “J” were associated with MRSA carriage and were thus included in the scoring system, which showed good calibration in predicting probability of carriage and the rapid diagnostic test’s expected positive predictive value. Calibration for both probability of carriage and expected positive predictive value in the internal validation cohort was improved by applying the correction score. Conclusions Given a set of patient parameters, the presented models accurately predict a) probability of nasal carriage of MRSA and b) a rapid diagnostic test’s expected positive predictive value. While the former can inform decisions regarding empiric antibiotic treatment and infection control, the latter can influence choice of screening method. KW - Methicillin-resistant staphylococcus aureus KW - Infection control KW - Clinical prediction rule KW - Predictive value of tests KW - False positive reactions KW - Calibration Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-96091 UR - http://www.biomedcentral.com/1471-2334/13/111 ER - TY - JOUR A1 - Vogel, Sebastian A1 - Prinzing, Andreas A1 - Bußler, Heinz A1 - Müller, Jörg A1 - Schmidt, Stefan A1 - Thorn, Simon T1 - Abundance, not diversity, of host beetle communities determines abundance and diversity of parasitoids in deadwood JF - Ecology and Evolution N2 - Most parasites and parasitoids are adapted to overcome defense mechanisms of their specific hosts and hence colonize a narrow range of host species. Accordingly, an increase in host functional or phylogenetic dissimilarity is expected to increase the species diversity of parasitoids. However, the local diversity of parasitoids may be driven by the accessibility and detectability of hosts, both increasing with increasing host abundance. Yet, the relative importance of these two mechanisms remains unclear. We parallelly reared communities of saproxylic beetle as potential hosts and associated parasitoid Hymenoptera from experimentally felled trees. The dissimilarity of beetle communities was inferred from distances in seven functional traits and from their evolutionary ancestry. We tested the effect of host abundance, species richness, functional, and phylogenetic dissimilarities on the abundance, species richness, and Shannon diversity of parasitoids. Our results showed an increase of abundance, species richness, and Shannon diversity of parasitoids with increasing beetle abundance. Additionally, abundance of parasitoids increased with increasing species richness of beetles. However, functional and phylogenetic dissimilarity showed no effect on the diversity of parasitoids. Our results suggest that the local diversity of parasitoids, of ephemeral and hidden resources like saproxylic beetles, is highest when resources are abundant and thereby detectable and accessible. Hence, in some cases, resources do not need to be diverse to promote parasitoid diversity. KW - barcoding KW - deadwood KW - experiment KW - host–parasitoid interaction KW - natural enemy KW - specialization Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-238892 VL - 11 IS - 11 SP - 6881 EP - 6888 ER - TY - THES A1 - Vogel, Sebastian T1 - Determinants of saproxylic biodiversity and conclusions for conservation T1 - Einflussfaktoren auf xylobionte Artenvielfalt und Rückschlüsse für den Naturschutz N2 - Over the past centuries, anthropogenic utilization has fundamentally changed the appearance of European forest ecosystems. Constantly growing and changing demands have led to an enormous decline in ecological key elements and a structural homogenization of most forests. These changes have been accompanied by widespread declines of many forest-dwelling and especially saproxylic, i.e. species depending on deadwood. In order to counteract this development, various conservation strategies have been developed, but they primarily focus on a quantitative deadwood enrichment. However, the diversity of saproxylic species is furthermore driven by a variety of abiotic and biotic determinants as well as interactions between organisms. A detailed understanding of these processes has so far been largely lacking. The aim of the present thesis was therefore to improve the existing ecological knowledge of determinants influencing saproxylic species and species communities in order to provide the basis for evidence-based and adapted conservation measures. In chapter II of this thesis, I first investigated the impact of sun exposure, tree species, and their combination on saproxylic beetles, wood-inhabiting fungi, and spiders. Therefore, logs and branches of six tree species were set up under different sun exposures in an experimental approach. The impact of sun exposure and tree species strongly differed among single saproxylic taxa as well as diameters of deadwood. All investigated taxa were affected by sun exposure, whereby sun exposure resulted in a higher alpha-diversity of taxa recorded in logs and a lower alpha-diversity of saproxylic beetles reared from branches compared to shading by canopy. Saproxylic beetles and wood-inhabiting fungi as obligate saproxylic species were additionally affected by tree species. In logs, the respective impact of both determinants also resulted in divergent community compositions. Finally, a rarefaction/extrapolation method was used to evaluate the effectiveness of different combinations of tree species and sun exposure for the conservation of saproxylic species diversity. Based on this procedure, a combination of broadleaved and coniferous as well as hard- and softwood tree species was identified to support preferably high levels of saproxylic species diversity. The aim of chapter III was to evaluate the individual conservational importance of tree species for the protection of saproxylic beetles. For this, the list of tree species sampled for saproxylic beetles was increased to 42 different tree species. The considered tree species represented large parts of taxonomic and phylogenetic diversity native to Central Europe as well as the most important non-native tree species of silvicultural interest. Freshly cut branches were set up for one year and saproxylic beetles were reared afterwards for two subsequent years. The study revealed that some tree species, in particular Quercus sp., host a particular high diversity of saproxylic beetles, but tree species with a comparatively medium or low overall diversity were likewise important for red-listed saproxylic beetle species. Compared to native tree species, non-native tree species hosted a similar overall species diversity of saproxylic beetles but differed in community composition. In chapter IV, I finally analysed the interactions of host beetle diversity and the diversity of associated parasitoids by using experimentally manipulated communities of saproxylic beetles and parasitoid Hymenoptera as a model system. Classical approaches of species identification for saproxylic beetles were combined with DNA-barcoding for parasitoid Hymenoptera. The diversity of the host communities was inferred from their phylogenetic composition as well as differences in seven functional traits. Abundance, species richness, and Shannon-diversity of parasitoid Hymenoptera increased with increasing host abundance. However, the phylogenetic and functional dissimilarity of host communities showed no influence on the species communities of parasitoid Hymenoptera. The results clearly indicate an abundance-driven system in which the general availability, not necessarily the diversity of potential hosts, is decisive. In summary, the present thesis corroborates the general importance of deadwood heterogeneity for the diversity of saproxylic species by combining different experimental approaches. In order to increase their efficiency, conservation strategies for saproxylic species should generally promote deadwood from different tree species under different conditions of sun exposure on landscape-level in addition to the present enrichment of a certain deadwood amount. The most effective combinations of tree species should consider broadleaved and coniferous as well as hard- and softwood tree species. Furthermore, in addition to dominant tree species, special attention should be given to native, subdominant, silviculturally unimportant, and rare tree species. N2 - Während der letzten Jahrhunderte hat die anthropogene Nutzung das Erscheinungsbild der Waldökosysteme in Europa grundlegend verändert. Stetig wachsende und wandelnde Ansprüche führten zu einem enormen Rückgang ökologischer Schlüsselelemente und einer strukturellen Homogenisierung der meisten Wälder. In der Folge kam es zu Rückgängen vieler waldbewohnender und insbesondere xylobionter, d.h. von Totholz abhängigen, Arten. Um dieser Entwicklung entgegenzuwirken, wurden verschiedene Schutzstrategien entwickelt, welche jedoch vor allem auf eine quantitative Totholzanreicherung abzielen. Die Vielfalt xylobionter Arten wird aber weiterhin durch unterschiedliche abiotische und biotische Einflussfaktoren sowie durch Wechselwirkungen zwischen den Arten beeinflusst. Ein detailliertes Verständnis der genauen Vorgänge fehlt jedoch bislang größtenteils. Ziel der vorliegenden Promotionsarbeit war es deshalb, das diesbezüglich bestehende Wissen zu verbessern, um die Basis für evidenzbasierte und angepasste Naturschutzmaßnahmen zu schaffen. In Kapitel II dieser Arbeit habe ich zunächst den Einfluss der Besonnung und Baumart sowie deren Kombination im Vergleich auf xylobionte Käfer, holzbesiedelnde Pilze und Spinnen untersucht. Für die zugehörige Studie wurden dabei Stämme und Äste von sechs Baumarten bei unterschiedlicher Besonnung in einem experimentellen Ansatz ausgebracht. Der Einfluss der Besonnung und Baumart unterschied sich deutlich zwischen den einzelnen Artengruppen und Totholzdurchmessern. Alle Artengruppen wurden durch die Besonnung beeinflusst, wobei Besonnung im Vergleich zur Beschattung durch Baumkronen bei allen Artengruppen an Stämmen zu einer höheren alpha-Diversität führte und zu einer niedrigeren alpha-Diversität von xylobionten Käfern in Ästen. Xylobionte Käfer und holzbesiedelnde Pilze als obligat xylobionte Arten wurden weiterhin von der Baumart beeinflusst. Für die Artengruppen an Stämmen führten die jeweiligen Auswirkungen von Besonnung und Baumarten ebenfalls zu Unterschieden in der Zusammensetzung der Artgemeinschaften. Abschließend wurden Art-Akkumulationskurven genutzt, um die Effektivität unterschiedlicher Kombinationen aus Baumart und Besonnung für den Erhalt der xylobionten Diversität zu evaluieren. Um eine möglichst hohe Artenvielfalt zu fördern, wurde darauf basierend eine Kombination aus Laub- und Nadelholz einschließlich Weich- und Hartholzarten identifiziert. Ziel meiner Studie in Kapitel III war es den individuellen Beitrag einzelner Baumarten zum Schutz xylobionter Käfer zu identifizieren. Dafür wurde die Zahl untersuchter Baumarten auf 42 erhöht. Die untersuchten Baumarten umfassten dabei große Teile der taxonomischen und phylogenetischen Diversität, die in Mitteleuropa heimisch ist, sowie die wichtigsten, nicht-heimischen Baumarten von waldbaulichem Interesse. Frisch geschnittene Äste wurden für ein Jahr ausgebracht und xylobionte Käfer im Anschluss für zwei aufeinanderfolgende Jahre ausgezüchtet. Im Rahmen der Studie konnte gezeigt werden, dass einige Baumarten, insbesondere Quercus sp., eine besonders hohe Artenvielfalt aufweisen, aber auch Arten mit einer vergleichsweise geringen Gesamtartenzahl für Arten der Roten Liste von Bedeutung sind. Nicht-heimische Baumarten beherbergten insgesamt keine geringere Artenvielfalt von xylobionten Käfern, unterschieden sich aber in der Zusammensetzung ihrer Artgemeinschaften. Die Studie in Kapitel IV analysiert schließlich die Wechselwirkungen zwischen Wirtsdiversität und der Diversität assoziierter Parasitoide unter Verwendung experimentell manipulierter Gemeinschaften von xylobionten Käfern und parasitoiden Hymenopteren als Modellsystem. Klassische Ansätze zur Artidentifizierung für xylobionte Käfer wurden dabei mit DNA-Barcoding für die parasitoiden Hymenopteren kombiniert. Die Vielfalt der Wirtsgemeinschaften wurde aus ihrer phylogenetischen Zusammensetzung sowie Unterschieden in sieben funktionellen Merkmalen abgeleitet. Abundanz, Artenvielfalt und Shannon-Diversität nahmen mit zunehmender Abundanz der Wirte zu. Hingegen zeigten die phylogenetische und funktionelle Ähnlichkeit der Wirtsgemeinschaften insgesamt keinen Einfluss auf die Artgemeinschaften der parasitoiden Hymenopteren. Die Ergebnisse weisen damit klar auf ein abundanz-getriebenes System hin, in dem die generelle Verfügbarkeit und nicht unbedingt die Diversität potentieller Wirte entscheidend ist. Zusammenfassend betont die vorliegende Promotionsarbeit durch die Kombination verschiedener experimenteller Ansätze die generelle Bedeutung der Totholzheterogenität für die Vielfalt xylobionter Arten. Um ihre Effizienz zu steigern, sollten Schutzstrategien für xylobionte Arten neben einer bestimmten Totholzmenge daher generell Totholz verschiedener Baumarten bei unterschiedlicher Besonnung auf Landschaftsebene anreichern. Die effektivsten Baumarten-Kombinationen sollten dabei Laub- und Nadelholz sowie Weich- und Hartholzarten berücksichtigen. Neben den dominierenden Baumarten sollte zudem ein besonderes Augenmerk auf heimischen, subdominanten, wirtschaftlich irrelevanten und seltenen Baumarten liegen. KW - deadwood enrichment KW - saproxylic KW - beetles KW - spiders KW - woodinhabiting-fungi KW - tree species KW - forest conservation Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-289266 ER - TY - JOUR A1 - Vogel, Sebastian A1 - Gossner, Martin M. A1 - Mergner, Ulrich A1 - Müller, Jörg A1 - Thorn, Simon T1 - Optimizing enrichment of deadwood for biodiversity by varying sun exposure and tree species: An experimental approach JF - Journal of Applied Ecology N2 - The enrichment of deadwood is essential for the conservation of saproxylic biodiversity in managed forests. However, existing strategies focus on a cost‐intensive increase of deadwood amount, while largely neglecting increasing deadwood diversity. Deadwood objects, that is logs and branches, from six tree species were experimentally sun exposed, canopy shaded and artificially shaded for 4 years, after which the alpha‐, beta‐ and gamma‐diversity of saproxylic beetles, wood‐inhabiting fungi and spiders were analysed. Analyses of beta‐diversity included the spatial distance between exposed deadwood objects. A random‐drawing procedure was used to identify the combination of tree species and sun exposure that yielded the highest gamma‐diversity at a minimum of exposed deadwood amount. In sun‐exposed plots, species numbers in logs were higher than in shaded plots for all taxa, while in branches we observed the opposite for saproxylic beetles. Tree species affected the species numbers only of saproxylic beetles and wood‐inhabiting fungi. The beta‐diversity of saproxylic beetles and wood‐inhabiting fungi among logs was influenced by sun exposure and tree species, but beta‐diversity of spiders by sun exposure only. For all saproxylic taxa recorded in logs, differences between communities increased with increasing spatial distance. A combination of canopy‐shaded Carpinus logs and sun‐exposed Populus logs resulted in the highest species numbers of all investigated saproxylic taxa among all possible combinations of tree species and sun‐exposure treatments. Synthesis and applications. We recommend incorporating the enrichment of different tree species and particularly the variation in sun exposure into existing strategies of deadwood enrichment. Based on the results of our study, we suggest to combine the logs of softwood broadleaf tree species (e.g. Carpinus, Populus), hardwood broadleaf tree species (e.g. Quercus) and coniferous tree species (e.g. Pinus) under different conditions of sun exposure and distribute them spatially in a landscape to maximize the beneficial effects on overall diversity. KW - broadleaf tree species KW - deadwood enrichment KW - forest conservation KW - forest management KW - saproxylic beetles KW - spiders KW - sun exposure KW - wood‐inhabiting fungi Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-214614 VL - 57 IS - 10 SP - 2075 EP - 2085 ER - TY - JOUR A1 - Vogel, Sebastian A1 - Bussler, Heinz A1 - Finnberg, Sven A1 - Müller, Jörg A1 - Stengel, Elisa A1 - Thorn, Simon T1 - Diversity and conservation of saproxylic beetles in 42 European tree species: an experimental approach using early successional stages of branches JF - Insect Conservation and Diversity N2 - Tree species diversity is important to maintain saproxylic beetle diversity in managed forests. Yet, knowledge about the conservational importance of single tree species and implications for forest management and conservation practices are lacking. We exposed freshly cut branch‐bundles of 42 tree species, representing tree species native and non‐native to Europe, under sun‐exposed and shaded conditions for 1 year. Afterwards, communities of saproxylic beetles were reared ex situ for 2 years. We tested for the impact of tree species and sun exposure on alpha‐, beta‐, and gamma‐diversity as well as composition of saproxylic beetle communities. Furthermore, the number of colonised tree species by each saproxylic beetle species was determined. Tree species had a lower impact on saproxylic beetle communities compared to sun exposure. The diversity of saproxylic beetles varied strongly among tree species, with highest alpha‐ and gamma‐diversity found in Quercus petraea. Red‐listed saproxylic beetle species occurred ubiquitously among tree species. We found distinct differences in the community composition of broadleaved and coniferous tree species, native and non‐native tree species as well as sun‐exposed and shaded deadwood. Our study enhances the understanding of the importance of previously understudied and non‐native tree species for the diversity of saproxylic beetles. To improve conservation practices for saproxylic beetles and especially red‐listed species, we suggest a stronger incorporation of tree species diversity and sun exposure of into forest management strategies, including the enrichment of deadwood from native and with a specific focus on locally rare or silviculturally less important tree species. KW - deadwood KW - deadwood enrichment KW - decay KW - forest management KW - host specificity Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-218401 VL - 14 IS - 1 SP - 132 EP - 143 ER -