TY - THES A1 - Numberger, Daniela T1 - Urban wastewater and lakes as habitats for bacteria and potential vectors for pathogens T1 - Urbane Abwässer und Seen als Habitat für Bakterien und potentielle Vektoren für Krankheitserreger N2 - Wasser ist lebensnotwendig und somit eine essentielle Ressource. Jedoch sind unsere Süßwasser-Ressourcen begrenzt und ihre Erhaltung daher besonders wichtig. Verschmutzungen mit Chemikalien und Krankheitserregern, die mit einer wachsenden Bevölkerung und Urbanisierung einhergehen, verschlechtern die Qualität unseres Süßwassers. Außerdem kann Wasser als Übertragungsvektor für Krankheitserreger dienen und daher wasserbürtige Krankheiten verursachen. Der Leibniz-Forschungsverbund INFECTIONS‘21 untersuchte innerhalb der interdisziplinären Forschungsgruppe III - „Wasser", Gewässer als zentralen Mittelpunkt für Krankheiterreger. Dabei konzentrierte man sich auf Clostridioides difficile sowie aviäre Influenza A-Viren, von denen angenommen wird, dass sie in die Gewässer ausgeschieden werden. Ein weiteres Ziel bestand darin, die bakterielle Gemeinschaften eines Klärwerkes der deutschen Hauptstadt Berlin zu charakterisieren, um anschließend eine Bewertung des potentiellen Gesundheitsrisikos geben zu können. Bakterielle Gemeinschaften des Roh- und Klarwassers aus dem Klärwerk unterschieden sich signifikant voneinander. Der Anteil an Darm-/Fäkalbakterien war relativ niedrig und potentielle Darmpathogene wurden größtenteils aus dem Rohwasser entfernt. Ein potentielles Gesundheitsrisiko konnte allerdings von potentiell pathogenen Legionellen wie L. lytica festgestellt werden, deren relative Abundanz im Klarwasser höher war als im Rohwasser. Es wurden außerdem drei C. difficile-Isolate aus den Klärwerk-Rohwasser und einem städtischen Badesee in Berlin (Weisser See) gewonnen und sequenziert. Die beiden Isolate aus dem Klärwerk tragen keine Toxin-Gene, wohingegen das Isolat aus dem See Toxin-Gene besitzt. Alle drei Isolate sind sehr nah mit humanen Stämmen verwandt. Dies deutet auf ein potentielles, wenn auch sporadisches Gesundheitsrisiko hin. (Aviäre) Influenza A-Viren wurden in 38.8% der untersuchten Sedimentproben mittels PCR detektiert, aber die Virusisolierung schlug fehl. Ein Experiment mit beimpften Wasser- und Sedimentproben zeigte, dass für die Isolierung aus Sedimentproben eine relativ hohe Viruskonzentration nötig ist. In Wasserproben ist jedoch ein niedriger Titer an Influenza A-Viren ausreichend, um eine Infektion auszulösen. Es konnte zudem auch festgestellt werden, dass sich „Madin-Darby Canine Kidney (MDCK)―-Zellkulturen im Gegensatz zu embryonierten Hühnereiern besser eignen, um Influenza A-Viren aus Sediment zu isolieren. Zusammenfassend lässt sich sagen, dass diese Arbeit mögliche Gesundheitsrisiken aufgedeckt hat, wie etwa durch Legionellen im untersuchten Berliner Klärwerk, deren relative Abundanz in geklärtem Abwasser höher ist als im Rohwasser. Desweiteren wird indiziert, dass Abwasser und Gewässer als Reservoir und Vektor für pathogene Organismen dienen können, selbst für nicht-typische Wasser-Pathogene wie C. difficile. N2 - Water is essential to life and thus, an essential resource. However, freshwater resources are limited and their maintenance is crucial. Pollution with chemicals and pathogens through urbanization and a growing population impair the quality of freshwater. Furthermore, water can serve as vector for the transmission of pathogens resulting in water-borne illness. The Interdisciplinary Research Group III – "Water" of the Leibniz alliance project INFECTIONS‘21 investigated water as a hub for pathogens focusing on Clostridioides difficile and avian influenza A viruses that may be shed into the water. Another aim of this study was to characterize the bacterial communities in a wastewater treatment plant (WWTP) of the capital Berlin, Germany to further assess potential health risks associated with wastewater management practices. Bacterial communities of WWTP inflow and effluent differed significantly. The proportion of fecal/enteric bacteria was relatively low and OTUs related to potential enteric pathogens were largely removed from inflow to effluent. However, a health risk might exist as an increased relative abundance of potential pathogenic Legionella spp. such as L. lytica was observed. Three Clostridioides difficile isolates from wastewater inflow and an urban bathing lake in Berlin (‗Weisser See‘) were obtained and sequenced. The two isolates from the wastewater did not carry toxin genes, whereas the isolate from the lake was positive for the toxin genes. All three isolates were closely related to human strains. This indicates a potential, but rather sporadic health risk. Avian influenza A viruses were detected in 38.8% of sediment samples by PCR, but virus isolation failed. An experiment with inoculated freshwater and sediment samples showed that virus isolation from sediment requires relatively high virus concentrations and worked much better in Madin-Darby Canine Kidney (MDCK) cell cultures than in embryonated chicken eggs, but low titre of influenza contamination in freshwater samples was sufficient to recover virus. In conclusion, this work revealed potential health risks coming from bacterial groups with pathogenic potential such as Legionella spp. whose relative abundance is higher in the released effluent than in the inflow of the investigated WWTP. It further indicates that water bodies such as wastewater and lake sediments can serve as reservoir and vector, even for non-typical water-borne or water-transmitted pathogens such as C. difficile. KW - water KW - Wasser KW - bacteria KW - Bakterien KW - influenza A viruses KW - Influenza A Viren KW - pathogens KW - Krankheitserreger Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:kobv:517-opus4-437095 ER - TY - GEN A1 - Numberger, Daniela A1 - Dreier, Carola A1 - Vullioud, Colin A1 - Gabriel, Guelsah A1 - Greenwood, Alex D. A1 - Grossart, Hans-Peter T1 - Correction: Recovery of influenza A viruses from lake water and sediments by experimental inoculation (vol 14, e0216880, 2019) T2 - PLoS one Y1 - 2019 U6 - https://doi.org/10.1371/journal.pone.0218882 SN - 1932-6203 VL - 14 IS - 6 PB - PLoS CY - San Fransisco ER - TY - JOUR A1 - Numberger, Daniela A1 - Dreier, Carole A1 - Vullioud, Colin A1 - Gabriel, Gülsah A1 - Greenwood, Alex D. A1 - Grossart, Hans-Peter T1 - Recovery of influenza a viruses from lake water and sediments by experimental inoculation JF - PLoS one N2 - Influenza A viruses (IAV) are zoonotic pathogens relevant to human, domestic animal and wildlife health. Many avian IAVs are transmitted among waterfowl via a faecal-oral-route. Therefore, environmental water where waterfowl congregate may play an important role in the ecology and epidemiology of avian IAV. Water and sediment may sustain and transmit virus among individuals or species. It is unclear at what concentrations waterborne viruses are infectious or remain detectable. To address this, we performed lake water and sediment dilution experiments with varying concentrations or infectious doses of four IAV strains from seal, turkey, duck and gull. To test for infectivity of the IAV strains in a concentration dependent manner, we applied cultivation to specific pathogen free (SPF) embryonated chicken eggs and Madin-Darby Canine Kidney (MDCK) cells. IAV recovery was more effective from embryonated chicken eggs than MDCK cells for freshwater lake dilutions, whereas, MDCK cells were more effective for viral recovery from sediment samples. Low infectious dose (1 PFU/200 mu L) was sufficient in most cases to detect and recover IAV from lake water dilutions. Sediment required higher initial infectious doses (>= 100 PFU/200 mu L). Y1 - 2019 U6 - https://doi.org/10.1371/journal.pone.0216880 SN - 1932-6203 VL - 14 IS - 5 PB - PLoS CY - San Fransisco ER - TY - JOUR A1 - Numberger, Daniela A1 - Ganzert, Lars A1 - Zoccarato, Luca A1 - Mühldorfer, Kristin A1 - Sauer, Sascha A1 - Grossart, Hans-Peter A1 - Greenwood, Alex D. T1 - Characterization of bacterial communities in wastewater with enhanced taxonomic resolution by full-length 16S rRNA sequencing JF - Scientific reports N2 - Wastewater treatment is crucial to environmental hygiene in urban environments. However, wastewater treatment plants (WWTPs) collect chemicals, organic matter, and microorganisms including pathogens and multi-resistant bacteria from various sources which may be potentially released into the environment via WWTP effluent. To better understand microbial dynamics in WWTPs, we characterized and compared the bacterial community of the inflow and effluent of a WWTP in Berlin, Germany using full-length 16S rRNA gene sequences, which allowed for species level determination in many cases and generally resolved bacterial taxa. Significantly distinct bacterial communities were identified in the wastewater inflow and effluent samples. Dominant operational taxonomic units (OTUs) varied both temporally and spatially. Disease associated bacterial groups were efficiently reduced in their relative abundance from the effluent by the WWTP treatment process, except for Legionella and Leptospira species which demonstrated an increase in relative proportion from inflow to effluent. This indicates that WWTPs, while effective against enteric bacteria, may enrich and release other potentially pathogenic bacteria into the environment. The taxonomic resolution of full-length 16S rRNA genes allows for improved characterization of potential pathogenic taxa and other harmful bacteria which is required to reliably assess health risk. Y1 - 2019 U6 - https://doi.org/10.1038/s41598-019-46015-z SN - 2045-2322 VL - 9 PB - Nature Publ. Group CY - London ER - TY - JOUR A1 - Numberger, Daniela A1 - Riedel, Thomas A1 - McEwen, Gayle A1 - Nübel, Ulrich A1 - Frentrup, Martinique A1 - Schober, Isabel A1 - Bunk, Boyke A1 - Spröer, Cathrin A1 - Overmann, Jörg A1 - Grossart, Hans-Peter A1 - Greenwood, Alex D. T1 - Genomic analysis of three Clostridioides difficile isolates from urban water sources JF - Anaerobe N2 - We investigated inflow of a wastewater treatment plant and sediment of an urban lake for the presence of Clostridioides difficile by cultivation and PCR. Among seven colonies we sequenced the complete genomes of three: two non-toxigenic isolates from wastewater and one toxigenic isolate from the urban lake. For all obtained isolates, a close genomic relationship with human-derived isolates was observed. (C) 2019 Elsevier Ltd. All rights reserved. KW - Clostridioides difficile KW - Genomes KW - Sediment KW - Wastewater Y1 - 2019 U6 - https://doi.org/10.1016/j.anaerobe.2019.01.002 SN - 1075-9964 SN - 1095-8274 VL - 56 SP - 22 EP - 26 PB - Elsevier CY - Oxford ER -