TY - JOUR A1 - Gross, Stephanie A1 - Claus, Philip A1 - Wohlsein, Peter A1 - Kesselring, Tina A1 - Lakemeyer, Jan A1 - Reckendorf, Anja A1 - Roller, Marco A1 - Tiedemann, Ralph A1 - Siebert, Ursula T1 - Indication of lethal interactions between a solitary bottlenose dolphin (Tursiops truncatus) and harbor porpoises (Phocoena phocoena) in the German Baltic Sea JF - BMC zoology N2 - Background Aggressive interactions between bottlenose dolphins (Tursiops truncatus) and harbor porpoises (Phocoena phocoena) have been reported in different parts of the world since the late 1990s. In the Baltic Sea, harbor porpoises are the only native cetacean species, while bottlenose dolphins may appear there temporarily. In the fall of 2016, a solitary male photo-identified bottlenose dolphin stayed in the German Baltic Sea of Schleswig-Holstein for 3 months. During that time, the necropsies of the stranded harbor porpoises revealed types of trauma of varying degrees in six animals, which is unusual in this area. The purpose of this study was to determine if the appearance of the bottlenose dolphin could be linked to the trauma of the harbor porpoise carcasses. Results Pathological findings in these animals included subcutaneous, thoracic and abdominal hemorrhages, multiple, mainly bilateral, rib fractures, and one instance of lung laceration. These findings correspond with the previously reported dolphin-caused injuries in other regions. Moreover, public sighting reports showed a spatial and temporal correlation between the appearance of the dolphin and the stranding of fatally injured harbor porpoises. Conclusion Despite the fact that no attack has been witnessed in German waters to date, our findings indicate the first record of lethal interactions between a bottlenose dolphin and harbor porpoises in the German Baltic Sea. Furthermore, to our knowledge, this is the first report of porpoise aggression by a socially isolated bottlenose dolphin. KW - Cetaceans KW - Interspecific aggression KW - Porpicide KW - Blunt trauma KW - Mortality KW - Stranding Y1 - 2020 U6 - https://doi.org/10.1186/s40850-020-00061-7 SN - 2056-3132 VL - 5 IS - 1 PB - BMC CY - London ER - TY - JOUR A1 - Schnitzler, Joseph G. A1 - Reckendorf, Anja A1 - Pinzone, Marianna A1 - Autenrieth, Marijke A1 - Tiedemann, Ralph A1 - Covaci, Adrian A1 - Malarvannan, Govindan A1 - Ruser, Andreas A1 - Das, Krishna A1 - Siebert, Ursula T1 - Supporting evidence for PCB pollution threatening global killer whale population JF - Aquatic Toxicology N2 - A recent Science report predicted the global killer whale population to collapse due to PCB pollution. Here we present empirical evidence, which supports and extends the reports’ statement. In 2016, a neonate male killer whale stranded on the German island of Sylt. Neonatal attributes indicated an age of at least 3 days. The stomach contained ∼20 mL milk residue and no pathologies explaining the cause of death could be detected. Blubber samples presenting low lipid concentrations were analysed for persistent organic pollutants. Skin samples were collected for genotyping of the mitochondrial control region. The blubber PCB concentrations were very high [SPCBs, 225 mg/kg lipid weight (lw)], largely exceeding the PCB toxicity thresholds reported for the onset of immunosuppression [9 mg/kg lw ∑PCB] and for severe reproductive impairment [41 mg/kg lw ∑PCB] reported for marine mammals. Additionally, this individual showed equally high concentrations in p,p’-DDE [226 mg/kg lw], PBDEs [5 mg/kg lw] and liver mercury levels [1.1 μg/g dry weight dw]. These results suggest a high placental transfer of pollutants from mother to foetus. Consequently, blubber and plasma PCB concentrations and calf mortality rates are both high in primiparous females. With such high pollutant levels, this neonate had poor prerequisites for survival. The neonate belonged to Ecotype I (generalist feeder) and carried the mitochondrial haplotype 35 present in about 16% of the North Atlantic killer whale from or close to the North Sea. The relevance of this data becomes apparent in the UK West Coast Community, the UK's only residentorca population, which is currently composed of only eight individuals (each four males and females) and no calves have been reported over the last 19 years.Despite worldwide regulations, PCBs persist in the environment and remain a severe concern for killer whale populations, placing calves at high risk due to the mother-offspring PCB-transfer resulting in a high toxicological burden of the neonates. KW - Killer whale KW - PCB KW - DDT KW - PBDE KW - Mercury KW - North Sea Y1 - 2018 U6 - https://doi.org/10.1016/j.aquatox.2018.11.008 SN - 0166-445X SN - 1879-1514 VL - 206 SP - 102 EP - 104 PB - Elsevier CY - Amsterdam ER - TY - JOUR A1 - Reckendorf, Anja A1 - Ludes-Wehrmeister, Eva A1 - Wohlsein, Peter A1 - Tiedemann, Ralph A1 - Siebert, U. A1 - Lehnert, Kristina T1 - First record of Halocercus sp (Pseudaliidae) lungworm infections in two stranded neonatal orcas (Orcinus orca) JF - Parasitology N2 - Orca (Orcinus orca) strandings are rare and post-mortem examinations on fresh individuals are scarce. Thus, little is known about their parasitological fauna, prevalence of infections, associated pathology and the impact on their health. During post-mortem examinations of two male neonatal orcas stranded in Germany and Norway, lungworm infections were found within the bronchi of both individuals. The nematodes were identified as Halocercus sp. (Pseudaliidae), which have been described in the respiratory tract of multiple odontocete species, but not yet in orcas. The life cycle and transmission pathways of some pseudaliid nematodes are incompletely understood. Lungworm infections in neonatal cetaceans are an unusual finding and thus seem to be an indicator for direct mother-to-calf transmission (transplacental or transmammary) of Halocercus sp. nematodes in orcas. KW - Cetaceans KW - endoparasites KW - killer whale KW - life cycle KW - nematodes KW - vertical transmission Y1 - 2018 U6 - https://doi.org/10.1017/S0031182018000586 SN - 0031-1820 SN - 1469-8161 VL - 145 IS - 12 SP - 1553 EP - 1557 PB - Cambridge Univ. Press CY - New York ER -