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1.
J Mycol Med ; 27(1): 113-118, 2017 Mar.
Article in French | MEDLINE | ID: mdl-28043787

ABSTRACT

Various yeasts and filamentous fungi are described as the cause of infection in sea turtles. Among them, Fusarium solani is responsible both for superficial and invasive infection in weakened adults (capture, stranding), and wild nest contamination, causing massive losses during hatching. We illustrate the pathogenicity of this fungus in sea turtles, through our experience with the species Caretta caretta (loggerhead turtle) and its reproduction, which was obtained for the first time in 2010 at the marine park Marineland, Antibes and renewed in 2011 and 2013. The first generation (6 viable newborns e.g. 0.9% of the nest) was severely affected by an infectious agent causing skin and multifocal organ lesions. Microbiological samples allowed to establish F. solani as the etiological agent. Antifungal therapy with posaconazole cured 2 (33%) of the brood. Epidemiological investigations, infection control and hygiene measures as well as diagnosis criteria, preemptive and curative treatment procedures allowed better prevention and cure and finally higher survival rates in subsequent broods, in 2011 and 2013 (80 viable newborns e.g. 6.6% of the nest and 50% survival rate). F. solani appears as a major threat for the successful reproduction of sea turtles in the wild. As observed, this threat is also of concern during captive breeding. The conditions of transmission and pathogenicity of Fusarium spp. in these animals are discussed in light of the literature cases that occurred in adult sea turtles and in wild nests, and of our breeding experience.


Subject(s)
Fusariosis/diagnosis , Fusariosis/veterinary , Turtles/microbiology , Animal Diseases/diagnosis , Animal Diseases/drug therapy , Animal Diseases/microbiology , Animals , Animals, Zoo , Antifungal Agents/therapeutic use , Conservation of Natural Resources , Endangered Species , Fusariosis/drug therapy , Fusarium/pathogenicity , Tomography, X-Ray Computed , Triazoles/therapeutic use
2.
J Comp Pathol ; 147(4): 550-65, 2012 Nov.
Article in English | MEDLINE | ID: mdl-22632685

ABSTRACT

Pathological examination of stranded marine mammals provides information on the causes of mortality in their populations. Patterns of stranding and causes of death of dead-stranded seals on the Dutch coast were analyzed over a 30-year period (1979-2008). Stranding data (n=1,286) and post-mortem data (n=379) from common seals (Phoca vitulina) and grey seals (Halichoerus grypus) found dead, or that died before admission to rehabilitation, were obtained from the Seal Rehabilitation and Research Centre database. Data for the years 1988 and 2002, when mass mortality occurred due to phocine distemper virus epidemics, were excluded. Common seal stranding increased from one to nearly 100 per year over this period. This coincides with the increase in the number of common seals in Dutch waters over recent decades. Grey seal stranding increased gradually from one to about 40 per year over the period, reflecting recolonization of Dutch waters by this species. For both species, the trend in stranding of dead seals was found to be in line with that of seals observed in Dutch waters during aerial surveys and did not provide any indications of a relative change in the stranding rate of dead seals. The total monthly stranding rates peaked at more than 120 in June and July for common seals and at nearly 60 in January for grey seals. This coincides with the pupping periods of the two species. Besides phocine distemper, the most common causes of death in investigated common seals (n=286) were by-catch (confirmed and inferred) (19%), pup starvation (7%), intestinal volvulus (7%) and parasitic bronchopneumonia (6%). The most common causes of death in investigated grey seals (n=93) were by-catch (confirmed and inferred) (15%), pup starvation (11%) and trauma (5%). The relative occurrence of by-catch significantly decreased over time for grey seals, but not for common seals. Common seals were affected by infectious disease significantly more often than grey seals, mainly because of a higher occurrence of parasitic pneumonia. Phocine distemper caused mass mortalities among common seals, but not among grey seals. These findings in dead-stranded seals differ in part from those reported elsewhere in live-stranded seals, for which pup starvation and parasitic bronchopneumonia were the main causes of stranding. A substantial proportion of seals in Dutch waters die from causes related to human activity. Continued monitoring of stranding patterns and causes of death is warranted for early detection of changes and the possibility of taking timely management actions.


Subject(s)
Behavior, Animal , Mortality/trends , Nervous System Diseases/veterinary , Orientation/physiology , Seals, Earless/physiology , Animals , Cause of Death , Environmental Monitoring , Female , Male , Nervous System Diseases/mortality , Nervous System Diseases/psychology , Netherlands/epidemiology
3.
Environ Pollut ; 153(2): 401-15, 2008 May.
Article in English | MEDLINE | ID: mdl-17905497

ABSTRACT

Concentrations of polychlorinated biphenyls (PCBs) in blubber of female common dolphins and harbour porpoises from the Atlantic coast of Europe were frequently above the threshold at which effects on reproduction could be expected, in 40% and 47% of cases respectively. This rose to 74% for porpoises from the southern North Sea. PCB concentrations were also high in southern North Sea fish. The average pregnancy rate recorded in porpoises (42%) in the study area was lower than in the western Atlantic but that in common dolphins (25%) was similar to that of the western Atlantic population. Porpoises that died from disease or parasitic infection had higher concentrations of persistent organic pollutants (POPs) than animals dying from other causes. Few of the common dolphins sampled had died from disease or parasitic infection. POP profiles in common dolphin blubber were related to individual feeding history while those in porpoises were more strongly related to condition.


Subject(s)
Common Dolphins/metabolism , Environmental Pollutants/analysis , Flame Retardants/pharmacokinetics , Phocoena/metabolism , Polychlorinated Biphenyls/analysis , Adipose Tissue/chemistry , Adipose Tissue/metabolism , Animals , Cadmium/analysis , Cephalopoda/chemistry , Ecology/methods , Environmental Pollutants/pharmacokinetics , Female , Fishes/metabolism , Food Chain , Liver/chemistry , Mercury/analysis , Models, Statistical , North Sea , Polychlorinated Biphenyls/pharmacokinetics , Pregnancy , Reproduction/drug effects , Tissue Distribution , Zinc/analysis
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