Concentrations of faecal glucocorticoid metabolites in physically injured free-ranging African elephants Loxodonta africana

dc.contributor.authorGanswindt, Andre
dc.contributor.authorMunscher, Stefanie
dc.contributor.authorHenley, Michelle
dc.contributor.authorPalme, Rupert
dc.contributor.authorThompson, P.N. (Peter N.)
dc.contributor.authorBertschinger, Hendrik Jan
dc.contributor.emailaganswindt@zoology.up.ac.zaen
dc.date.accessioned2011-06-03T08:21:33Z
dc.date.available2011-06-03T08:21:33Z
dc.date.issued2010-06
dc.description.abstractFree-ranging African elephants Loxodonta africana use their front feet frequently during the process of foraging and this could be the reason for the high prevalence of physical injuries to these parts of the body. Although the occurrence of severe lameness caused by foot lesions in adult elephants has already been investigated and the clinical and pathological findings have been reported, the effect of foot injuries on glucocorticoid levels as a potential physiological stress response has not been examined. Given the practical difficulties involved in monitoring unpredictable events in free-ranging animals, like the occurrence of foot injuries in elephants, it is not surprising that information regarding the endocrine correlates of physical injury is still limited for elephants. In our study we investigated the effects of foot injuries on concentrations of faecal glucocorticoid metabolites (GCM), body condition score (BCS) and reproductive behaviour in two GPS/radio-collared elephant bulls in the Kruger National Park, South Africa.Wemonitored the bulls aged 40+ (Bull 1) and 30+ (Bull 2) 2-3 times per week for 13 months starting in June 2007 and frequently collected faecal samples for non-invasive hormone monitoring. Faecal samples were lyophilised, extracted and assayed with an enzyme immunoassay which detects GCM with a 3a-hydroxy-11-oxo-structure. Both bulls acquired foot injuries (right-front), which caused temporary lameness, but the effect of injury on GCM concentration differed between bulls (P , 0.001). In Bull 1 the injury lasted 6 250 days and was associated with an up to four-fold increase in GCM concentrations (P,0.001) and his BCS reduced from ’good’ to ’very thin’ by the end of the injury period. In Bull 2 the injury lasted 65 days and was associated with a smaller increase in GCM concentrations (P ¼ 0.03) together with a reduced loss in condition when compared to Bull 1. Following recovery, the condition of both bulls improved progressively and faecalGCMreturned to baseline concentrations. Collectively, the data clearly underlined the value of non-invasive hormone measurements as a tool to provide information on the level of stress experienced by elephants. Thus, monitoring GCM levels could help improve the assessment of an elephant’s state of health.en
dc.identifier.citationGanswindt, A, Munscher, S, Henley, M, Palme, R, Thompson, P & Bertschinger, H 2010, 'Concentrations of faecal glucocorticoid metabolites in physically injured free-ranging African elephants Loxodonta africana', Wildlife Biology, vol. 16, no. 3, pp. 323-332. [www.wildlifebiology.com]en
dc.identifier.issn0909-6396
dc.identifier.other10.2981/09-081
dc.identifier.other6507085906
dc.identifier.other7403220452
dc.identifier.otherG-9856-2014
dc.identifier.otherJ-2534-2013
dc.identifier.urihttp://hdl.handle.net/2263/16706
dc.language.isoenen
dc.publisherNordic Council for Wildlife Researchen
dc.rights© Wildlife Biology, NKVen
dc.subjectCortisolen
dc.subjectEnzyme immunoassayen
dc.subjectInjuryen
dc.subjectKruger National Park (South Africa)en
dc.subjectStressen
dc.subject.lcshAfrican elephant (Loxodonta africana)en
dc.subject.lcshGlucocorticoidsen
dc.titleConcentrations of faecal glucocorticoid metabolites in physically injured free-ranging African elephants Loxodonta africanaen
dc.typeArticleen

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