Studying Seabird Diet through Genetic Analysis of Faeces: A Case Study on Macaroni Penguins (Eudyptes chrysolophus)
Open Access
- 5 September 2007
- journal article
- research article
- Published by Public Library of Science (PLoS) in PLOS ONE
- Vol. 2 (9), e831
- https://doi.org/10.1371/journal.pone.0000831
Abstract
Determination of seabird diet usually relies on the analysis of stomach-content remains obtained through stomach flushing; this technique is both invasive and logistically difficult. We evaluate the usefulness of DNA-based faecal analysis in a dietary study on chick-rearing macaroni penguins (Eudyptes chrysolophus) at Heard Island. Conventional stomach-content data was also collected, allowing comparison of the approaches. Prey-specific PCR tests were used to detect dietary DNA in faecal samples and amplified prey DNA was cloned and sequenced. Of the 88 faecal samples collected, 39 contained detectable DNA from one or more of the prey groups targeted with PCR tests. Euphausiid DNA was most commonly detected in the early (guard) stage of chick-rearing, and detection of DNA from the myctophid fish Krefftichthys anderssoni and amphipods became more common in samples collected in the later (crèche) stage. These trends followed those observed in the penguins' stomach contents. In euphausiid-specific clone libraries the proportion of sequences from the two dominant euphausiid prey species (Euphausia vallentini and Thysanoessa macrura) changed over the sampling period; again, this reflected the trend in the stomach content data. Analysis of prey sequences in universal clone libraries revealed a higher diversity of fish prey than identified in the stomachs, but non-fish prey were not well represented. The present study is one of the first to examine the full breadth of a predator's diet using DNA-based faecal analysis. We discuss methodological difficulties encountered and suggest possible refinements. Overall, the ability of the DNA-based approach to detect temporal variation in the diet of macaroni penguins indicates this non-invasive method will be generally useful for monitoring population-level dietary trends in seabirds.Keywords
This publication has 45 references indexed in Scilit:
- Quantitative analysis of prey DNA in pinniped faeces: potential to estimate diet composition?Conservation Genetics, 2006
- Prey-switching by Cassin’s auklet Ptychoramphus aleuticus reveals seasonal climate-related cycles of Euphausia pacifica and Thysanoessa spiniferaMarine Ecology Progress Series, 2006
- Effects of interdecadal climate variability on marine trophic interactions: rhinoceros auklets and their fish preyMarine Ecology Progress Series, 2006
- Group‐specific primers for amplifying DNA sequences that identify Amphipoda, Cephalopoda, Echinodermata, Gastropoda, Isopoda, Ostracoda and ThoracicaMolecular Ecology Notes, 2005
- Population of the Macaroni PenguinEudyptes Chrysolophusat Marion Island, 1994/95–2002/03, with Information on Breeding and DietAfrican Journal of Marine Science, 2003
- Non‐parametric multivariate analyses of changes in community structureAustralian Journal of Ecology, 1993
- Basic local alignment search toolJournal of Molecular Biology, 1990
- The Diet of the Royal PenguinEudyptes schlegeliat Macquarie IslandEmu - Austral Ornithology, 1988
- Analysis of Stomach Contents of Some Heard Island BirdsEmu - Austral Ornithology, 1954
- THE ASSESSMENT OF THE FOOD OF BIRDS*Ibis, 1948