High occurrence of jellyfish predation by black‐browed and Campbell albatross identified by DNA metabarcoding

Высокая частота хищничества на медузах у чернобрового и кемпбеллова альбатросов, выявленная методом ДНК-метабаркодирования
Julie C. McInnes, Rachael Alderman, Mary‐Anne Lea, Ben Raymond, Bruce E. Deagle, Richard A. Phillips, Andrew Stanworth, David R. Thompson, Paulo Catry, Henri Weimerskirch, Cristián G. Suazo, Michaël Gras, Simon Jarman
2017-07-22

Campbell albatrossDNA metabarcodingblack-browed albatrossgelatinous zooplanktonjellyfish predation
Gelatinous zooplankton are a large component of the animal biomass in all marine environments, but are considered to be uncommon in the diet of most marine top predators. However, the diets of key predator groups like seabirds have conventionally been assessed from stomach content analyses, which cannot detect most gelatinous prey. As marine top predators are used to identify changes in the overall species composition of marine ecosystems, such biases in dietary assessment may impact our detection of important ecosystem regime shifts. We investigated albatross diet using DNA metabarcoding of scats to assess the prevalence of gelatinous zooplankton consumption by two albatross species, one of which is used as an indicator species for ecosystem monitoring. Black-browed and Campbell albatross scats were collected from eight breeding colonies covering the circumpolar range of these birds over two consecutive breeding seasons. Fish was the main dietary item at most sites; however, cnidarian DNA, primarily from scyphozoan jellyfish, was present in 42% of samples overall and up to 80% of samples at some sites. Jellyfish was detected during all breeding stages and consumed by adults and chicks. Trawl fishery catches of jellyfish near the Falkland Islands indicate a similar frequency of jellyfish occurrence in albatross diets in years of high and low jellyfish availability, suggesting jellyfish consumption may be selective rather than opportunistic. Warmer oceans and overfishing of finfish are predicted to favour jellyfish population increases, and we demonstrate here that dietary DNA metabarcoding enables measurements of the contribution of gelatinous zooplankton to the diet of marine predators.
1
Cnidarian DNA, primarily from scyphozoan jellyfish, occurred in 42% of samples overall and up to 80% at some colonies.
2
DNA metabarcoding of scat revealed frequent jellyfish consumption by black-browed and Campbell albatrosses, overcoming stomach-content detection bias.
3
Dietary DNA metabarcoding can quantify gelatinous zooplankton contributions to marine predator diets and improve ecosystem monitoring under potential jellyfish population increases.
4
Jellyfish were consumed across all breeding stages by both adult albatrosses and chicks, while fish remained the main dietary item at most sites.
5
Similar jellyfish occurrence in diets during years of high and low local availability suggests consumption may be selective rather than opportunistic.

Black-browed and Campbell albatrosses and their diets, with emphasis on gelatinous zooplankton prey

The prevalence, timing, and selectivity of jellyfish consumption by albatrosses across breeding stages, colonies, and seasons

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2017-07-22
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Julie C. McInnes
Rachael Alderman
Mary‐Anne Lea
Ben Raymond
Bruce E. Deagle
Richard A. Phillips
Andrew Stanworth
David R. Thompson
Paulo Catry
Henri Weimerskirch
Cristián G. Suazo
Michaël Gras
Simon Jarman
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