Matches in SemOpenAlex for { <https://semopenalex.org/work/W2789241552> ?p ?o ?g. }
- W2789241552 endingPage "196" @default.
- W2789241552 startingPage "181" @default.
- W2789241552 abstract "MEPS Marine Ecology Progress Series Contact the journal Facebook Twitter RSS Mailing List Subscribe to our mailing list via Mailchimp HomeLatest VolumeAbout the JournalEditorsTheme Sections MEPS 592:181-196 (2018) - DOI: https://doi.org/10.3354/meps12512 Trophic decoupling of mesozooplankton production and the pelagic planktivores sprat Sprattus sprattus and herring Clupea harengus in the Central Baltic Sea Matthias Bernreuther1,4,*, Janna Peters1, Christian Möllmann1, Jasmin Renz2, Jörg Dutz3, Jens-Peter Herrmann1, Axel Temming1 1Institute of Hydrobiology and Fisheries Science, University of Hamburg, 22767 Hamburg, Germany 2Senckenberg am Meer, German Center for Marine Biodiversity Research, 20146 Hamburg, Germany 3Leibniz Institute for Baltic Sea Research, 18119 Rostock, Germany 4Present address: Thünen Institute of Sea Fisheries, 22767 Hamburg, Germany *Corresponding author: matthias.bernreuther@thuenen.de ABSTRACT: Quantitative analysis of the predation impact of planktivores on zooplankton is essential for proper understanding of energy flow and trophic coupling in ecosystems. To quantify trophic dynamics between zooplankton and small pelagic fish in the Baltic Sea, we conducted a temporally resolved investigation on the diet, feeding and predation impact of the dominant planktivorous fish species sprat Sprattus sprattus L. and herring Clupea harengus L. in the Central Baltic Sea (Bornholm Basin). Bi-weekly to monthly coverage between April 2002 and November 2003 included net sampling of copepods, determination of predator stock size using hydroacoustics and trawl surveys, and extensive stomach content sampling. Herring and sprat were mainly zooplanktivorous, feeding on the calanoid copepods Temora longicornis, Pseudocalanus acuspes and Acartia spp. and, in summer, on the cladocerans Bosmina spp. and Podon spp. We observed temporally high predation impact of sprat and herring on T. longicornis and P. acuspes in April and May, when more than the production of these 2 copepod species (copepodite stages C1-6) was consumed (consumption/production [C/P] > 3.5). However, the impact on the population dynamics of both copepods was negligible. Likewise, the impact on Acartia spp. was considered negligible (C/P < 0.1). Integrated over the year, utilization of estimated copepod production by both clupeids was comparatively low, with only 18% of the annual production of T. longicornis and 36% of the annual production of P. acuspes consumed; the production of Acartia species (1.4%) and cladocerans (2.3%) was almost completely unused. Use of only 9% of the combined production of copepods and cladocerans indicates poor trophic coupling between mesozooplankton and pelagic planktivores in the Central Baltic Sea. KEY WORDS: Predation impact · Zooplantivores · Open pelagic · Consumption versus production · Competition Full text in pdf format PreviousNextCite this article as: Bernreuther M, Peters J, Möllmann C, Renz J, Dutz J, Herrmann JP, Temming A (2018) Trophic decoupling of mesozooplankton production and the pelagic planktivores sprat Sprattus sprattus and herring Clupea harengus in the Central Baltic Sea. Mar Ecol Prog Ser 592:181-196. https://doi.org/10.3354/meps12512 Export citation RSS - Facebook - Tweet - linkedIn Cited by Published in MEPS Vol. 592. Online publication date: March 29, 2018 Print ISSN: 0171-8630; Online ISSN: 1616-1599 Copyright © 2018 Inter-Research." @default.
- W2789241552 created "2018-03-29" @default.
- W2789241552 creator A5009868592 @default.
- W2789241552 creator A5017394236 @default.
- W2789241552 creator A5043104883 @default.
- W2789241552 creator A5050392765 @default.
- W2789241552 creator A5061838676 @default.
- W2789241552 creator A5064214629 @default.
- W2789241552 creator A5081945599 @default.
- W2789241552 date "2018-03-29" @default.
- W2789241552 modified "2023-09-27" @default.
- W2789241552 title "Trophic decoupling of mesozooplankton production and the pelagic planktivores sprat Sprattus sprattus and herring Clupea harengus in the Central Baltic Sea" @default.
- W2789241552 cites W102388460 @default.
- W2789241552 cites W117133074 @default.
- W2789241552 cites W1963653955 @default.
- W2789241552 cites W1967654840 @default.
- W2789241552 cites W1970479231 @default.
- W2789241552 cites W1976394577 @default.
- W2789241552 cites W1977843519 @default.
- W2789241552 cites W1982040401 @default.
- W2789241552 cites W1982457087 @default.
- W2789241552 cites W1984752790 @default.
- W2789241552 cites W1986842580 @default.
- W2789241552 cites W1988390317 @default.
- W2789241552 cites W1989978375 @default.
- W2789241552 cites W1990876147 @default.
- W2789241552 cites W1993129806 @default.
- W2789241552 cites W1993479109 @default.
- W2789241552 cites W1997730191 @default.
- W2789241552 cites W2004827430 @default.
- W2789241552 cites W2006840303 @default.
- W2789241552 cites W2007044690 @default.
- W2789241552 cites W2008091579 @default.
- W2789241552 cites W2009545215 @default.
- W2789241552 cites W2013550365 @default.
- W2789241552 cites W2015574998 @default.
- W2789241552 cites W2016685230 @default.
- W2789241552 cites W2016927947 @default.
- W2789241552 cites W2021650957 @default.
- W2789241552 cites W2023633889 @default.
- W2789241552 cites W2036053296 @default.
- W2789241552 cites W2053394707 @default.
- W2789241552 cites W2054563314 @default.
- W2789241552 cites W2057364931 @default.
- W2789241552 cites W2059433007 @default.
- W2789241552 cites W2059513733 @default.
- W2789241552 cites W2060212540 @default.
- W2789241552 cites W2063236099 @default.
- W2789241552 cites W2080769770 @default.
- W2789241552 cites W2082476651 @default.
- W2789241552 cites W2082776215 @default.
- W2789241552 cites W2087880103 @default.
- W2789241552 cites W2090661312 @default.
- W2789241552 cites W2090993408 @default.
- W2789241552 cites W2092590782 @default.
- W2789241552 cites W2094730411 @default.
- W2789241552 cites W2096295128 @default.
- W2789241552 cites W2097492601 @default.
- W2789241552 cites W2098876115 @default.
- W2789241552 cites W2104188330 @default.
- W2789241552 cites W2111056546 @default.
- W2789241552 cites W2116946539 @default.
- W2789241552 cites W2117225018 @default.
- W2789241552 cites W2121119770 @default.
- W2789241552 cites W2123386412 @default.
- W2789241552 cites W2126741981 @default.
- W2789241552 cites W2128018657 @default.
- W2789241552 cites W2128092399 @default.
- W2789241552 cites W2130701443 @default.
- W2789241552 cites W2140930419 @default.
- W2789241552 cites W2141316024 @default.
- W2789241552 cites W2142597494 @default.
- W2789241552 cites W2144260670 @default.
- W2789241552 cites W2145729265 @default.
- W2789241552 cites W2147945222 @default.
- W2789241552 cites W2152100187 @default.
- W2789241552 cites W2157821806 @default.
- W2789241552 cites W2162121833 @default.
- W2789241552 cites W2168838331 @default.
- W2789241552 cites W2170241130 @default.
- W2789241552 cites W2171303770 @default.
- W2789241552 cites W221014740 @default.
- W2789241552 cites W2285452918 @default.
- W2789241552 cites W2298938463 @default.
- W2789241552 cites W2319929461 @default.
- W2789241552 cites W2334256381 @default.
- W2789241552 cites W2398864242 @default.
- W2789241552 cites W2990688703 @default.
- W2789241552 cites W4231767152 @default.
- W2789241552 cites W4249375436 @default.
- W2789241552 doi "https://doi.org/10.3354/meps12512" @default.
- W2789241552 hasPublicationYear "2018" @default.
- W2789241552 type Work @default.
- W2789241552 sameAs 2789241552 @default.
- W2789241552 citedByCount "8" @default.
- W2789241552 countsByYear W27892415522018 @default.
- W2789241552 countsByYear W27892415522019 @default.
- W2789241552 countsByYear W27892415522020 @default.