CORRECTION article

Front. Mar. Sci., 04 September 2020

Sec. Marine Ecosystem Ecology

Volume 7 - 2020 | https://doi.org/10.3389/fmars.2020.00708

Corrigendum: Mesozooplankton and Micronekton Active Carbon Transport in Contrasting Eddies

  • 1. Department of Earth, Ocean and Atmospheric Sciences, University of British Columbia, Vancouver, BC, Canada

  • 2. Institute for the Oceans and Fisheries, University of British Columbia, Vancouver, BC, Canada

  • 3. Hakai Institute, Heriot Bay, BC, Canada

  • 4. Centre for Applications in Natural Resource Mathematics, The University of Queensland, St. Lucia, QLD, Australia

  • 5. Evolution and Ecology Research Centre, University of New South Wales Sydney, Sydney, NSW, Australia

  • 6. Sydney Institute of Marine Science, Mosman, NSW, Australia

In the original article, there was a mistake in the legend for Table S-3 as published. Units were not included in the original table legend. The correct legend appears below.

Table S-3

GroupSpeciesRegression
ChaetognathChaetognath1, 2CW = 0.0001352*TL3.1545*0.367
CrustaceanAmphipod1, 3CW = 10ˆ(2.717*log10(TL)−1.911)*0.345
CrustaceanDecapod1, 4CW = 10ˆ(3.787*log10(TL)−3.972)*0.435
CrustaceanEuphausiid1, 3CW = 10ˆ(3.23*log10(TL)−3.261)*0.419
CrustaceanIsopod1, 5, 6CW = 10ˆ(2.751*log10(TL)−1.69)*0.435
FishAlepisauridae7
FishAlepocephalidae8CW = 0.2*WW
FishAnoplogastridae7CW = 0.2*(0.00829*(SL)2.38)
FishBathylagidae7
FishBramidae8CW = 0.2*WW
FishBregmacerotidae7, 9, 10
FishCarangidae7CW = 10ˆ(2.8047*log10(TL)−4.6581)*0.2
FishCarapidae7CW = 10ˆ(2.8047*log10(TL)−4.6581)*0.2
FishCaristiidae7CW = 0.2*WW
FishCentrolophidae7CW = 10ˆ(2.8047*log10(TL)−4.6581)*0.2
FishCeratiidae7
FishCetomimidae7CW = 10ˆ(2.8047*log10(TL)−4.6581)*0.2
FishChaunacidae7CW = 10ˆ(2.8047*log10(TL)−4.6581)*0.2
FishChiasmodontidae7CW = 10ˆ(2.8047*log10(TL)−4.6581)*0.2
FishDalatiidae7, 9CW = (0.00363*(SL*0.1164)3.12)*84.7
FishDerichthyidae7
FishDiretmidae7
FishEmmelichthyidae7CW = 10ˆ(2.8047*log10(TL)−4.6581)*0.2
FishEpigonidae7
FishEvermannellidae7
FishGempylidae7, 9CW = (0.00363*(SL*0.1164)3.12)*84.7
FishGigantactinidae7
FishGonostomatidae9, 11CW = 10ˆ(2.945*log10(SL)−5.282)*0.053
FishGrammicolepididae7
FishHowellidae9CW =
FishLeptocephalus9CW = 10ˆ(1.857*log10(SL)−1.877)*0.0847
FishLinophrynidae7CW = 10ˆ(2.52*log10(SL)−1.593)*0.046
FishMacroramphosidae7
FishMelamphaidae9, 11CW = 10ˆ(3.259*log10(SL)−2.164)*0.039
FishMelanocetidae7CW = 10ˆ(2.52*log10(SL)−1.593)*0.046
FishMicrostomatidae7
FishMyctophidae9, 11CW = 10ˆ(2.902*log10(SL)−1.797)*0.092
FishNemichthyidae7CW = 10ˆ(1.857*log10(SL)−1.877)*0.0847
FishNomeidae7, 9
FishNotosudidae7
FishOpisthoproctidae8, 9CW = 10ˆ(2.16*log10(SL)−0.025)*0.0525
FishPhotostylus argenteus13CW = (0.0009*SL3.2857)*0.0847
FishParalepididae7, 9, 10CW = eˆ(ln(0.000002)+2.824*ln(SL*1.0482))*84.7
FishPhosichthyidae9, 11CW = 10ˆ(4.036*log10(SL)−3.418)*0.0847
FishPleuronectiformes7
FishRegalecidae7
FishSerrivomeridae13, 14, 15
FishSetarchidae7
FishSternoptychidae9, 11CW = 10ˆ(2.95*log10(SL)−1.52)*0.06
FishSternoptyx spp. 9, 11CW = 10ˆ(2.877*log10(SL)−1.08)*0.056
FishStomiidae9, 11CW = 10ˆ(2.52*log10(SL)−1.593)*0.046
FishTetraodontidae7
FishTrachipteridae7
FishTrichiuridae8, 9
FishUnidentified Fish7CW = 10ˆ(2.8047*log10(TL)−4.6581)*0.2
FishZeniontidae7
JellyfishJellyfish3, 16, 17CW = 10ˆ(2.767*log10(TL)−3.643)
MolluskCephalopod12, 14CW = 10ˆ(2.611*log10(TL)−3.5)*55.44
MolluskHeterpod18CW = (0.0888*TL2.161)*0.028
MolluskMollusk1, 3CW = 10ˆ(1.646*log10(TL)−0.915)*0.289
TunicatePyrosome19CW = (0.0013*TL2+0.0151*TL)*39.2
PolychaetePolychaete1, 3, 20CW = 10ˆ(1.798*log10(TL)−2.17)*0.37
References
1Kiørboe (2013)11Davison (2011)
2Feigenbaum (1979)12Lindsay (2003)
3Mizdalski (1988)13Pakhomov (Unpublished data)
4Podeswa (2012)14Villanueva and Guerra, (1991)
5Strong and Dabron (1979)15Alpoim et al., (2002)
6Defeo and Martinez (2003)16Haddad and Nogueira (2006)
7Froese et al., (2014)17Uye and Shimauchi (2005)
8Individual measurements in lab18Davis and Wiebe (1985)
9Childress et al., (1990)19Henschke et al. (2019)
10Bernardes and Rossi-Wongtschowski (2000)20Uye (1982)

Length to weight relationships used to calculate carbon weight (CW; in mg) for micronekton captured in the MIDOC.

Lengths are reported as either total length (TL) or standard length (SL) in millimeters.

Table S-3. Length to weight relationships used to calculate carbon weight (CW; in mg) for micronekton captured in the MIDOC. Lengths are reported as either total length (TL) or standard length (SL) in millimeters.

Additionally, there was a mistake in Table S-3 as published. We have re-configured some of the equations within the table to add clarity for those that wish to apply these equations with their own data. In the original table the wet weight to carbon conversions on some of the equations were improperly placed. The corrected Table S-3 appears below.

The authors apologize for these errors and state that they do not change the scientific conclusions of the article in any way. The original article has been updated.

Summary

Keywords

mesozooplankton, micronekton, southwest Pacific, diel vertical migration, active carbon transport

Citation

Kwong LE, Henschke N, Pakhomov EA, Everett JD and Suthers IM (2020) Corrigendum: Mesozooplankton and Micronekton Active Carbon Transport in Contrasting Eddies. Front. Mar. Sci. 7:708. doi: 10.3389/fmars.2020.00708

Received

01 July 2020

Accepted

04 August 2020

Published

04 September 2020

Volume

7 - 2020

Edited and reviewed by

Morten Hvitfeldt Iversen, Alfred Wegener Institute Helmholtz Centre for Polar and Marine Research (AWI), Germany

Updates

Copyright

*Correspondence: Lian E. Kwong

This article was submitted to Marine Ecosystem Ecology, a section of the journal Frontiers in Marine Science

Disclaimer

All claims expressed in this article are solely those of the authors and do not necessarily represent those of their affiliated organizations, or those of the publisher, the editors and the reviewers. Any product that may be evaluated in this article or claim that may be made by its manufacturer is not guaranteed or endorsed by the publisher.

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