Fish reproductive-energy output increases disproportionately with body size

Body size determines total reproductive-energy output. Most theories assume reproductive output is a fixed proportion of size, with respect to mass, but formal macroecological tests are lacking. Management based on that assumption risks underestimating the contribution of larger mothers to replenish...

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Published in:Science (American Association for the Advancement of Science) Vol. 360; no. 6389; p. 642
Main Authors: Barneche, Diego R, Robertson, D Ross, White, Craig R, Marshall, Dustin J
Format: Journal Article
Language:English
Published: United States 11.05.2018
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ISSN:1095-9203, 1095-9203
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Abstract Body size determines total reproductive-energy output. Most theories assume reproductive output is a fixed proportion of size, with respect to mass, but formal macroecological tests are lacking. Management based on that assumption risks underestimating the contribution of larger mothers to replenishment, hindering sustainable harvesting. We test this assumption in marine fishes with a phylogenetically controlled meta-analysis of the intraspecific mass scaling of reproductive-energy output. We show that larger mothers reproduce disproportionately more than smaller mothers in not only fecundity but also total reproductive energy. Our results reset much of the theory on how reproduction scales with size and suggest that larger mothers contribute disproportionately to population replenishment. Global change and overharvesting cause fish sizes to decline; our results provide quantitative estimates of how these declines affect fisheries and ecosystem-level productivity.
AbstractList Body size determines total reproductive-energy output. Most theories assume reproductive output is a fixed proportion of size, with respect to mass, but formal macroecological tests are lacking. Management based on that assumption risks underestimating the contribution of larger mothers to replenishment, hindering sustainable harvesting. We test this assumption in marine fishes with a phylogenetically controlled meta-analysis of the intraspecific mass scaling of reproductive-energy output. We show that larger mothers reproduce disproportionately more than smaller mothers in not only fecundity but also total reproductive energy. Our results reset much of the theory on how reproduction scales with size and suggest that larger mothers contribute disproportionately to population replenishment. Global change and overharvesting cause fish sizes to decline; our results provide quantitative estimates of how these declines affect fisheries and ecosystem-level productivity.
Body size determines total reproductive-energy output. Most theories assume reproductive output is a fixed proportion of size, with respect to mass, but formal macroecological tests are lacking. Management based on that assumption risks underestimating the contribution of larger mothers to replenishment, hindering sustainable harvesting. We test this assumption in marine fishes with a phylogenetically controlled meta-analysis of the intraspecific mass scaling of reproductive-energy output. We show that larger mothers reproduce disproportionately more than smaller mothers in not only fecundity but also total reproductive energy. Our results reset much of the theory on how reproduction scales with size and suggest that larger mothers contribute disproportionately to population replenishment. Global change and overharvesting cause fish sizes to decline; our results provide quantitative estimates of how these declines affect fisheries and ecosystem-level productivity.Body size determines total reproductive-energy output. Most theories assume reproductive output is a fixed proportion of size, with respect to mass, but formal macroecological tests are lacking. Management based on that assumption risks underestimating the contribution of larger mothers to replenishment, hindering sustainable harvesting. We test this assumption in marine fishes with a phylogenetically controlled meta-analysis of the intraspecific mass scaling of reproductive-energy output. We show that larger mothers reproduce disproportionately more than smaller mothers in not only fecundity but also total reproductive energy. Our results reset much of the theory on how reproduction scales with size and suggest that larger mothers contribute disproportionately to population replenishment. Global change and overharvesting cause fish sizes to decline; our results provide quantitative estimates of how these declines affect fisheries and ecosystem-level productivity.
Author White, Craig R
Robertson, D Ross
Marshall, Dustin J
Barneche, Diego R
Author_xml – sequence: 1
  givenname: Diego R
  orcidid: 0000-0002-4568-2362
  surname: Barneche
  fullname: Barneche, Diego R
  email: barnechedr@gmail.com
  organization: Centre for Geometric Biology, School of Biological Sciences, Monash University, Clayton, VIC 3800, Australia. barnechedr@gmail.com
– sequence: 2
  givenname: D Ross
  surname: Robertson
  fullname: Robertson, D Ross
  organization: Smithsonian Tropical Research Institute, Balboa, Panama
– sequence: 3
  givenname: Craig R
  orcidid: 0000-0002-0200-2187
  surname: White
  fullname: White, Craig R
  organization: Centre for Geometric Biology, School of Biological Sciences, Monash University, Clayton, VIC 3800, Australia
– sequence: 4
  givenname: Dustin J
  orcidid: 0000-0001-6651-6219
  surname: Marshall
  fullname: Marshall, Dustin J
  organization: Centre for Geometric Biology, School of Biological Sciences, Monash University, Clayton, VIC 3800, Australia
BackLink https://www.ncbi.nlm.nih.gov/pubmed/29748282$$D View this record in MEDLINE/PubMed
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Snippet Body size determines total reproductive-energy output. Most theories assume reproductive output is a fixed proportion of size, with respect to mass, but formal...
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SubjectTerms Animals
Body Size
Female
Fertility
Fisheries
Fishes - anatomy & histology
Fishes - physiology
Reproduction
Title Fish reproductive-energy output increases disproportionately with body size
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