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Macroevolution of Steep Interspecific Metabolic Allometry in an Old Insect Order

  • Daniel Schönberger
  • , Moa Metz
  • , Masahito Tsuboi
  • , Giuseppe Bianco
  • , Zachary C. DeVries
  • , Andreas Nord
  • , Erik I. Svensson

Producción científica: Letterrevisión exhaustiva

Resumen

Endotherms exhibit metabolic allometric slopes of 0.75, which were long viewed as evolutionary constraints but which are increasingly questioned. In insects, allometric relationships between body size and metabolism are understudied. We used comparative phylogenetic methods to investigate macroevolution of metabolic allometry in Odonata (dragonflies and damselflies), an insect group with a unique ecology and dramatic macroevolution of body size. We found an interspecific allometric slope close to one (isometry). Metabolic rates evolved gradually with a weak pullback force and multiple shifts in metabolic optima, body size and flight behaviour. Cell size, nucleus size and body surface area did not explain this steep allometric slope. Instead, metabolic isometry likely reflects the high aerobic demands of flight and evolutionary increases in body size via cell numbers rather than cell size. Our results challenge traditional allometric theories and suggest that metabolic allometries can and do evolve, with far-reaching implications for insect size evolution.

Idioma originalEnglish
Número de artículoe70399
Número de páginas14
PublicaciónEcology Letters
Volumen29
N.º5
DOI
EstadoPublished - may 2026

Nota bibliográfica

Publisher Copyright:
© 2026 The Author(s). Ecology Letters published by John Wiley & Sons Ltd.

Financiación

This work was financially supported by the Swedish Research Council (“Vetenskapsrådet”: grants no. 2020 03123 and 2024 03965 to E.I.S. and no. 2020 04686 to A.N.), “Sven och Lilly Lawskis Fond för Naturvetenskaplig Forskning”, to M.M. and “Lunds Djurskyddsfond” to E.I.S. We thank Henrik Frietsch, Sofie Nilén, Karolina Pehrson, Sofia Haley, Sofìa Torres and other interns who helped with fieldwork, James H. Brown for comments on a draft of this manuscript, and Josef Uyeda for statistical guidance with bayou. We acknowledge the Lund Stem Cell Center FACS Facility, 3D Laboratory Biology, and Lund University Bioimaging Centre for providing experimental resources. We thank Anna Fossum, Marie Sydoff and Jonas Ahlstedt for their help with cellular measurements, CT imaging and 3D modelling of Odonata, respectively. This work was financially supported by the Swedish Research Council (“Vetenskapsrådet”: grants no. 2020 03123 and 2024 03965 to E.I.S. and no. 2020 04686 to A.N.), “Sven och Lilly Lawskis Fond för Naturvetenskaplig Forskning”, to M.M. and “Lunds Djurskyddsfond” to E.I.S.

FinanciadoresNúmero del financiador
3D Laboratory Biology
Sven och Lilly Lawskis Fond för Naturvetenskaplig Forskning
Lund Stem Cell Center
Lund University Bioimaging Centre
Vetenskapsrådet2020 03123, 2024 03965, 2020 04686

    ASJC Scopus subject areas

    • Ecology, Evolution, Behavior and Systematics

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