A landmark-free analysis of the pelvic girdle in Sulawesi ricefishes (Adrianichthyidae): How 2D and 3D geometric morphometrics can complement each other in the analysis of a complex structure.

Adrianichthys methods pelvic brooding shape analysis teleost skeleton trait quantification

Journal

Ecology and evolution
ISSN: 2045-7758
Titre abrégé: Ecol Evol
Pays: England
ID NLM: 101566408

Informations de publication

Date de publication:
Oct 2023
Historique:
received: 19 05 2023
revised: 29 08 2023
accepted: 27 09 2023
medline: 20 10 2023
pubmed: 20 10 2023
entrez: 20 10 2023
Statut: epublish

Résumé

Geometric morphometrics (GM) enable the quantification of morphological variation on various scales. Recent technical advances allow analyzing complex three-dimensional shapes also in cases where landmark-based approaches are not appropriate. Pelvic girdle bones (basipterygia) of Sulawesi ricefishes are 3D structures that challenge traditional morphometrics. We hypothesize that the pelvic girdle of ricefishes experienced sex-biased selection pressures in species where females provide brood care by carrying fertilized eggs supported by elongated pelvic fins ("pelvic brooding"). We test this by comparing pelvic bone shapes of both sexes in species exhibiting pelvic brooding and the more common reproductive strategy "transfer brooding," by using landmark-free 2D and 3D GM, as well as qualitative shape descriptions. Both landmark-free approaches revealed significant interspecific pelvic bone variation in the lateral process, medial facing side of the pelvic bone, and overall external and internal wing shape. Within pelvic brooders, the three analyzed species are clearly distinct, while pelvic bones of the genus

Identifiants

pubmed: 37859830
doi: 10.1002/ece3.10613
pii: ECE310613
pmc: PMC10582673
doi:

Types de publication

Journal Article

Langues

eng

Pagination

e10613

Informations de copyright

© 2023 The Authors. Ecology and Evolution published by John Wiley & Sons Ltd.

Déclaration de conflit d'intérêts

The authors declare that they have no competing interests.

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Auteurs

Tobias Spanke (T)

Leibniz Institute for the Analysis of Biodiversity Change (LIB) Museum Koenig Bonn Bonn Germany.

Mariam Gabelaia (M)

Leibniz Institute for the Analysis of Biodiversity Change (LIB) Museum Koenig Bonn Bonn Germany.

Jana M Flury (JM)

Leibniz Institute for the Analysis of Biodiversity Change (LIB) Museum Koenig Bonn Bonn Germany.
Department of Environmental Sciences University of Basel Basel Switzerland.

Leon Hilgers (L)

Leibniz Institute for the Analysis of Biodiversity Change (LIB) Museum Koenig Bonn Bonn Germany.
LOEWE-Zentrum für Translationale Biodiversitätsgenomik Frankfurt Germany.

Letha Louisiana Wantania (LL)

Leibniz Institute for the Analysis of Biodiversity Change (LIB) Museum Koenig Bonn Bonn Germany.
Faculty of Fisheries and Marine Science Sam Ratulangi University Manado Indonesia.

Bernhard Misof (B)

Leibniz Institute for the Analysis of Biodiversity Change (LIB) Museum Koenig Bonn Bonn Germany.

Benjamin Wipfler (B)

Leibniz Institute for the Analysis of Biodiversity Change (LIB) Museum Koenig Bonn Bonn Germany.

Daisy Wowor (D)

Museum Zoologicum Bogoriense, Research Center for Biosystematics and Evolution National Research and Innovation Agency (BRIN) Cibinong Indonesia.

Daniel F Mokodongan (DF)

Museum Zoologicum Bogoriense, Research Center for Biosystematics and Evolution National Research and Innovation Agency (BRIN) Cibinong Indonesia.

Fabian Herder (F)

Leibniz Institute for the Analysis of Biodiversity Change (LIB) Museum Koenig Bonn Bonn Germany.

Julia Schwarzer (J)

Leibniz Institute for the Analysis of Biodiversity Change (LIB) Museum Koenig Bonn Bonn Germany.

Classifications MeSH