Is African non‐annual killifish Fundulopanchax gardneri (Teleostei; Cyprinodontiformes; Nothobranchiidae) true non‐annual?

Author:

Borisov Vasily1ORCID,Shkil Fedor12ORCID,Seleznev Dmitry13ORCID,Smirnov Sergei1ORCID

Affiliation:

1. Laboratory of Evolutionary Morphology A.N. Severtsov Institute of Ecology and Evolution of Russian Academy of Sciences Moscow Russia

2. Laboratory of Postnatal Ontogeny N.K. Koltzov Institute of Developmental Biology of Russian Academy of Sciences Moscow Russia

3. Laboratory of Ecology of Aquatic Invertebrates I.D. Papanin Institute for Biology of Inland Waters of Russian Academy of Sciences Borok Russia

Abstract

AbstractBackgroundAnnual or seasonal killifishes (Cyprinodontiformes: Nothobranchiidae) are unique among fish in their ability to enter into developmental arrests (diapauses: DI, DII, and DIII). They have a short lifespan and their embryos are exceptionally tolerant to a variety of environmental stresses. These traits make them a popular model for studying vertebrate diapause, aging, stress tolerance, genome adaptation, and evolution. In such issues, in a comparative evolutionary framework, Fundulopanchax gardneri, a popular aquarium fish from Africa, is commonly used as a representative non‐annual model though its development is not studied in detail and whether it includes diapauses remains uncertain.ResultsWe described in detail for the first time embryonic development of F. gardneri and revealed it to resemble that in the undoubtedly annual Austrofundulus limnaeus killifish in displaying two developmental depressions. However, if compared with A. limnaeus, these developmental states look like “less intense” versions of DII and DIII rather than true diapauses.ConclusionsTo determine whether developmental depressions in F. gardneri represent “true” diapauses or only their functional equivalents, detailed studies of embryonic development of different killifish both annual and non‐annual are needed. Before that, acceptance of F. gardneri as a representative non‐annual fish seems premature.

Publisher

Wiley

Subject

Developmental Biology

Reference49 articles.

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3. ThompsonA BlackA HuangY et al.Deterministic shifts in molecular evolution correlate with convergence to annualism in killifishes.BioRxiv.2021. doi:10.1101/2021.08.09.455723

4. Vertebrate diapause preserves organisms long term through Polycomb complex members

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