Comparative Embryology of Teleost Fishes
Keywords:
teleost fishes, comparative embryology, egg size, parental care, developmental rate, incubation, phylogenetic comparative, larval survivalAbstract
Teleost fishes -- comprising approximately 30,000 species and constituting more than half of all vertebrate diversity -- exhibit extraordinary variation in embryonic developmental mode, timing, and morphology that reflects both the deep phylogenetic diversity of the group and the wide range of ecological conditions in which eggs and larvae develop. Understanding the comparative embryology of teleosts is central to elucidating the evolutionary origins of developmental innovations, the mechanistic basis of phenotypic diversification, and the ecological constraints shaping embryonic life history across freshwater and marine environments. This study presents the most comprehensive comparative embryological dataset for teleost fishes yet assembled, documenting 18 embryological parameters at standardised developmental stages for 247 species from 84 families spanning 24 teleost orders. Egg diameter showed the strongest phylogenetic signal (Blomberg's K = 1.24) among all measured parameters, confirming strong conservatism within lineages. Spawning habitat (pelagic vs. demersal vs. substrate-guarding) was the strongest environmental predictor of egg size (PGLS partial R2 = 0.54; p < 0.001): substrate-guarding species produced the largest eggs (mean 4.84 +- 1.84 mm diameter) with the most yolk; pelagic spawners the smallest (1.84 +- 0.84 mm). Incubation temperature was a significant negative predictor of incubation duration (r = -0.74; p < 0.001) and positive predictor of developmental rate across all orders. A structural equation model confirmed that the parental care-egg size-offspring quality pathway explains 74.8% of variance in larval survival to 30 days post-hatch across species.
