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Arnaout, B.

Publications and source records attributed to Arnaout, B..

2 recordsLinked to original sources

Macroevolutionary shifts in post-hatching ontogeny and the origin of craniofacial disparity in fowl (Aves: Galloanserae)

Anseriformes (waterfowl) and Galliformes (landfowl) are among the worlds most recognisable groups of birds, together comprising the clade Galloanserae. Despite their close evolutionary relationship, the skulls of adult anseriforms and galliforms exhibit strikingly distinct morphologies, the developmental basis and evolutionary history of which is poorly understood. To illuminate the developmental and evolutionary underpinnings of cranial disparity between and within these major extant bird clades, we quantitatively investigated ontogenetic changes in cranial morphology across galloanseran phylogenetic diversity, focusing on the previously unexplored post-hatching interval during which adult morphology takes shape. Our results reveal the combined effects of multiple heterochronic shifts early in galloanseran evolutionary history including anseriform hypermorphosis, along with influential non-heterochronic changes leading to substantially more disparate ontogenetic trajectories--and greater cranial variability--in anseriforms than galliforms. Key galloanseran fossils help clarify the polarity of evolutionary shifts in cranial development through galloanseran phylogenetic history and demonstrate that extant galliform cranial morphology is more constrained and retains a more plesiomorphic morphology than that of anseriforms. Our work helps illuminate the developmental basis of the iconic differences in cranial form between waterfowl and landfowl and illustrates the importance of broad phylogenetic and ontogenetic sampling for clarifying patterns of post-hatching developmental divergence among major vertebrate clades.

evolutionary biology↗

Morphological criteria for staging near-hatching embryos of the domesticated Mallard (Anas platyrhynchos) and Swan Goose (Anser cygnoides)

Studying waterfowl embryology necessitates reliable and precise staging tables. These are descriptions of embryonic features throughout development from fertilisation to hatching stage, which are used to approximate the extent of embryonic development. Waterfowl staging tables have previously been established based on morphological features from fertilisation to approximately ten days before hatching. Embryonic changes over the final ten days of pre-hatching development have also been documented and proposed as useful staging criteria. However, the reliability of these changes as useful staging criteria across different waterfowl breeds has not been fully examined. To examine the reliability of these criteria-- which focus on size changes of the bill and middle toes--for staging near-hatching embryos, we examined twenty-seven Mallard and Swan Geese embryos and measured their beak and toe-length sizes. We compared our results with previously published data, and found that size variation across breeds within the same developmental stage is equivalent to within-breed variation across different stages, suggesting limited reliability of beak and middle toe length sizes for staging waterfowl embryos. Consequently, we devised novel staging criteria for waterfowl based on four easily measurable morphological traits and show that these criteria allow correct stage identification with over 70% accuracy. Our results highlight the importance of quantifying accuracy for developing reliable embryonic staging tables.

developmental biology↗