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zadetkov: 13
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  • Fin-fold development in pad... Fin-fold development in paddlefish and catshark and implications for the evolution of the autopod
    Tulenko, Frank J.; Massey, James L.; Holmquist, Elishka ... Proceedings of the Royal Society. B, Biological sciences, 05/2017, Letnik: 284, Številka: 1855
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    The evolutionary origin of the autopod involved a loss of the fin-fold and associated dermal skeleton with a concomitant elaboration of the distal endoskeleton to form a wrist and digits. ...
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  • Bones of contention: skelet... Bones of contention: skeletal patterning across the fin-to-limb transition
    Tulenko, Frank J.; Currie, Peter D. Cell, 02/2021, Letnik: 184, Številka: 4
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    The fin-to-limb transition has long fascinated evolutionary biologists, but a unifying theory as to its developmental origins has remained elusive. New work by Hawkins and colleagues demonstrates the ...
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  • Low mutation rate in epaule... Low mutation rate in epaulette sharks is consistent with a slow rate of evolution in sharks
    Sendell-Price, Ashley T; Tulenko, Frank J; Pettersson, Mats ... Nature communications, 10/2023, Letnik: 14, Številka: 1
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    Sharks occupy diverse ecological niches and play critical roles in marine ecosystems, often acting as apex predators. They are considered a slow-evolving lineage and have been suggested to exhibit ...
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  • An Fgf-Shh positive feedbac... An Fgf-Shh positive feedback loop drives growth in developing unpaired fins
    Hawkins, M Brent; Jandzik, David; Tulenko, Frank J ... Proceedings of the National Academy of Sciences, 03/2022, Letnik: 119, Številka: 10
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    The origin and diversification of appendage types is a central question in vertebrate evolution. Understanding the genetic mechanisms that underlie fin and limb development can reveal relationships ...
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  • HoxD expression in the fin-... HoxD expression in the fin-fold compartment of basal gnathostomes and implications for paired appendage evolution
    Tulenko, Frank J; Augustus, Gaius J; Massey, James L ... Scientific reports, 03/2016, Letnik: 6, Številka: 1
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    The role of Homeobox transcription factors during fin and limb development have been the focus of recent work investigating the evolutionary origin of limb-specific morphologies. Here we characterize ...
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  • A median fin derived from t... A median fin derived from the lateral plate mesoderm and the origin of paired fins
    Tzung, Keh-Weei; Lalonde, Robert L; Prummel, Karin D ... Nature (London), 06/2023, Letnik: 618, Številka: 7965
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    The development of paired appendages was a key innovation during evolution and facilitated the aquatic to terrestrial transition of vertebrates. Largely derived from the lateral plate mesoderm (LPM), ...
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  • Body wall development in la... Body wall development in lamprey and a new perspective on the origin of vertebrate paired fins
    Tulenko, Frank J.; McCauley, David W.; MacKenzie, Ethan L. ... Proceedings of the National Academy of Sciences - PNAS, 07/2013, Letnik: 110, Številka: 29
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    Classical hypotheses regarding the evolutionary origin of paired appendages propose transformation of precursor structures (gill arches and lateral fin folds) into paired fins. During development, ...
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  • 3D reconstructions of quail... 3D reconstructions of quail–chick chimeras provide a new fate map of the avian scapula
    Shearman, Rebecca M.; Tulenko, Frank J.; Burke, Ann C. Developmental biology, 07/2011, Letnik: 355, Številka: 1
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    Limbed vertebrates have functionally integrated postcranial axial and appendicular systems derived from two distinct populations of embryonic mesoderm. The axial skeletal elements arise from the ...
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  • Making teeth to order: cons... Making teeth to order: conserved genes reveal an ancient molecular pattern in paddlefish (Actinopterygii)
    Smith, Moya M.; Johanson, Zerina; Butts, Thomas ... Proceedings of the Royal Society. B, Biological sciences, 04/2015, Letnik: 282, Številka: 1805
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    Ray-finned fishes (Actinopterygii) are the dominant vertebrate group today (+30 000 species, predominantly teleosts), with great morphological diversity, including their dentitions. How dental ...
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  • Formation of the chondrocra... Formation of the chondrocranium of Trachemys scripta (Reptilia: Testudines: Emydidae) and a comparison with other described turtle taxa
    Tulenko, Frank J.; Sheil, Christopher A. Journal of morphology (1931), 02/2007, Letnik: 268, Številka: 2
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    Few descriptions of the formation of the chelonian chondrocranium exist. Herein, developmental stages critical to the formation of the chondrocranium of the Red‐eared Slider, Trachemys scripta ...
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zadetkov: 13

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