Literature DB >> 28539509

Fin-fold development in paddlefish and catshark and implications for the evolution of the autopod.

Frank J Tulenko1,2, James L Massey3, Elishka Holmquist1, Gabriel Kigundu1, Sarah Thomas1, Susan M E Smith1, Sylvie Mazan4, Marcus C Davis5.   

Abstract

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. Developmental studies, primarily from teleosts and amniotes, suggest a model for appendage evolution in which a delay in the AER-to-fin-fold conversion fuelled endoskeletal expansion by prolonging the function of AER-mediated regulatory networks. Here, we characterize aspects of paired fin development in the paddlefish Polyodon spathula (a non-teleost actinopterygian) and catshark Scyliorhinus canicula (chondrichthyan) to explore aspects of this model in a broader phylogenetic context. Our data demonstrate that in basal gnathostomes, the autopod marker HoxA13 co-localizes with the dermoskeleton component And1 to mark the position of the fin-fold, supporting recent work demonstrating a role for HoxA13 in zebrafish fin ray development. Additionally, we show that in paddlefish, the proximal fin and fin-fold mesenchyme share a common mesodermal origin, and that components of the Shh/LIM/Gremlin/Fgf transcriptional network critical to limb bud outgrowth and patterning are expressed in the fin-fold with a profile similar to that of tetrapods. Together these data draw contrast with hypotheses of AER heterochrony and suggest that limb-specific morphologies arose through evolutionary changes in the differentiation outcome of conserved early distal patterning compartments.
© 2017 The Author(s).

Entities:  

Keywords:  AER; HoxA; autopod; catshark; fin-fold; paddlefish

Mesh:

Substances:

Year:  2017        PMID: 28539509      PMCID: PMC5454254          DOI: 10.1098/rspb.2016.2780

Source DB:  PubMed          Journal:  Proc Biol Sci        ISSN: 0962-8452            Impact factor:   5.349


  79 in total

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2.  Modeling digits. Digit patterning is controlled by a Bmp-Sox9-Wnt Turing network modulated by morphogen gradients.

Authors:  J Raspopovic; L Marcon; L Russo; J Sharpe
Journal:  Science       Date:  2014-08-01       Impact factor: 47.728

3.  Diffusible signals and epigenetic timing cooperate in late proximo-distal limb patterning.

Authors:  Alberto Roselló-Díez; Carlos G Arques; Irene Delgado; Giovanna Giovinazzo; Miguel Torres
Journal:  Development       Date:  2014-03-05       Impact factor: 6.868

4.  Initiation of proximal-distal patterning in the vertebrate limb by signals and growth.

Authors:  Kimberly L Cooper; Jimmy Kuang-Hsien Hu; Derk ten Berge; Marian Fernandez-Teran; Maria A Ros; Clifford J Tabin
Journal:  Science       Date:  2011-05-27       Impact factor: 47.728

5.  Fin development in a cartilaginous fish and the origin of vertebrate limbs.

Authors:  Mikiko Tanaka; Andrea Münsterberg; W Gary Anderson; Alan R Prescott; Neil Hazon; Cheryll Tickle
Journal:  Nature       Date:  2002-04-04       Impact factor: 49.962

6.  Involvement of T-box genes Tbx2-Tbx5 in vertebrate limb specification and development.

Authors:  J J Gibson-Brown; S I Agulnik; L M Silver; L Niswander; V E Papaioannou
Journal:  Development       Date:  1998-07       Impact factor: 6.868

7.  trimAl: a tool for automated alignment trimming in large-scale phylogenetic analyses.

Authors:  Salvador Capella-Gutiérrez; José M Silla-Martínez; Toni Gabaldón
Journal:  Bioinformatics       Date:  2009-06-08       Impact factor: 6.937

8.  Tbx2 terminates shh/fgf signaling in the developing mouse limb bud by direct repression of gremlin1.

Authors:  Henner F Farin; Timo H-W Lüdtke; Martina K Schmidt; Susann Placzko; Karin Schuster-Gossler; Marianne Petry; Vincent M Christoffels; Andreas Kispert
Journal:  PLoS Genet       Date:  2013-04-25       Impact factor: 5.917

9.  A shift in anterior-posterior positional information underlies the fin-to-limb evolution.

Authors:  Koh Onimaru; Shigehiro Kuraku; Wataru Takagi; Susumu Hyodo; James Sharpe; Mikiko Tanaka
Journal:  Elife       Date:  2015-08-18       Impact factor: 8.140

10.  The fin-to-limb transition as the re-organization of a Turing pattern.

Authors:  Koh Onimaru; Luciano Marcon; Marco Musy; Mikiko Tanaka; James Sharpe
Journal:  Nat Commun       Date:  2016-05-23       Impact factor: 14.919

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  12 in total

1.  Fgf-signaling is compartmentalized within the mesenchyme and controls proliferation during salamander limb development.

Authors:  Sruthi Purushothaman; Ahmed Elewa; Ashley W Seifert
Journal:  Elife       Date:  2019-09-20       Impact factor: 8.140

2.  Anatomy and development of the pectoral fin vascular network in the zebrafish.

Authors:  Scott M Paulissen; Daniel M Castranova; Shlomo M Krispin; Margaret C Burns; Javier Menéndez; Jesús Torres-Vázquez; Brant M Weinstein
Journal:  Development       Date:  2022-03-04       Impact factor: 6.862

3.  Effects of fin fold mesenchyme ablation on fin development in zebrafish.

Authors:  Robert L Lalonde; Marie-Andrée Akimenko
Journal:  PLoS One       Date:  2018-02-08       Impact factor: 3.240

Review 4.  Problems in Fish-to-Tetrapod Transition: Genetic Expeditions Into Old Specimens.

Authors:  Thomas W P Wood; Tetsuya Nakamura
Journal:  Front Cell Dev Biol       Date:  2018-07-16

5.  Developmental hourglass and heterochronic shifts in fin and limb development.

Authors:  Koh Onimaru; Kaori Tatsumi; Chiharu Tanegashima; Mitsutaka Kadota; Osamu Nishimura; Shigehiro Kuraku
Journal:  Elife       Date:  2021-02-09       Impact factor: 8.140

6.  The role of HoxA11 and HoxA13 in the evolution of novel fin morphologies in a representative batoid (Leucoraja erinacea).

Authors:  Shannon N Barry; Karen D Crow
Journal:  Evodevo       Date:  2017-12-01       Impact factor: 2.250

7.  Expression of meis and hoxa11 in dipnoan and teleost fins provides new insights into the evolution of vertebrate appendages.

Authors:  Fernanda Langellotto; Maria Fiorentino; Elena De Felice; Luigi Caputi; Valeria Nittoli; Jean M P Joss; Paolo Sordino
Journal:  Evodevo       Date:  2018-04-27       Impact factor: 2.250

8.  A staging table for the embryonic development of the brownbanded bamboo shark (Chiloscyllium punctatum).

Authors:  Koh Onimaru; Fumio Motone; Itsuki Kiyatake; Kiyonori Nishida; Shigehiro Kuraku
Journal:  Dev Dyn       Date:  2018-03-10       Impact factor: 3.780

Review 9.  Developmental constraints on fin diversity.

Authors:  Alyssa Enny; Kathleen Flaherty; Shunsuke Mori; Natalie Turner; Tetsuya Nakamura
Journal:  Dev Growth Differ       Date:  2020-06-01       Impact factor: 2.053

10.  Pattern of fin rays along the antero-posterior axis based on their connection to distal radials.

Authors:  Hiroki Hamada; Toshiaki Uemoto; Yoshitaka Tanaka; Yuki Honda; Keiichi Kitajima; Tetsuya Umeda; Atsushi Kawakami; Minori Shinya; Koichi Kawakami; Koji Tamura; Gembu Abe
Journal:  Zoological Lett       Date:  2019-09-18       Impact factor: 2.836

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