Results 11 to 20 of about 7,947 (216)

HoxGenes and Chordate Evolution [PDF]

open access: yesDevelopmental Biology, 1996
Hox genes are implicated in the control of axial patterning during embryonic development of many, perhaps all, animals. Here we review recent data on Hox gene diversity, genomic organization, and embryonic expression in chordates (including tunicates, amphioxus, hagfish, lampreys, teleosts) plus their putative sister group, the hemichordates.
Holland, Peter W.H.   +1 more
openaire   +3 more sources

Establishment of lateral organ asymmetries in the invertebrate chordate, Ciona intestinalis [PDF]

open access: yesEvoDevo, 2017
Background The evolutionary emergence and diversification of the chordates appear to involve dramatic changes in organ morphogenesis along the left/right axis. However, the ancestral chordate mechanism for establishing lateral asymmetry remains ambiguous.
Karl Palmquist, Brad Davidson
doaj   +3 more sources

The Chordate Proteome History Database

open access: yesEvolutionary Bioinformatics, 2012
The chordate proteome history database ( http://ioda.univ-provence.fr ) comprises some 20,000 evolutionary analyses of proteins from chordate species. Our main objective was to characterize and study the evolutionary histories of the chordate proteome, and in particular to detect genomic events and automatic functional searches.
Levasseur, Anthony   +6 more
openaire   +6 more sources

Stemness Activity Underlying Whole Brain Regeneration in a Basal Chordate [PDF]

open access: yesCells, 2022
Understanding how neurons regenerate following injury remains a central challenge in regenerative medicine. Adult mammals have a very limited ability to regenerate new neurons in the central nervous system (CNS). In contrast, the basal chordate Polycarpa
Tal Gordon   +9 more
doaj   +2 more sources

Chordate origins and evolution [PDF]

open access: yesgenesis, 2008
AbstractNo abastract.
Billie J, Swalla, José, Xavier-Neto
openaire   +2 more sources

Evolution of the role of RA and FGF signals in the control of somitogenesis in chordates [PDF]

open access: yes, 2015
The laboratory of HE is supported by the ANR BLAN 1716 01. IMLS´s laboratory is currently supported by MASTS (Marine Alliance for Science and Technology Scotland).During vertebrate development, the paraxial mesoderm becomes segmented, forming somites ...
Angel R de Lera   +14 more
core   +2 more sources

Hemichordates and the origin of chordates [PDF]

open access: yesCurrent Opinion in Genetics & Development, 2005
Hemichordates, the phylum of bilateral animals most closely related to chordates, could reveal the evolutionary origins of chordate traits such as the nerve cord, notochord, gill slits and tail. The anteroposterior maps of gene expression domains for 38 genes of chordate neural patterning are highly similar for hemichordates and chordates, even though ...
John, Gerhart   +2 more
openaire   +2 more sources

Evolutionary patterns of RNA-based duplication in non-mammalian chordates. [PDF]

open access: yesPLoS ONE, 2011
The role of RNA-based duplication, or retroposition, in the evolution of new gene functions in mammals, plants, and Drosophila has been widely reported. However, little is known about RNA-based duplication in non-mammalian chordates.
Ming Chen   +9 more
doaj   +1 more source

The chordate ParaHox cluster [PDF]

open access: yesCurrent Biology, 2005
Document S1. Supplemental Data and Figures.xDownload (.3 MB ) Document S1. Supplemental Data and Figures.
Ferrier, David E.K.   +5 more
openaire   +2 more sources

of Fibronectin contributes to notochord intercalation in the invertebrate chordate, Ciona intestinalis

open access: yes, 2016
of Fibronectin contributes to notochord intercalation in the invertebrate chordate, Ciona ...
Fernando Segade (13363)   +4 more
core   +6 more sources

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