The development of Xenopus tropicalis transgenic lines and their use in studying lens developmental timing in living embryos.
about
Enhancer trapping in zebrafish using the Sleeping Beauty transposonAn amphibian with ambition: a new role for Xenopus in the 21st century.Xenopus research: metamorphosed by genetics and genomicsBreeding based remobilization of Tol2 transposon in Xenopus tropicalisConvergence of a head-field selector Otx2 and Notch signaling: a mechanism for lens specificationDefining progressive stages in the commitment process leading to embryonic lens formation.Simple, fast, tissue-specific bacterial artificial chromosome transgenesis in Xenopus.Roles of ADAM13-regulated Wnt activity in early Xenopus eye development.Wnt/beta-catenin signaling has an essential role in the initiation of limb regeneration.Manipulating the Xenopus genome with transposable elements.BDNF promotes target innervation of Xenopus mandibular trigeminal axons in vivo.Different requirement for Wnt/β-catenin signaling in limb regeneration of larval and adult XenopuspTransgenesis: a cross-species, modular transgenesis resource.Transgenesis procedures in XenopusTagging muscle cell lineages in development and tail regeneration using Cre recombinase in transgenic Xenopus.Production of transgenic Xenopus laevis by restriction enzyme mediated integration and nuclear transplantation.Remobilization of Sleeping Beauty transposons in the germline of Xenopus tropicalis.Cellular and molecular mechanisms of regeneration in XenopusTol2: a versatile gene transfer vector in vertebrates.Transgenic Xenopus laevis embryos can be generated using phiC31 integrase.Decoding development in Xenopus tropicalis.A method for generating transgenic frog embryos.Origin of the adult intestinal stem cells induced by thyroid hormone in Xenopus laevis.Generating transgenic frog embryos by restriction enzyme mediated integration (REMI).Improved cre reporter transgenic Xenopus.Molecular and cellular aspects of amphibian lens regeneration.Ras-dva1 small GTPase regulates telencephalon development in Xenopus laevis embryos by controlling Fgf8 and Agr signaling at the anterior border of the neural plate.A conserved MRF4 promoter drives transgenic expression in Xenopus embryonic somites and adult muscle.Agr genes, missing in amniotes, are involved in the body appendages regeneration in frog tadpoles.
P2860
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P2860
The development of Xenopus tropicalis transgenic lines and their use in studying lens developmental timing in living embryos.
description
2000 nî lūn-bûn
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2000 թուականի Մայիսին հրատարակուած գիտական յօդուած
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2000 թվականի մայիսին հրատարակված գիտական հոդված
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2000年の論文
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2000年論文
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2000年論文
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2000年論文
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2000年論文
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2000年論文
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2000年论文
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name
The development of Xenopus tro ...... ntal timing in living embryos.
@ast
The development of Xenopus tro ...... ntal timing in living embryos.
@en
type
label
The development of Xenopus tro ...... ntal timing in living embryos.
@ast
The development of Xenopus tro ...... ntal timing in living embryos.
@en
prefLabel
The development of Xenopus tro ...... ntal timing in living embryos.
@ast
The development of Xenopus tro ...... ntal timing in living embryos.
@en
P2093
P1433
P1476
The development of Xenopus tro ...... ental timing in living embryos
@en
P2093
P304
P407
P577
2000-05-01T00:00:00Z