PiggyBac transgenic strategies in the developing chicken spinal cord
about
A synthetic biology approach identifies the mammalian UPR RNA ligase RtcBPyroTRF-ID: a novel bioinformatics methodology for the affiliation of terminal-restriction fragments using 16S rRNA gene pyrosequencing dataProteomics analysis reveals overlapping functions of clustered protocadherins.Contribution of tumor heterogeneity in a new animal model of CNS tumors.Pogostick: a new versatile piggyBac vector for inducible gene over-expression and down-regulation in emerging model systems.PDCD10/CCM3 acts downstream of {gamma}-protocadherins to regulate neuronal survival.Precise marker excision system using an animal-derived piggyBac transposon in plants.A novel piggyBac transposon inducible expression system identifies a role for AKT signalling in primordial germ cell migrationpiggyBac transposition into primordial germ cells is an efficient tool for transgenesis in chickens.TrkB downregulation is required for dendrite retraction in developing neurons of chicken nucleus magnocellularis.Genetic modification of chicken germ cells.Electroporation of the hindbrain to trace axonal trajectories and synaptic targets in the chick embryoFate mapping by piggyBac transposase reveals that neocortical GLAST+ progenitors generate more astrocytes than Nestin+ progenitors in rat neocortexA method for stable transgenesis of radial glia lineage in rat neocortex by piggyBac mediated transposition.Size matters: versatile use of PiggyBac transposons as a genetic manipulation tool.Increasing doublecortin expression promotes migration of human embryonic stem cell-derived neuronsA regulatory sequence from the retinoid X receptor γ gene directs expression to horizontal cells and photoreceptors in the embryonic chicken retina.Rapid and efficient gene delivery into the adult mouse brain via focal electroporation.Sensory regulation of spontaneous limb movements in the midstage embryonic chick.RNA-Seq analysis of differential gene expression in electroporated chick embryonic spinal cord.A 'tool box' for deciphering neuronal circuits in the developing chick spinal cord.Molecular cloning and characterization of chicken neuronal intermediate filament protein α-internexin.The method of chicken whole embryo culture using the eggshell windowing, surrogate eggshell, and ex-ovo culture system.Sequence-specific DNA binding activity of the cross-brace zinc finger motif of the piggyBac transposase.Optogenetic regulation of leg movement in midstage chick embryos through peripheral nerve stimulation.Efficient production of transgenic chickens based on piggyBac.Sustained Wnt/β-catenin signalling causes neuroepithelial aberrations through the accumulation of aPKC at the apical pole.Applications of Gene Editing in Chickens: A New Era Is on the Horizon
P2860
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P2860
PiggyBac transgenic strategies in the developing chicken spinal cord
description
2009 nî lūn-bûn
@nan
2009年の論文
@ja
2009年学术文章
@wuu
2009年学术文章
@zh-cn
2009年学术文章
@zh-hans
2009年学术文章
@zh-my
2009年学术文章
@zh-sg
2009年學術文章
@yue
2009年學術文章
@zh
2009年學術文章
@zh-hant
name
PiggyBac transgenic strategies in the developing chicken spinal cord
@en
PiggyBac transgenic strategies in the developing chicken spinal cord.
@nl
type
label
PiggyBac transgenic strategies in the developing chicken spinal cord
@en
PiggyBac transgenic strategies in the developing chicken spinal cord.
@nl
prefLabel
PiggyBac transgenic strategies in the developing chicken spinal cord
@en
PiggyBac transgenic strategies in the developing chicken spinal cord.
@nl
P2093
P2860
P356
P1476
PiggyBac transgenic strategies in the developing chicken spinal cord
@en
P2093
Chengyi Lin
Xiaozhong Wang
P2860
P356
10.1093/NAR/GKP686
P407
P577
2009-11-01T00:00:00Z