Highly efficient targeted mutagenesis in axolotl using Cas9 RNA-guided nuclease.
about
Applications of CRISPR-Cas systems in neuroscienceFrom Gene Targeting to Genome Editing: Transgenic animals applications and beyondThe axolotl limb blastema: cellular and molecular mechanisms driving blastema formation and limb regeneration in tetrapodsIdentification of Mutant Genes and Introgressed Tiger Salamander DNA in the Laboratory Axolotl, Ambystoma mexicanum.Insights into electrosensory organ development, physiology and evolution from a lateral line-enriched transcriptomeA CRISPR view of development.Initial characterization of the large genome of the salamander Ambystoma mexicanum using shotgun and laser capture chromosome sequencing.Applications of CRISPR-Cas9 mediated genome engineering.Targeted mutagenesis of aryl hydrocarbon receptor 2a and 2b genes in Atlantic killifish (Fundulus heteroclitus).Functional genetics for all: engineered nucleases, CRISPR and the gene editing revolutionCRISPR/Cas9-mediated mutagenesis in the sea lamprey Petromyzon marinus: a powerful tool for understanding ancestral gene functions in vertebrates.Regenerative biology of tendon: mechanisms for renewal and repairBudgett's frog (Lepidobatrachus laevis): A new amphibian embryo for developmental biology.Glycosyltransferases: mechanisms and applications in natural product development.Advances in Decoding Axolotl Limb Regeneration.Naming CRISPR alleles: endonuclease-mediated mutation nomenclature across speciesCRISPR applications in ophthalmologic genome surgery.Overview of CRISPR-Cas9 Biology.Seeing is believing.CRISPR-mediated genomic deletion of Sox2 in the axolotl shows a requirement in spinal cord neural stem cell amplification during tail regeneration.Non-model model organisms.Lineage tracing of genome-edited alleles reveals high fidelity axolotl limb regeneration.TALEN-mediated gene editing of the thrombospondin-1 locus in axolotl.Virtual Genome Walking across the 32 Gb Ambystoma mexicanum genome; assembling gene models and intronic sequence.[A method for introducing mutations into large vectors].
P2860
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P2860
Highly efficient targeted mutagenesis in axolotl using Cas9 RNA-guided nuclease.
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2014 nî lūn-bûn
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2014 թուականի Ապրիլին հրատարակուած գիտական յօդուած
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2014 թվականի ապրիլին հրատարակված գիտական հոդված
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2014年の論文
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2014年論文
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2014年論文
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2014年論文
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2014年論文
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2014年論文
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2014年论文
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name
Highly efficient targeted mutagenesis in axolotl using Cas9 RNA-guided nuclease.
@ast
Highly efficient targeted mutagenesis in axolotl using Cas9 RNA-guided nuclease.
@en
Highly efficient targeted mutagenesis in axolotl using Cas9 RNA-guided nuclease.
@nl
type
label
Highly efficient targeted mutagenesis in axolotl using Cas9 RNA-guided nuclease.
@ast
Highly efficient targeted mutagenesis in axolotl using Cas9 RNA-guided nuclease.
@en
Highly efficient targeted mutagenesis in axolotl using Cas9 RNA-guided nuclease.
@nl
prefLabel
Highly efficient targeted mutagenesis in axolotl using Cas9 RNA-guided nuclease.
@ast
Highly efficient targeted mutagenesis in axolotl using Cas9 RNA-guided nuclease.
@en
Highly efficient targeted mutagenesis in axolotl using Cas9 RNA-guided nuclease.
@nl
P2093
P2860
P356
P1433
P1476
Highly efficient targeted mutagenesis in axolotl using Cas9 RNA-guided nuclease.
@en
P2093
Andrew T Timberlake
Craig M Crews
G Parker Flowers
James R Monaghan
P2860
P304
P356
10.1242/DEV.105072
P407
P577
2014-04-24T00:00:00Z