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A Tissue-Mapped Axolotl De Novo Transcriptome Enables Identification of Limb Regeneration Factors

Cell Reports · 2017 · Vol. 18(3) · pp. 762–776
Donald M. BryantK.A. JohnsonTia DiTommasoTimothy L. TickleMatthew Brian CougerDuygu Payzin‐DogruTae J. LeeNicholas D. LeighTzu‐Hsing KuoFrancis G. DavisJoel BatemanSevara BryantAnna R. GuzikowskiStephanie TsaiSteven CoyneWilliam W. YeRobert M. FreemanLeonid PeshkinClifford J. TabinAviv RegevBrian J. HaasJessica L. Whited

Abstract

Mammals have extremely limited regenerative capabilities; however, axolotls are profoundly regenerative and can replace entire limbs. The mechanisms underlying limb regeneration remain poorly understood, partly because the enormous and incompletely sequenced genomes of axolotls have hindered the study of genes facilitating regeneration. We assembled and annotated a de novo transcriptome using RNA-sequencing profiles for a broad spectrum of tissues that is estimated to have near-complete sequence information for 88% of axolotl genes. We devised expression analyses that identified the axolotl orthologs of cirbp and kazald1 as highly expressed and enriched in blastemas. Using morpholino anti-sense oligonucleotides, we find evidence that cirbp plays a cytoprotective role during limb regeneration whereas manipulation of kazald1 expression disrupts regeneration. Our transcriptome and annotation resources greatly complement previous transcriptomic studies and will be a valuable resource for future research in regenerative biology.

Developmental Biology and Gene RegulationRNA Research and SplicingConnective tissue disorders researchAxolotlTranscriptomeBiologyRegeneration (biology)BlastemaComputational biologyAmbystoma mexicanumRegenerative medicineGenomeGene

MeSH terms

Ambystoma mexicanumAnimalsExtremitiesRegenerationRNARNA SplicingRNA-Binding ProteinsIn Situ HybridizationSequence Analysis, RNAInsulin-Like Growth Factor Binding ProteinsRNA InterferenceRNA, Small InterferingTranscriptome

Funding

  • Howard Hughes Medical Institute
  • Richard and Susan Smith Family Foundation
  • Brigham and Women's Hospital
  • National Institutes of Health
  • Harvard Stem Cell Institute
  • National Cancer Institute
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