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Dziecko mieć pogłębiać arabidopsis pluripotency markers Kłamstwo siedem będę silny

Gene expression map of the Arabidopsis shoot apical meristem stem cell  niche | PNAS
Gene expression map of the Arabidopsis shoot apical meristem stem cell niche | PNAS

Pluripotency of Arabidopsis xylem pericycle underlies shoot regeneration  from root and hypocotyl explants grown in vitro - Atta - 2009 - The Plant  Journal - Wiley Online Library
Pluripotency of Arabidopsis xylem pericycle underlies shoot regeneration from root and hypocotyl explants grown in vitro - Atta - 2009 - The Plant Journal - Wiley Online Library

Integration of pluripotency pathways regulates stem cell maintenance in the  Arabidopsis shoot meristem | PNAS
Integration of pluripotency pathways regulates stem cell maintenance in the Arabidopsis shoot meristem | PNAS

IJMS | Free Full-Text | Regulatory Non-Coding RNAs in Pluripotent Stem Cells
IJMS | Free Full-Text | Regulatory Non-Coding RNAs in Pluripotent Stem Cells

Pluripotency acquisition in the middle cell layer of callus is required for  organ regeneration | Nature Plants
Pluripotency acquisition in the middle cell layer of callus is required for organ regeneration | Nature Plants

Pluripotency of Arabidopsis xylem pericycle underlies shoot regeneration  from root and hypocotyl explants grown in vitro - Atta - 2009 - The Plant  Journal - Wiley Online Library
Pluripotency of Arabidopsis xylem pericycle underlies shoot regeneration from root and hypocotyl explants grown in vitro - Atta - 2009 - The Plant Journal - Wiley Online Library

Pluripotency of Arabidopsis xylem pericycle underlies shoot regeneration  from root and hypocotyl explants grown in vitro - Atta - 2009 - The Plant  Journal - Wiley Online Library
Pluripotency of Arabidopsis xylem pericycle underlies shoot regeneration from root and hypocotyl explants grown in vitro - Atta - 2009 - The Plant Journal - Wiley Online Library

Markers and genes differentially expressed in the root stem cell niche....  | Download Scientific Diagram
Markers and genes differentially expressed in the root stem cell niche.... | Download Scientific Diagram

Epigenetic reprogramming by histone acetyltransferase HAG1/AtGCN5 is  required for pluripotency acquisition in Arabidopsis | The EMBO Journal
Epigenetic reprogramming by histone acetyltransferase HAG1/AtGCN5 is required for pluripotency acquisition in Arabidopsis | The EMBO Journal

iPSCs: A Comparison between Animals and Plants: Trends in Plant Science
iPSCs: A Comparison between Animals and Plants: Trends in Plant Science

Glycogen Synthase Kinase 3 (GSK3) Inhibitor, SB-216763, Promotes  Pluripotency in Mouse Embryonic Stem Cells | PLOS ONE
Glycogen Synthase Kinase 3 (GSK3) Inhibitor, SB-216763, Promotes Pluripotency in Mouse Embryonic Stem Cells | PLOS ONE

Reprogramming of H3K27me3 Is Critical for Acquisition of Pluripotency from  Cultured Arabidopsis Tissues | PLOS Genetics
Reprogramming of H3K27me3 Is Critical for Acquisition of Pluripotency from Cultured Arabidopsis Tissues | PLOS Genetics

The response of human induced pluripotent stem cells to cyclic temperature  changes explored by BIO-AFM | SpringerLink
The response of human induced pluripotent stem cells to cyclic temperature changes explored by BIO-AFM | SpringerLink

Characterization of P19 knockout cell lines. (a) Western blot analysis... |  Download Scientific Diagram
Characterization of P19 knockout cell lines. (a) Western blot analysis... | Download Scientific Diagram

Temporal dynamics of gene expression and histone marks at the Arabidopsis  shoot meristem during flowering | Nature Communications
Temporal dynamics of gene expression and histone marks at the Arabidopsis shoot meristem during flowering | Nature Communications

WUSCHEL acts as an auxin response rheostat to maintain apical stem cells in  Arabidopsis | Nature Communications
WUSCHEL acts as an auxin response rheostat to maintain apical stem cells in Arabidopsis | Nature Communications

Local auxin biosynthesis promotes stem cell differentiation and  organogenesis in Arabidopsis shoot apex | bioRxiv
Local auxin biosynthesis promotes stem cell differentiation and organogenesis in Arabidopsis shoot apex | bioRxiv

Nanog Is the Gateway to the Pluripotent Ground State: Cell
Nanog Is the Gateway to the Pluripotent Ground State: Cell

Epigenetic reprogramming by histone acetyltransferase HAG1/AtGCN5 is  required for pluripotency acquisition in Arabidopsis | The EMBO Journal
Epigenetic reprogramming by histone acetyltransferase HAG1/AtGCN5 is required for pluripotency acquisition in Arabidopsis | The EMBO Journal

Characterization of single-cell profiles from the Arabidopsis root. (A)...  | Download Scientific Diagram
Characterization of single-cell profiles from the Arabidopsis root. (A)... | Download Scientific Diagram

Temporal changes in cell division rate and genotoxic stress tolerance in  quiescent center cells of Arabidopsis primary root apical meristem |  Scientific Reports
Temporal changes in cell division rate and genotoxic stress tolerance in quiescent center cells of Arabidopsis primary root apical meristem | Scientific Reports

Frontiers | The Overlapping and Distinct Roles of HAM Family Genes in  Arabidopsis Shoot Meristems
Frontiers | The Overlapping and Distinct Roles of HAM Family Genes in Arabidopsis Shoot Meristems

Auxin Response Factors promote organogenesis by chromatin-mediated  repression of the pluripotency gene SHOOTMERISTEMLESS | Nature  Communications
Auxin Response Factors promote organogenesis by chromatin-mediated repression of the pluripotency gene SHOOTMERISTEMLESS | Nature Communications

FTIP-Dependent STM Trafficking Regulates Shoot Meristem Development in  Arabidopsis - ScienceDirect
FTIP-Dependent STM Trafficking Regulates Shoot Meristem Development in Arabidopsis - ScienceDirect

Limiting replication stress during somatic cell reprogramming reduces  genomic instability in induced pluripotent stem cells | Nature  Communications
Limiting replication stress during somatic cell reprogramming reduces genomic instability in induced pluripotent stem cells | Nature Communications

Wound-inducible ANAC071 and ANAC096 transcription factors promote cambial  cell formation in incised Arabidopsis flowering stems | Communications  Biology
Wound-inducible ANAC071 and ANAC096 transcription factors promote cambial cell formation in incised Arabidopsis flowering stems | Communications Biology