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ABP1 inactivation inhibits cell division in root meristem.
ABP1 inactivation inhibits cell division in root meristem.

Robust reconstitution of active cell-cycle control complexes from  co-expressed proteins in bacteria | Plant Methods | Full Text
Robust reconstitution of active cell-cycle control complexes from co-expressed proteins in bacteria | Plant Methods | Full Text

Cytokinin Activation of Arabidopsis Cell Division Through a D-Type Cyclin |  Science
Cytokinin Activation of Arabidopsis Cell Division Through a D-Type Cyclin | Science

Nitric Oxide Mediates Cytokinin Functions in Cell Proliferation and  Meristem Maintenance in Arabidopsis
Nitric Oxide Mediates Cytokinin Functions in Cell Proliferation and Meristem Maintenance in Arabidopsis

CyCD3 (T- Cell Marker) Test in Delhi | GDIC
CyCD3 (T- Cell Marker) Test in Delhi | GDIC

Nitric Oxide Mediates Cytokinin Functions in Cell Proliferation and  Meristem Maintenance in Arabidopsis
Nitric Oxide Mediates Cytokinin Functions in Cell Proliferation and Meristem Maintenance in Arabidopsis

Hormone analysis and candidate genes identification associated with seed  size in Camellia oleifera | Royal Society Open Science
Hormone analysis and candidate genes identification associated with seed size in Camellia oleifera | Royal Society Open Science

Cytokinin Activation of Arabidopsis Cell Division Through a D-Type Cyclin |  Science
Cytokinin Activation of Arabidopsis Cell Division Through a D-Type Cyclin | Science

Figure 6 from Cytoplasmic Expression of the CD 3 Antigen as a Diagnostic  Marker for Immature T-CeIl Malignancies | Semantic Scholar
Figure 6 from Cytoplasmic Expression of the CD 3 Antigen as a Diagnostic Marker for Immature T-CeIl Malignancies | Semantic Scholar

Establishment of a mitotic model system by transient expression of the  D‐type cyclin in differentiated leaf cells of tobacco (Nicotiana  benthamiana) - Xu - 2020 - New Phytologist - Wiley Online Library
Establishment of a mitotic model system by transient expression of the D‐type cyclin in differentiated leaf cells of tobacco (Nicotiana benthamiana) - Xu - 2020 - New Phytologist - Wiley Online Library

Arabidopsis CYCD3 D-type cyclins link cell proliferation and endocycles and  are rate-limiting for cytokinin responses | PNAS
Arabidopsis CYCD3 D-type cyclins link cell proliferation and endocycles and are rate-limiting for cytokinin responses | PNAS

Plantae | Arabidopsis Leaf Shape Regulation | Plantae
Plantae | Arabidopsis Leaf Shape Regulation | Plantae

Cytokinin cycles cells: Trends in Plant Science
Cytokinin cycles cells: Trends in Plant Science

Plants | Free Full-Text | SPEECHLESS and MUTE Mediate Feedback Regulation  of Signal Transduction during Stomatal Development
Plants | Free Full-Text | SPEECHLESS and MUTE Mediate Feedback Regulation of Signal Transduction during Stomatal Development

Loss of CYCD3 leads to increased xylem cell size and differentiation in...  | Download Scientific Diagram
Loss of CYCD3 leads to increased xylem cell size and differentiation in... | Download Scientific Diagram

Interaction between ANT and CYCD3;1 in root secondary growth. (A,C)... |  Download Scientific Diagram
Interaction between ANT and CYCD3;1 in root secondary growth. (A,C)... | Download Scientific Diagram

The Arabidopsis D-type Cyclins CycD2 and CycD3 Both Interact in Vivo with  the PSTAIRE Cyclin-dependent Kinase Cdc2a but Are Diff
The Arabidopsis D-type Cyclins CycD2 and CycD3 Both Interact in Vivo with the PSTAIRE Cyclin-dependent Kinase Cdc2a but Are Diff

IJMS | Free Full-Text | Temporal and Spatial Expression Analysis of  Shoot-Regeneration Regulatory Genes during the Adventitious Shoot Formation  in Hypocotyl and Cotyledon Explants of Tomato (CV. Micro-Tom)
IJMS | Free Full-Text | Temporal and Spatial Expression Analysis of Shoot-Regeneration Regulatory Genes during the Adventitious Shoot Formation in Hypocotyl and Cotyledon Explants of Tomato (CV. Micro-Tom)

Arabidopsis CYCD3 D-type cyclins link cell proliferation and endocycles and  are rate-limiting for cytokinin responses | PNAS
Arabidopsis CYCD3 D-type cyclins link cell proliferation and endocycles and are rate-limiting for cytokinin responses | PNAS

Plantae | The CDK inhibitor SIAMESE targets both CDKA;1 and CDKB1 complexes  to establish endoreplication in trichomes (Plant Physiol.) | Plantae
Plantae | The CDK inhibitor SIAMESE targets both CDKA;1 and CDKB1 complexes to establish endoreplication in trichomes (Plant Physiol.) | Plantae

Model Illustrating CYCD3 Action on the Transition from Proliferation to...  | Download Scientific Diagram
Model Illustrating CYCD3 Action on the Transition from Proliferation to... | Download Scientific Diagram

WOX5 Suppresses CYCLIN D Activity to Establish Quiescence at the Center of  the Root Stem Cell Niche - ScienceDirect
WOX5 Suppresses CYCLIN D Activity to Establish Quiescence at the Center of the Root Stem Cell Niche - ScienceDirect

CYCD3 genes are specifically expressed in the procambium and cambium... |  Download Scientific Diagram
CYCD3 genes are specifically expressed in the procambium and cambium... | Download Scientific Diagram

Genetic Interaction between CYCD1;1/CYCD3;3 and WOX5 (A-H) Mature... |  Download Scientific Diagram
Genetic Interaction between CYCD1;1/CYCD3;3 and WOX5 (A-H) Mature... | Download Scientific Diagram

The Arabidopsis D-type Cyclins CycD2 and CycD3 Both Interact in Vivo with  the PSTAIRE Cyclin-dependent Kinase Cdc2a but Are Differentially Controlled  - ScienceDirect
The Arabidopsis D-type Cyclins CycD2 and CycD3 Both Interact in Vivo with the PSTAIRE Cyclin-dependent Kinase Cdc2a but Are Differentially Controlled - ScienceDirect

WOX5 Suppresses CYCLIN D Activity to Establish Quiescence at the Center of  the Root Stem Cell Niche
WOX5 Suppresses CYCLIN D Activity to Establish Quiescence at the Center of the Root Stem Cell Niche

Plantae | Deceleration of cell cycle underpins a switch from  proliferative-to-terminal division in plant stomatal lineage (bioRxiv) |  Plantae
Plantae | Deceleration of cell cycle underpins a switch from proliferative-to-terminal division in plant stomatal lineage (bioRxiv) | Plantae