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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

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

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

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

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

Expression analysis of CYCD1;1 to CYCD3;3 during seed development:... |  Download Scientific Diagram
Expression analysis of CYCD1;1 to CYCD3;3 during seed development:... | Download Scientific Diagram

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

AINTEGUMENTA and the D-type cyclin CYCD3;1 regulate root secondary growth  and respond to cytokinins
AINTEGUMENTA and the D-type cyclin CYCD3;1 regulate root secondary growth and respond to cytokinins

Outdoor Dustproof Sun Face Tactical Camouflage Full Face Hunting Bike CycD3  | eBay
Outdoor Dustproof Sun Face Tactical Camouflage Full Face Hunting Bike CycD3 | eBay

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

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

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

Loss of CYCD3 leads to reduced cambial activity and vascular cell... |  Download Scientific Diagram
Loss of CYCD3 leads to reduced cambial activity and vascular cell... | Download Scientific Diagram

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

Addgene: pGWB660-CYCD3;1
Addgene: pGWB660-CYCD3;1

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

Summary of CycD2 and CycD3 activity. CYCD2 and CYCD3 both activate E2F... |  Download Scientific Diagram
Summary of CycD2 and CycD3 activity. CYCD2 and CYCD3 both activate E2F... | Download Scientific Diagram

Addgene: pGWB2-CYCD3;1
Addgene: pGWB2-CYCD3;1

Outdoor Dustproof Sun Face Tactical Camouflage Full Face Hunting Bike CycD3  | eBay
Outdoor Dustproof Sun Face Tactical Camouflage Full Face Hunting Bike CycD3 | eBay

Molecular mechanisms of cytokinin action. | Semantic Scholar
Molecular mechanisms of cytokinin action. | Semantic Scholar

AINTEGUMENTA and the D-type cyclin CYCD3;1 independently contribute to  petal size control in Arabidopsis: evidence for organ size compensation  being an emergent rather than a determined property. - Abstract - Europe PMC
AINTEGUMENTA and the D-type cyclin CYCD3;1 independently contribute to petal size control in Arabidopsis: evidence for organ size compensation being an emergent rather than a determined property. - Abstract - Europe PMC

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)

Differential stability of Arabidopsis D‐type cyclins: CYCD3;1 is a highly  unstable protein degraded by a proteasome‐dependent mechanism - Planchais -  2004 - The Plant Journal - Wiley Online Library
Differential stability of Arabidopsis D‐type cyclins: CYCD3;1 is a highly unstable protein degraded by a proteasome‐dependent mechanism - Planchais - 2004 - The Plant Journal - Wiley Online Library

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

A timely proliferative cell cycle is critical for stomatal-lineage identity  – PLANT STOMATA ENCYCLOPEDIA
A timely proliferative cell cycle is critical for stomatal-lineage identity – PLANT STOMATA ENCYCLOPEDIA

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

Effects of CYCD3;1 Overexpression on Cell Division in Shoot Apices and... |  Download Scientific Diagram
Effects of CYCD3;1 Overexpression on Cell Division in Shoot Apices and... | Download Scientific Diagram

CYCD3;1 Overexpression Affects Differentiation in Leaves. | Download  Scientific Diagram
CYCD3;1 Overexpression Affects Differentiation in Leaves. | Download Scientific Diagram

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