Mitogen-activated dual-specificity MAPK phosphatases are important negative regulators in the MAPK signalling pathways responsible for many essential processes in plants. In a screen for mutants with reduced organ size we have identified a mutation in the active site of the dual-specificity MAPK phosphatase indole-3-butyric acid-response5 (IBR5) that we named tinkerbell (tink) due to its small size. Analysis of the tink mutant indicates that IBR5 acts as a novel regulator of organ size that changes the rate of growth in petals and leaves. Organ size and shape regulation by IBR5 acts independently of the KLU growth-regulatory pathway. Microarray analysis of tink/ibr5-6 mutants identified a likely role for this phosphatase in male gametophyte...
Mitogen activated protein kinase (MAPK) pathways are crucial for plant growth and development. The m...
Tissue morphogenesis critically depends on the coordination of cellular growth patterns. In plants, ...
Tissue morphogenesis critically depends on the coordination of cellular growth patterns. In plants, ...
<div><p>Mitogen-activated dual-specificity MAPK phosphatases are important negative regulators in th...
Mitogen-activated dual-specificity MAPK phosphatases are important negative regulators in the MAPK s...
Background: In Arabidopsis, INDOLE-3-BUTYRIC ACID RESPONSE5 (IBR5), a putative dual-specificity prot...
Plants possess integrated signalling networks that mediate the responses to various environmental co...
Mechanisms that govern the size of plant organs are not well understood but believed to involve both...
Auxin regulates numerous aspects of growth and development. Despite years of studying auxin response...
Mechanisms that govern the size of plant organs are not well understood but believed to involve both...
Auxin is an important plant hormone that plays significant roles in plant growth and development, in...
International audienceIn plants, the effective mobilization of seed nutrient reserves is crucial dur...
Reversible phosphorylation is a crucial regulatory mechanism that controls the activity of proteins....
Plants have evolved complex signal transduction pathways to sense and respond to the fast-changing e...
Emerging evidences exhibit that mitogen-activated protein kinase (MAPK/MPK) signaling pathways are c...
Mitogen activated protein kinase (MAPK) pathways are crucial for plant growth and development. The m...
Tissue morphogenesis critically depends on the coordination of cellular growth patterns. In plants, ...
Tissue morphogenesis critically depends on the coordination of cellular growth patterns. In plants, ...
<div><p>Mitogen-activated dual-specificity MAPK phosphatases are important negative regulators in th...
Mitogen-activated dual-specificity MAPK phosphatases are important negative regulators in the MAPK s...
Background: In Arabidopsis, INDOLE-3-BUTYRIC ACID RESPONSE5 (IBR5), a putative dual-specificity prot...
Plants possess integrated signalling networks that mediate the responses to various environmental co...
Mechanisms that govern the size of plant organs are not well understood but believed to involve both...
Auxin regulates numerous aspects of growth and development. Despite years of studying auxin response...
Mechanisms that govern the size of plant organs are not well understood but believed to involve both...
Auxin is an important plant hormone that plays significant roles in plant growth and development, in...
International audienceIn plants, the effective mobilization of seed nutrient reserves is crucial dur...
Reversible phosphorylation is a crucial regulatory mechanism that controls the activity of proteins....
Plants have evolved complex signal transduction pathways to sense and respond to the fast-changing e...
Emerging evidences exhibit that mitogen-activated protein kinase (MAPK/MPK) signaling pathways are c...
Mitogen activated protein kinase (MAPK) pathways are crucial for plant growth and development. The m...
Tissue morphogenesis critically depends on the coordination of cellular growth patterns. In plants, ...
Tissue morphogenesis critically depends on the coordination of cellular growth patterns. In plants, ...