Root growth in plants is achieved through the co-ordination of cell division and expansion. In higher plants, the radial structure of the roots is formed during embryogenesis and maintained thereafter throughout development. Here we show that the tetratricopeptide repeat domain protein TPR5 is necessary for maintaining radial structure and growth rates in Arabidopsis thaliana roots. We isolated an A. thaliana mutant with reduced root growth and determined that TPR5 was the gene responsible for the phenotype. The root growth rate of the tpr5-1 mutant was reduced to ~60% of that in wild-type plants. The radial structure was disturbed by the occurrence of occasional extra periclinal cell divisions. While the number of meristematic cells was re...
To understand the molecular mechanisms that regulate expansion in plants, I analyzed a mutant, rsw4,...
We describe the role of RALFL34 during early events in lateral root development, and demonstrate its...
In plants, postembryonic formation of new organs helps shape the adult organism. This requires the t...
The plant body plan and primary organs are established during embryogenesis. However, in contrast to...
Cell number is an important determinant of final organ size. In the leaf, a large proportion of cell...
Asymmetric cell division is an essential and universal mechanism for generating diversity and patter...
SummaryThe origin of the stem is a major but poorly understood aspect of plant development, partly b...
Along the root axis of Arabidopsis thaliana, cells pass through different developmental stages. In t...
The mature Arabidopsis embryo contains two stem cell niches that upon germination bring forth and ma...
SummaryArabidopsis development proceeds from three stem cell populations located at the shoot, flowe...
The root of the plant Arabidopsis thaliana is a dynamic structure where cells continuously divide an...
SummaryDevelopment of seed plant embryos is polarized along the apical-basal axis. This polarization...
Root organogenesis involves cell division, differentiation and expansion. The molecular mechanisms r...
In plant development, the basic body plan is laid down during embryogenesis. Development carries on ...
Growth of plants depends on cell division and elongation of the divided cells. After cell division, ...
To understand the molecular mechanisms that regulate expansion in plants, I analyzed a mutant, rsw4,...
We describe the role of RALFL34 during early events in lateral root development, and demonstrate its...
In plants, postembryonic formation of new organs helps shape the adult organism. This requires the t...
The plant body plan and primary organs are established during embryogenesis. However, in contrast to...
Cell number is an important determinant of final organ size. In the leaf, a large proportion of cell...
Asymmetric cell division is an essential and universal mechanism for generating diversity and patter...
SummaryThe origin of the stem is a major but poorly understood aspect of plant development, partly b...
Along the root axis of Arabidopsis thaliana, cells pass through different developmental stages. In t...
The mature Arabidopsis embryo contains two stem cell niches that upon germination bring forth and ma...
SummaryArabidopsis development proceeds from three stem cell populations located at the shoot, flowe...
The root of the plant Arabidopsis thaliana is a dynamic structure where cells continuously divide an...
SummaryDevelopment of seed plant embryos is polarized along the apical-basal axis. This polarization...
Root organogenesis involves cell division, differentiation and expansion. The molecular mechanisms r...
In plant development, the basic body plan is laid down during embryogenesis. Development carries on ...
Growth of plants depends on cell division and elongation of the divided cells. After cell division, ...
To understand the molecular mechanisms that regulate expansion in plants, I analyzed a mutant, rsw4,...
We describe the role of RALFL34 during early events in lateral root development, and demonstrate its...
In plants, postembryonic formation of new organs helps shape the adult organism. This requires the t...