International audienceBackground: Totipotency is the ability of a cell to regenerate a whole organism. Plant somatic embryogenesis (SE) is a remarkable example of totipotency because somatic cells reverse differentiation, respond to an appropriate stimulus and initiate embryo development. Although SE is an ideal system to investigate de-differentiation and differentiation, we still lack a deep molecular understanding of the phenomenon due to experimental restraints. Results: We applied the INTACT method to specifically isolate the nuclei of those cells undergoing SE among the majority of non-embryogenic cells that make up a callus. We compared the transcriptome of embryogenic cells to the one of proliferating callus cells. Our analyses reve...
Little is known of the mechanisms that induce the dedifferentiation of a single somatic cell into a ...
Plants can grow complex and elaborate structures, in some species for thousands of years. Despite th...
Embryogenesis is central to the life cycle of most plant species. Despite its importance, because of...
Background: Totipotency is the ability of a cell to regenerate a whole organism. Plant somatic embry...
Abstract Background Totipotency is the ability of a cell to regenerate a whole organism. Plant somat...
Somatic embryogenesis is one of the best examples of the remarkable developmental plasticity of plan...
L'article original est publié par The American Society of Plant BiologistsThe molecular mechanisms u...
The molecular mechanisms underlying plant cell totipotency are largely unknown. Here, we present a p...
<div><p>Molecular mechanisms controlling plant totipotency are largely unknown and studies on somati...
Somatic plant cells are not terminally differentiated and can therefore regain totipotency and initi...
Somatic embryogenesis is a form of induced plant cell totipotency where embryos develop from somatic...
The molecular mechanisms underlying plant cell totipotency are largely unknown. Here, we present a p...
Plant development is highly malleable, as evidenced by the ability of cultured cells, tissues and or...
Embryogenesis in plants can commence from cells other than the fertilized egg cell. Embryogenesis in...
Land plants can reproduce sexually by developing an embryo from a fertilized egg cell, the zygote. A...
Little is known of the mechanisms that induce the dedifferentiation of a single somatic cell into a ...
Plants can grow complex and elaborate structures, in some species for thousands of years. Despite th...
Embryogenesis is central to the life cycle of most plant species. Despite its importance, because of...
Background: Totipotency is the ability of a cell to regenerate a whole organism. Plant somatic embry...
Abstract Background Totipotency is the ability of a cell to regenerate a whole organism. Plant somat...
Somatic embryogenesis is one of the best examples of the remarkable developmental plasticity of plan...
L'article original est publié par The American Society of Plant BiologistsThe molecular mechanisms u...
The molecular mechanisms underlying plant cell totipotency are largely unknown. Here, we present a p...
<div><p>Molecular mechanisms controlling plant totipotency are largely unknown and studies on somati...
Somatic plant cells are not terminally differentiated and can therefore regain totipotency and initi...
Somatic embryogenesis is a form of induced plant cell totipotency where embryos develop from somatic...
The molecular mechanisms underlying plant cell totipotency are largely unknown. Here, we present a p...
Plant development is highly malleable, as evidenced by the ability of cultured cells, tissues and or...
Embryogenesis in plants can commence from cells other than the fertilized egg cell. Embryogenesis in...
Land plants can reproduce sexually by developing an embryo from a fertilized egg cell, the zygote. A...
Little is known of the mechanisms that induce the dedifferentiation of a single somatic cell into a ...
Plants can grow complex and elaborate structures, in some species for thousands of years. Despite th...
Embryogenesis is central to the life cycle of most plant species. Despite its importance, because of...