Shoot branching mechanisms where branches arise in association with leaves – referred to as lateral or axillary branching – evolved by convergence in the sporophyte of vascular plants and the gametophyte of bryophytes, and accompanied independent events of plant architectural diversification. Previously, we showed that three hormonal cues, including auxin, have been recruited independently to co-ordinate branch patterning in flowering plant leafy shoots and moss gametophores (Coudert, Palubicki et al., 2015). Moreover, auxin-mediated apical dominance, which relies on local auxin production, has been proposed as a unifying molecular regulatory mechanism of branch development across land plants. Whilst our previous work in the moss Physcomitr...
Leaves originate from the shoot apical meristem, a small mound of undifferentiated tissue at the tip...
Leaves originate from the shoot apical meristem, a small mound of undifferentiated tissue at the tip...
The phytohormones cytokinin and auxin orchestrate the root meristem development in angiosperms by de...
Shoot branching mechanisms where branches arise in association with leaves – referred to as lateral ...
International audienceA key aim in biology is to identify which genetic changes contributed to the e...
International audienceShoot branching is a primary contributor to plant architecture, evolving indep...
Shoot branching is a primary contributor to plant architecture, evolving independently in flowering ...
The plant hormone auxin is a key factor for regulation of plant development, and this function was p...
BACKGROUND: Plant body plans arise by the activity of meristematic growing tips during development a...
SummaryBackgroundPlant body plans arise by the activity of meristematic growing tips during developm...
Plants continuously generate new tissues and organs through the activity of populations of undiffere...
The shoot represents the basic body plan in land plants. It consists of a repeated structure compose...
The colonization of land by plants was one of the most transformative events in the history of life ...
193 pagesAll plants grow from stem cells or a collection of stem cells organized at meristems. The a...
International audiencePlants continuously generate new tissues and organs throughout their life cycl...
Leaves originate from the shoot apical meristem, a small mound of undifferentiated tissue at the tip...
Leaves originate from the shoot apical meristem, a small mound of undifferentiated tissue at the tip...
The phytohormones cytokinin and auxin orchestrate the root meristem development in angiosperms by de...
Shoot branching mechanisms where branches arise in association with leaves – referred to as lateral ...
International audienceA key aim in biology is to identify which genetic changes contributed to the e...
International audienceShoot branching is a primary contributor to plant architecture, evolving indep...
Shoot branching is a primary contributor to plant architecture, evolving independently in flowering ...
The plant hormone auxin is a key factor for regulation of plant development, and this function was p...
BACKGROUND: Plant body plans arise by the activity of meristematic growing tips during development a...
SummaryBackgroundPlant body plans arise by the activity of meristematic growing tips during developm...
Plants continuously generate new tissues and organs through the activity of populations of undiffere...
The shoot represents the basic body plan in land plants. It consists of a repeated structure compose...
The colonization of land by plants was one of the most transformative events in the history of life ...
193 pagesAll plants grow from stem cells or a collection of stem cells organized at meristems. The a...
International audiencePlants continuously generate new tissues and organs throughout their life cycl...
Leaves originate from the shoot apical meristem, a small mound of undifferentiated tissue at the tip...
Leaves originate from the shoot apical meristem, a small mound of undifferentiated tissue at the tip...
The phytohormones cytokinin and auxin orchestrate the root meristem development in angiosperms by de...