Body regeneration through formation of new organs is a major question in developmental biology. We investigated de novo root formation using whole leaves of Arabidopsis (Arabidopsis thaliana). Our results show that local cytokinin biosynthesis and auxin biosynthesis in the leaf blade followed by auxin long-distance transport to the petiole leads to proliferation of J0121-marked xylem-associated tissues and others through signaling of INDOLE-3-ACETIC ACID INDUCIBLE28 (IAA28), CRANE (IAA18), WOODEN LEG, and ARABIDOPSIS RESPONSE REGULATORS1 (ARR1), ARR10, and ARR12. Vasculature proliferation also involves the cell cycle regulator KIP-RELATED PROTEIN2 and ABERRANT LATERAL ROOT FORMATION4, resulting in a mass of cells with rooting competence tha...
The molecular mechanisms underlying de novo root organogenesis have been under intense study for the...
Plants have extraordinary developmental plasticity as they continuously form organs during post-embr...
Continuing root growth is crucial for the ongoing survival of a plant and provides the structure bas...
Body regeneration through formation of new organs is a major question in developmental biology. We i...
In plant development, the basic body plan is laid down during embryogenesis. Development carries on ...
Most multicellular organisms have a capacity to regenerate tissue after wounding. Few, however, have...
International audienceThe complex and adaptable architecture of the plant root system in soil is of ...
Plants possess the rare capability to shape the own architecture according to biotic and abiotic sti...
Plant regeneration can be defined as the ability to repair tissues and reconstruct organs upon wound...
In vitro shoot organogenesis and plant regeneration are crucial for both plant biotechnology and the...
Adventitious roots (ARs) are formed de novo during post-embryonic development from non-root tissues,...
SummaryUnlike most animal cells, plant cells can easily regenerate new tissues from a wide variety o...
Adventitious roots (ARs) are formed de novo during post-embryonic development from non-root tissues,...
The mature Arabidopsis embryo contains two stem cell niches that upon germination bring forth and ma...
International audienceThe study of the concerted action of hormones and transcription factors is fun...
The molecular mechanisms underlying de novo root organogenesis have been under intense study for the...
Plants have extraordinary developmental plasticity as they continuously form organs during post-embr...
Continuing root growth is crucial for the ongoing survival of a plant and provides the structure bas...
Body regeneration through formation of new organs is a major question in developmental biology. We i...
In plant development, the basic body plan is laid down during embryogenesis. Development carries on ...
Most multicellular organisms have a capacity to regenerate tissue after wounding. Few, however, have...
International audienceThe complex and adaptable architecture of the plant root system in soil is of ...
Plants possess the rare capability to shape the own architecture according to biotic and abiotic sti...
Plant regeneration can be defined as the ability to repair tissues and reconstruct organs upon wound...
In vitro shoot organogenesis and plant regeneration are crucial for both plant biotechnology and the...
Adventitious roots (ARs) are formed de novo during post-embryonic development from non-root tissues,...
SummaryUnlike most animal cells, plant cells can easily regenerate new tissues from a wide variety o...
Adventitious roots (ARs) are formed de novo during post-embryonic development from non-root tissues,...
The mature Arabidopsis embryo contains two stem cell niches that upon germination bring forth and ma...
International audienceThe study of the concerted action of hormones and transcription factors is fun...
The molecular mechanisms underlying de novo root organogenesis have been under intense study for the...
Plants have extraordinary developmental plasticity as they continuously form organs during post-embr...
Continuing root growth is crucial for the ongoing survival of a plant and provides the structure bas...