The female reproductive organ, the gynoecium, is the most complex structure that plants produce. The molecular mechanisms that coordinate its development are unknown, but can be dissected by molecular genetics. The ettin (ett) mutation provides a remarkable window for viewing gynoecium development. ett induced alterations result from misinterpretation of positional information along longitudinal and transverse gynoecial axes. Molecular cloning revealed the ETT encoded amino acid sequence is homologous to transcriptional factors involved in signaling by the plant hormone auxin. Early ETT gene expression marks the site of the future outgrowth of the gynoecium. The primary gene sequence and pattern of expression of ETT fits with a role in horm...
<div><p>Fruits and seeds are the major food source on earth. Both derive from the gynoecium and, the...
ae ivers f Me d W uth Both Etv5 and Etv4 mRNAs are also detected in cumulus– cells during folliculog...
Tissue patterning in multicellular organisms is the output of precise spatio–temporal regulation of ...
International audienceThe control of gynecium development in Arabidopsis thaliana by the auxin respo...
Developmental programmes within multicellular organisms originate from a single cell that proliferat...
The phytohormone auxin, is implicated in gynoecium development. Auxin response mainly depends on two...
We have utilized the response of Arabidopsis seedlings to the plant hormone ethylene to identify new...
L'auxine est une hormone végétale impliquée dans le développement du gynécée. La réponse à l'auxine ...
In the past 20–30 years, developmental biologists have made tremendous progress in identifying genes...
Multicellular organisms, such as plants, fungi, and animals, develop organs with specialized functio...
Organ formation in multicellular organisms depends on the coordinated activities of regulatory compo...
The gynoecium is among the most intricately patterned organs of the plant, comprisingdifferent tissu...
Hormonal signalling in animals often involves direct transcription factor-hormone interactions that ...
The gynoecium is the female reproductive system in flowering plants. It is a complex structure forme...
An important part of the female reproductive tract, enclosed within the gynoecium of angiosperms suc...
<div><p>Fruits and seeds are the major food source on earth. Both derive from the gynoecium and, the...
ae ivers f Me d W uth Both Etv5 and Etv4 mRNAs are also detected in cumulus– cells during folliculog...
Tissue patterning in multicellular organisms is the output of precise spatio–temporal regulation of ...
International audienceThe control of gynecium development in Arabidopsis thaliana by the auxin respo...
Developmental programmes within multicellular organisms originate from a single cell that proliferat...
The phytohormone auxin, is implicated in gynoecium development. Auxin response mainly depends on two...
We have utilized the response of Arabidopsis seedlings to the plant hormone ethylene to identify new...
L'auxine est une hormone végétale impliquée dans le développement du gynécée. La réponse à l'auxine ...
In the past 20–30 years, developmental biologists have made tremendous progress in identifying genes...
Multicellular organisms, such as plants, fungi, and animals, develop organs with specialized functio...
Organ formation in multicellular organisms depends on the coordinated activities of regulatory compo...
The gynoecium is among the most intricately patterned organs of the plant, comprisingdifferent tissu...
Hormonal signalling in animals often involves direct transcription factor-hormone interactions that ...
The gynoecium is the female reproductive system in flowering plants. It is a complex structure forme...
An important part of the female reproductive tract, enclosed within the gynoecium of angiosperms suc...
<div><p>Fruits and seeds are the major food source on earth. Both derive from the gynoecium and, the...
ae ivers f Me d W uth Both Etv5 and Etv4 mRNAs are also detected in cumulus– cells during folliculog...
Tissue patterning in multicellular organisms is the output of precise spatio–temporal regulation of ...