Vegetative shoot-based propagation of plants, including mass propagation of elite genotypes, is dependent on the development of shoot-borne roots, which are also called adventitious roots. Multiple endogenous and environmental factors control the complex process of adventitious rooting. In the past few years, we have shown that the auxin response factors ARF6 and ARF8, targets of the microRNA miR167, are positive regulators of adventitious rooting, whereas ARF17, a target of miR160, is a negative regulator. We showed that these genes have overlapping expression profiles during adventitious rooting and that they regulate each other's expression at the transcriptional and posttranscriptional levels by modulating the homeostasis of miR160 and ...
• Upon exposure to light, etiolated Arabidopsis seedlings form adventitious roots (AR) along the ...
Plant organs are typically organized into three main tissue layers. The middle ground tissue layer c...
Auxin stimulates adventitious root (AR) formation in planta and in vitro cultured explants. In Arabi...
Vegetative shoot-based propagation of plants, including mass propagation of elite genotypes, is depe...
Vegetative shoot-based propagation of plants, including mass propagation of elite genotypes, is depe...
International audienceThe development of shoot-borne roots, or adventitious roots, is indispensable ...
Plants adapt to different environmental conditions by constantly forming new organs in response to m...
Plants adapt to different environmental conditions by constantly forming new organs in response to m...
Adventitious rooting is a post-embryonic developmental program governed by a multitude of endogenous...
Adventitious rooting is a complex process and a key step in the vegetative propagation of-economical...
Adventitious root (ARs) are essential for the survival of numerous plant species, because they contr...
In Arabidopsis thaliana, canonical auxin-dependent gene regulation is mediated by 23 transcription f...
The stem cell niche in the root meristem is critical for the development of the plant root system. T...
Auxin is a structurally simple molecule, yet it elicits many different responses in plants. In Chap...
Development in multicellular organisms requires a strict balance between cell division and different...
• Upon exposure to light, etiolated Arabidopsis seedlings form adventitious roots (AR) along the ...
Plant organs are typically organized into three main tissue layers. The middle ground tissue layer c...
Auxin stimulates adventitious root (AR) formation in planta and in vitro cultured explants. In Arabi...
Vegetative shoot-based propagation of plants, including mass propagation of elite genotypes, is depe...
Vegetative shoot-based propagation of plants, including mass propagation of elite genotypes, is depe...
International audienceThe development of shoot-borne roots, or adventitious roots, is indispensable ...
Plants adapt to different environmental conditions by constantly forming new organs in response to m...
Plants adapt to different environmental conditions by constantly forming new organs in response to m...
Adventitious rooting is a post-embryonic developmental program governed by a multitude of endogenous...
Adventitious rooting is a complex process and a key step in the vegetative propagation of-economical...
Adventitious root (ARs) are essential for the survival of numerous plant species, because they contr...
In Arabidopsis thaliana, canonical auxin-dependent gene regulation is mediated by 23 transcription f...
The stem cell niche in the root meristem is critical for the development of the plant root system. T...
Auxin is a structurally simple molecule, yet it elicits many different responses in plants. In Chap...
Development in multicellular organisms requires a strict balance between cell division and different...
• Upon exposure to light, etiolated Arabidopsis seedlings form adventitious roots (AR) along the ...
Plant organs are typically organized into three main tissue layers. The middle ground tissue layer c...
Auxin stimulates adventitious root (AR) formation in planta and in vitro cultured explants. In Arabi...