Plant circadian clock controls a wide variety of physiological and developmental events, which include the short-days (SDs)-specific promotion of the elongation of hypocotyls during de-etiolation and also the elongation of petioles during vegetative growth. In A. thaliana, the PIF4 gene encoding a phytochrome-interacting basic helix-loop-helix (bHLH) transcription factor plays crucial roles in this photoperiodic control of plant growth. According to the proposed external coincidence model, the PIF4 gene is transcribed precociously at the end of night specifically in SDs, under which conditions the protein product is stably accumulated, while PIF4 is expressed exclusively during the daytime in long days (LDs), under which conditions the prot...
In contrast to vastly studied hypocotyl growth, little is known about diel regulation of leaf growth...
Light and temperature are important determinants of plant growth and development. Plant elon...
Most living organisms developed systems to efficiently time environmental changes. The plant-clock a...
Plant circadian clock controls a wide variety of physiological and developmental events, which inclu...
Seedlings growing under diurnal conditions display maximal growth at the end of the night in short-d...
Photoperiod sensors allow physiological adaptation to the changing seasons. The external coincidence...
Members of the PIF quartet (PIFq; PIF1, PIF3, PIF4, and PIF5) collectively contribute to induce grow...
Arabidopsis seedlings display rhythmic growth when grown under diurnal conditions, with maximal elon...
Clock-regulated pathways coordinate the response of many developmental processes to changes in photo...
Arabidopsis thaliana seedling growth and development is influenced by both external (such as light a...
Clock‐regulated pathways coordinate the response of many developmental processes to changes in photo...
Light and temperature signalling response is a central mediator of plant growth plasticity. This the...
As plants are sessile organisms, processes controlling plant growth and development must react to f...
Both light and temperature have dramatic effects on plant development. Phytochrome photoreceptors re...
Under photoperiodic conditions, Arabidopsis thaliana seedling growth is inhibited in long days (LDs)...
In contrast to vastly studied hypocotyl growth, little is known about diel regulation of leaf growth...
Light and temperature are important determinants of plant growth and development. Plant elon...
Most living organisms developed systems to efficiently time environmental changes. The plant-clock a...
Plant circadian clock controls a wide variety of physiological and developmental events, which inclu...
Seedlings growing under diurnal conditions display maximal growth at the end of the night in short-d...
Photoperiod sensors allow physiological adaptation to the changing seasons. The external coincidence...
Members of the PIF quartet (PIFq; PIF1, PIF3, PIF4, and PIF5) collectively contribute to induce grow...
Arabidopsis seedlings display rhythmic growth when grown under diurnal conditions, with maximal elon...
Clock-regulated pathways coordinate the response of many developmental processes to changes in photo...
Arabidopsis thaliana seedling growth and development is influenced by both external (such as light a...
Clock‐regulated pathways coordinate the response of many developmental processes to changes in photo...
Light and temperature signalling response is a central mediator of plant growth plasticity. This the...
As plants are sessile organisms, processes controlling plant growth and development must react to f...
Both light and temperature have dramatic effects on plant development. Phytochrome photoreceptors re...
Under photoperiodic conditions, Arabidopsis thaliana seedling growth is inhibited in long days (LDs)...
In contrast to vastly studied hypocotyl growth, little is known about diel regulation of leaf growth...
Light and temperature are important determinants of plant growth and development. Plant elon...
Most living organisms developed systems to efficiently time environmental changes. The plant-clock a...