AbstractSeedling apical hook development involves a complex interplay of hormones and light in the regulation of differential cell growth. However, the underlying molecular mechanisms that integrate these diverse signals to control bending of the embryonic stem are poorly understood. The Arabidopsis ethylene-regulated HOOKLESS1 (HLS1) gene is essential for apical hook formation. Herein, we identify two auxin response regulators that act downstream of HLS1 to control cell elongation in the hypocotyl. Extragenic suppressors of hls1 were identified as mutations in AUXIN RESPONSE FACTOR 2 (ARF2). The level of ARF2 protein was decreased by ethylene, and this response required HLS1. Exposure to light decreased HLS1 protein levels and evoked a con...
Plants’ adaptation to their environment often involves change in development, which in many cases in...
The plant hormone auxin has crucial roles in almost all aspects of plant growth and development. Con...
Ethylene represents an important regulatory signal for root development. Genetic studies in Arabidop...
AbstractSeedling apical hook development involves a complex interplay of hormones and light in the r...
[EN] The apical hook is a developmentally regulated structure that appears in dicotyledonous seedlin...
Differential growth is critical for plant development and survival. The process of differential grow...
In the beginning, there was the Seed. The seed is a small embryo enclosed in a seed coat, from which...
Plants implement differential cell growth as an adaptation process in order to direct their developm...
The apical hook of dark-grown Arabidopsis seedlings is a simple structure that develops soon after g...
Dark-grown dicotyledonous seedlings form a hook-like structure at the top of the hypocotyl, which is...
[EN] The apical hook develops in the upper part of the hypocotyl when seeds buried in the soil germi...
In darkness, the dicot seedlings produce an apical hook as result of differential cell division and ...
Tissue bending is vital to plant development, as exemplified by apical hook formation during seedlin...
This review highlights that the auxin gradient, established by local auxin biosynthesis and transpor...
Dark-grown Arabidopsis seedlings develop an apical hook when germinating in soil, which protects the...
Plants’ adaptation to their environment often involves change in development, which in many cases in...
The plant hormone auxin has crucial roles in almost all aspects of plant growth and development. Con...
Ethylene represents an important regulatory signal for root development. Genetic studies in Arabidop...
AbstractSeedling apical hook development involves a complex interplay of hormones and light in the r...
[EN] The apical hook is a developmentally regulated structure that appears in dicotyledonous seedlin...
Differential growth is critical for plant development and survival. The process of differential grow...
In the beginning, there was the Seed. The seed is a small embryo enclosed in a seed coat, from which...
Plants implement differential cell growth as an adaptation process in order to direct their developm...
The apical hook of dark-grown Arabidopsis seedlings is a simple structure that develops soon after g...
Dark-grown dicotyledonous seedlings form a hook-like structure at the top of the hypocotyl, which is...
[EN] The apical hook develops in the upper part of the hypocotyl when seeds buried in the soil germi...
In darkness, the dicot seedlings produce an apical hook as result of differential cell division and ...
Tissue bending is vital to plant development, as exemplified by apical hook formation during seedlin...
This review highlights that the auxin gradient, established by local auxin biosynthesis and transpor...
Dark-grown Arabidopsis seedlings develop an apical hook when germinating in soil, which protects the...
Plants’ adaptation to their environment often involves change in development, which in many cases in...
The plant hormone auxin has crucial roles in almost all aspects of plant growth and development. Con...
Ethylene represents an important regulatory signal for root development. Genetic studies in Arabidop...