The wood-forming vascular cambium is responsible for the production of a large part of the biomass on this planet. Yet, there is only limited knowledge on how cell proliferation and differentiation in the cambial meristem are regulated. In this thesis the wood-forming tissues of aspen were used as a model system to identify and characterize molecular factors related to cambial meristem activity. An important regulator of cambial meristem activity is the plant hormone auxin. As polar transport is crucial for the delivery of auxin to the cambial zone, we identified homologues of known regulators of polar auxin transport and described their regulation by environmental and developmental factors. Translating changes in auxin concentration into c...
Of all of the organisms on the planet, trees are perhaps the ultimate survivors. Their unique growth...
Of all of the organisms on the planet, trees are perhaps the ultimate survivors. Their unique growth...
The stems and roots of most dicot plants increase in diameter by radial growth, due to the activity ...
The wood-forming vascular cambium is responsible for the production of a large part of the biomass o...
The wood-forming vascular cambium is responsible for the production of a large part of the biomass o...
Indole acetic acid (IAA/auxin) profoundly affects wood formation but the molecular mechanism of auxi...
Auxin is a key regulator in plant growth and development. This dissertation examines the role of aux...
Auxin is a key regulator in plant growth and development. This dissertation examines the role of aux...
Auxin is a key regulator in plant growth and development. This dissertation examines the role of aux...
Of all of the organisms on the planet, trees are perhaps the ultimate survivors. Their unique growth...
The differentiation of plant vascular tissue is regulated by plant hormones and transcription factor...
Auxin has been shown to exhibit a striking concentration gradient distribution in radial sections of...
Of all of the organisms on the planet, trees are perhaps the ultimate survivors. Their unique growth...
Of all of the organisms on the planet, trees are perhaps the ultimate survivors. Their unique growth...
Andersson Gunnerås, S. 2005. Wood formation and transcript analysis with focus on tension wood and e...
Of all of the organisms on the planet, trees are perhaps the ultimate survivors. Their unique growth...
Of all of the organisms on the planet, trees are perhaps the ultimate survivors. Their unique growth...
The stems and roots of most dicot plants increase in diameter by radial growth, due to the activity ...
The wood-forming vascular cambium is responsible for the production of a large part of the biomass o...
The wood-forming vascular cambium is responsible for the production of a large part of the biomass o...
Indole acetic acid (IAA/auxin) profoundly affects wood formation but the molecular mechanism of auxi...
Auxin is a key regulator in plant growth and development. This dissertation examines the role of aux...
Auxin is a key regulator in plant growth and development. This dissertation examines the role of aux...
Auxin is a key regulator in plant growth and development. This dissertation examines the role of aux...
Of all of the organisms on the planet, trees are perhaps the ultimate survivors. Their unique growth...
The differentiation of plant vascular tissue is regulated by plant hormones and transcription factor...
Auxin has been shown to exhibit a striking concentration gradient distribution in radial sections of...
Of all of the organisms on the planet, trees are perhaps the ultimate survivors. Their unique growth...
Of all of the organisms on the planet, trees are perhaps the ultimate survivors. Their unique growth...
Andersson Gunnerås, S. 2005. Wood formation and transcript analysis with focus on tension wood and e...
Of all of the organisms on the planet, trees are perhaps the ultimate survivors. Their unique growth...
Of all of the organisms on the planet, trees are perhaps the ultimate survivors. Their unique growth...
The stems and roots of most dicot plants increase in diameter by radial growth, due to the activity ...