To unravel molecular mechanisms with the ultimate goal to achieve improved stress resilience or increased yield, plants are often studied under highly controlled conditions in which stresses are applied and in which growth‐ or architecture‐related traits are meticulously recorded. Over the past decades, this has led to a boost in our understanding of key molecular players and in strategies to improve yield stability. However, many single‐gene traits fail to translate into applications (Nuccio et al., 2018)
Most of our current knowledge on plant molecular biology is based on experiments in controlled labor...
Abiotic constraints resulting from climate changes have widespread yield reducing effects on all fie...
Drought stress constitutes one of the major constraints to agriculture all over the world, and its d...
Plant molecular biology has been the key driver to elucidate molecular pathways underlying plant gro...
Abiotic stresses are the major causes that limit productivity of crop plants worldwide. Plants have ...
Maize MON810, grown and commercialised worldwide, is the only cultivated GM event in the EU. Maize M...
© 2016 American Society of Plant Biologists. All rights reserved.Identifying the physiological and g...
Plants can produce different phenotypes when exposed to different environments. Understanding the ge...
Crop losses due to biotic and abiotic stresses are significant worldwide issues. According to a repo...
Identifying the physiological and genetic basis of stress tolerance in plants has proven to be crit...
Cultivated plants have been selected by humans for increased yield in a relatively benign environmen...
Copyright © 2013 Bala Anı Akpınar et al. This is an open access article distributed under the Creati...
Mechanisms that protect against abiotic stress are essential for plant survival, yet their activatio...
The entire thesis text is included in the research.pdf file; the official abstract appears in the sh...
Agricultural productivity depends on increasingly extreme weather phenomena, and the use of germplas...
Most of our current knowledge on plant molecular biology is based on experiments in controlled labor...
Abiotic constraints resulting from climate changes have widespread yield reducing effects on all fie...
Drought stress constitutes one of the major constraints to agriculture all over the world, and its d...
Plant molecular biology has been the key driver to elucidate molecular pathways underlying plant gro...
Abiotic stresses are the major causes that limit productivity of crop plants worldwide. Plants have ...
Maize MON810, grown and commercialised worldwide, is the only cultivated GM event in the EU. Maize M...
© 2016 American Society of Plant Biologists. All rights reserved.Identifying the physiological and g...
Plants can produce different phenotypes when exposed to different environments. Understanding the ge...
Crop losses due to biotic and abiotic stresses are significant worldwide issues. According to a repo...
Identifying the physiological and genetic basis of stress tolerance in plants has proven to be crit...
Cultivated plants have been selected by humans for increased yield in a relatively benign environmen...
Copyright © 2013 Bala Anı Akpınar et al. This is an open access article distributed under the Creati...
Mechanisms that protect against abiotic stress are essential for plant survival, yet their activatio...
The entire thesis text is included in the research.pdf file; the official abstract appears in the sh...
Agricultural productivity depends on increasingly extreme weather phenomena, and the use of germplas...
Most of our current knowledge on plant molecular biology is based on experiments in controlled labor...
Abiotic constraints resulting from climate changes have widespread yield reducing effects on all fie...
Drought stress constitutes one of the major constraints to agriculture all over the world, and its d...