Plants have evolved energy dissipation pathways to reduce photooxidative damage under drought when photosynthesis is hampered. Non-volatile and volatile isoprenoids are involved in non-photochemical quenching of excess light energy and scavenging of reactive oxygen species. A better understanding of trees’ ability to cope with and withstand drought stress will contribute to mitigate the negative effects of prolonged drought periods expected under future climate conditions. Therefore we investigated if Douglas-fir (Pseudotsuga menziesii(Mirb.)) provenances from habitats with contrasting water availability reveal intraspecific variation in isoprenoid-mediated energy dissipation pathways. In a controlled drought experiment with 1-year-old seed...
We investigated the photosynthetic limitations occurring during dehydration and rehydration of Xerop...
The intrinsic variability of volatile organic compound emissions and photosynthetic parameters in re...
Graduation date: 2017Drought is expected to increase in many parts of the world and has been shown t...
For long-lived forest tree species, the understanding of intraspecific variation among populations a...
For long-lived forest tree species, the understanding of intraspecific variation among populations a...
For long-lived forest tree species, intraspecific variation among populations in their response to e...
Climate change in northern forests is causing increased water stress during summer droughts and pote...
Key messageStem photosynthesis seems to play an adaptive role for woody plants that prosper in hot a...
In the future, periods of strongly increased temperature in concert with drought (heat waves) will h...
In the future, periods of strongly increased temperature in concert with drought (heat waves) will h...
Isoprene is the most abundant biogenic volatile organic compound emitted from vegetation and has be...
The methylerythritol 4-phosphate (MEP) pathway of isoprenoid biosynthesis produces chlorophyll side ...
Water availability is a major limiting factor on plant growth and productivity. Considering that Euc...
Douglas fir (Pseudotsuga menziesii) is a conifer species that stores large amounts of terpenoids, ma...
Leaf isoprene emission rates (F iso) were studied in 2-year old trees of live oak (Quercus virginian...
We investigated the photosynthetic limitations occurring during dehydration and rehydration of Xerop...
The intrinsic variability of volatile organic compound emissions and photosynthetic parameters in re...
Graduation date: 2017Drought is expected to increase in many parts of the world and has been shown t...
For long-lived forest tree species, the understanding of intraspecific variation among populations a...
For long-lived forest tree species, the understanding of intraspecific variation among populations a...
For long-lived forest tree species, intraspecific variation among populations in their response to e...
Climate change in northern forests is causing increased water stress during summer droughts and pote...
Key messageStem photosynthesis seems to play an adaptive role for woody plants that prosper in hot a...
In the future, periods of strongly increased temperature in concert with drought (heat waves) will h...
In the future, periods of strongly increased temperature in concert with drought (heat waves) will h...
Isoprene is the most abundant biogenic volatile organic compound emitted from vegetation and has be...
The methylerythritol 4-phosphate (MEP) pathway of isoprenoid biosynthesis produces chlorophyll side ...
Water availability is a major limiting factor on plant growth and productivity. Considering that Euc...
Douglas fir (Pseudotsuga menziesii) is a conifer species that stores large amounts of terpenoids, ma...
Leaf isoprene emission rates (F iso) were studied in 2-year old trees of live oak (Quercus virginian...
We investigated the photosynthetic limitations occurring during dehydration and rehydration of Xerop...
The intrinsic variability of volatile organic compound emissions and photosynthetic parameters in re...
Graduation date: 2017Drought is expected to increase in many parts of the world and has been shown t...