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Francesco Loreto

Showing results (1-10 of 136) with videos related to

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Plant Physiology|June 13, 2006
The relationship between the methyl-erythritol phosphate pathway leading to emission of volatile isoprenoids and abscisic acid content in leavesCsengele Barta, Francesco Loreto
Journal of Experimental Botany|May 30, 2003
12CO2 emission from different metabolic pathways measured in illuminated and darkened C3 and C4 leaves at low, atmospheric and elevated CO2 concentrationPaola Pinelli, Francesco Loreto
The New Phytologist|January 6, 2015
Reconciling functions and evolution of isoprene emission in higher plantsFrancesco Loreto, Silvia Fineschi
Trends in Plant Science|September 21, 2021
How do plants sense volatiles sent by other plants?Francesco Loreto, Sabato D'Auria
Oecologia|March 18, 2017
Water stress, temperature, and light effects on the capacity for isoprene emission and photosynthesis of kudzu leavesThomas D Sharkey, Francesco Loreto
Trends in Plant Science|February 6, 2010
Abiotic stresses and induced BVOCsFrancesco Loreto, Jörg-Peter Schnitzler
Plant Physiology|February 8, 2006
Dimethylallyl diphosphate and geranyl diphosphate pools of plant species characterized by different isoprenoid emissionsIsabel Nogués, Federico Brilli, Francesco Loreto
Journal of Experimental Botany|November 20, 2009
Determinants of ozone fluxes and metrics for ozone risk assessment in plantsSilvano Fares, Allen Goldstein, Francesco Loreto
Trends in Plant Science|March 1, 2017
Trade-Off Between Dimethyl Sulfide and Isoprene Emissions from Marine PhytoplanktonK G Srikanta Dani, Francesco Loreto
Journal of Experimental Botany|March 29, 2014
Isoprene improves photochemical efficiency and enhances heat dissipation in plants at physiological temperaturesSusanna Pollastri, Tsonko Tsonev, Francesco Loreto
Pageof 14

Showing results (1-10 of 136) with videos related to

Sort By:
Pageof 14
Plant Physiology|June 13, 2006
The relationship between the methyl-erythritol phosphate pathway leading to emission of volatile isoprenoids and abscisic acid content in leavesCsengele Barta, Francesco Loreto
Journal of Experimental Botany|May 30, 2003
12CO2 emission from different metabolic pathways measured in illuminated and darkened C3 and C4 leaves at low, atmospheric and elevated CO2 concentrationPaola Pinelli, Francesco Loreto
The New Phytologist|January 6, 2015
Reconciling functions and evolution of isoprene emission in higher plantsFrancesco Loreto, Silvia Fineschi
Trends in Plant Science|September 21, 2021
How do plants sense volatiles sent by other plants?Francesco Loreto, Sabato D'Auria
Oecologia|March 18, 2017
Water stress, temperature, and light effects on the capacity for isoprene emission and photosynthesis of kudzu leavesThomas D Sharkey, Francesco Loreto
Trends in Plant Science|February 6, 2010
Abiotic stresses and induced BVOCsFrancesco Loreto, Jörg-Peter Schnitzler
Plant Physiology|February 8, 2006
Dimethylallyl diphosphate and geranyl diphosphate pools of plant species characterized by different isoprenoid emissionsIsabel Nogués, Federico Brilli, Francesco Loreto
Journal of Experimental Botany|November 20, 2009
Determinants of ozone fluxes and metrics for ozone risk assessment in plantsSilvano Fares, Allen Goldstein, Francesco Loreto
Trends in Plant Science|March 1, 2017
Trade-Off Between Dimethyl Sulfide and Isoprene Emissions from Marine PhytoplanktonK G Srikanta Dani, Francesco Loreto
Journal of Experimental Botany|March 29, 2014
Isoprene improves photochemical efficiency and enhances heat dissipation in plants at physiological temperaturesSusanna Pollastri, Tsonko Tsonev, Francesco Loreto
Pageof 14