Isoprenoids are among the most abundant biogenic volatile compounds (VOCs) emitted by plants, and mediate both biotic and abiotic stress responses. Here, we provide for the first time a comparative analysis of transgenic Arabidopsis lines constitutively emitting isoprene and ocimene. Transgenic lines and Columbia-0 (Col-0) Arabidopsis were characterized under optimal, water stress, and heat stress conditions. Under optimal conditions, the projected leaf area (PLA), relative growth rate, and final dry weight were generally higher in transgenics than Col-0. These traits were associated to a larger photosynthetic capacity and CO2 assimilation rate at saturating light. Isoprene and ocimene emitters displayed a moderately higher stress to...
Imbalance-p paper contact with Marcos Fernández: m.fernandez@creaf.uab.catThe emission of isoprenoid...
Isoprene strengthens thylakoid membranes and scavenges stress-induced oxidative species. The idea th...
Isoprene emission represents a significant loss of carbon to those plant species that synthesize thi...
Isoprenoids are among the most abundant biogenic volatile compounds (VOCs) emitted by plants, and m...
Isoprene is the most abundant single biogenic volatile compound emitted by plants. Despite the rele...
Isoprene is the most abundant single biogenic volatile compound emitted by plants. Despite the relev...
Isoprene is a volatile compound emitted from leaves of many plant species in large quantities, which...
International audienceIsoprene, the main volatile released by plants, is known to protect the photos...
Isoprene is a small lipophilic molecule synthesized in plastids and abundantly released into the atm...
Isoprene is a highly reactive volatile organic compound (VOC) affecting the oxidative capacity of a...
Isoprene is the most abundant biogenic volatile hydrocarbon compound naturally emitted by plants and...
Isoprene is the most abundant biogenic volatile organic compound emitted from vegetation and has be...
Isoprene protects the photosynthetic apparatus of isoprene-emitting plants from oxidative stress. Th...
Imbalance-p paper contact with Marcos Fernández: m.fernandez@creaf.uab.catThe emission of isoprenoid...
Isoprene strengthens thylakoid membranes and scavenges stress-induced oxidative species. The idea th...
Isoprene emission represents a significant loss of carbon to those plant species that synthesize thi...
Isoprenoids are among the most abundant biogenic volatile compounds (VOCs) emitted by plants, and m...
Isoprene is the most abundant single biogenic volatile compound emitted by plants. Despite the rele...
Isoprene is the most abundant single biogenic volatile compound emitted by plants. Despite the relev...
Isoprene is a volatile compound emitted from leaves of many plant species in large quantities, which...
International audienceIsoprene, the main volatile released by plants, is known to protect the photos...
Isoprene is a small lipophilic molecule synthesized in plastids and abundantly released into the atm...
Isoprene is a highly reactive volatile organic compound (VOC) affecting the oxidative capacity of a...
Isoprene is the most abundant biogenic volatile hydrocarbon compound naturally emitted by plants and...
Isoprene is the most abundant biogenic volatile organic compound emitted from vegetation and has be...
Isoprene protects the photosynthetic apparatus of isoprene-emitting plants from oxidative stress. Th...
Imbalance-p paper contact with Marcos Fernández: m.fernandez@creaf.uab.catThe emission of isoprenoid...
Isoprene strengthens thylakoid membranes and scavenges stress-induced oxidative species. The idea th...
Isoprene emission represents a significant loss of carbon to those plant species that synthesize thi...