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Vitis labrusca L. grapes are largely cultivated in Brazil, but the tropical climate affect negatively the phenols content, especially anthocyanin. Therefore, researches are focusing on increase grape phenols content; with methyl jasmonate application (MeJa) considered a good alternative.

T...

2020-05-26 | MTBLS784 | MetaboLights

Grape juice is a major source of potential health-promoting bioactive polyphenols, especially for children and those who do not consume wine. Since the subtropical climate may negatively affect the concentrations of grape polyphenols, especially anthocyanins, elicitors such as methyl jasmonate (M...

2022-06-28 | MTBLS2401 | MetaboLights
Foliar stomatal movements are critical for regulating plant water loss and gas exchange. Elevated carbon dioxide (CO2) levels are known to induce stomatal closure. However, the current knowledge on CO2 signal transduction in stomatal guard cells is limited. Here we report metabolomic responses of Br...
2017-04-25 | MTBLS312 | MetaboLights
Endophytic fungi can mediate salicylic acid (SA)- and methyl jasmonate (MeJA)-related signaling in medicinal plants, thereby influencing metabolite synthesis, stress resistance, and growth development. Experimental groups comprised control, Trichoderma longibrachiatum inoculation (FG), FG+SA (FS), F...
2026-04-16 | MTBLS14293 | MetaboLights
Endophytic fungi can mediate salicylic acid (SA)- and methyl jasmonate (MeJA)-related signaling in medicinal plants, thereby influencing metabolite synthesis, stress resistance, and growth development. Experimental groups comprised control, Trichoderma longibrachiatum inoculation (FG), FG+SA (FS), F...
2026-04-22 | MTBLS14304 | MetaboLights
Not available
ORGANISM(S): Arabidopsis thaliana 
Centella asiatica is an important medicinal plant with a wide range of bioactivities associated with its secondary metabolites. Using two extraction procedures, metabolomic approaches were used to investigate changes in the metabolome of C. asiatica cells treated with exogenous MeJA. GC–MS and LC–MS...
2015-03-03 | MTBLS175 | MetaboLights

Endophytic fungi and phytohormone signaling can jointly influence growth–defense trade-offs in medicinal plants by reprogramming metabolism in a stage-dependent manner. To elucidate how the endophytic fungus Trichoderma longibrachiatum FG and exogenous salicylic acid (SA) and methyl jasmonat...

2026-03-24 | MTBLS14124 | MetaboLights
Comparison of mock-treated vs. methyl jasmonate-treated (6 hours, 0.1 uM) wild type (Col-0) vs. myc2 (jin1-9) mutant Arabidopsis lines. Note: an error in the processing of the normalized data was noticed November 2008. Corrected data was reloaded 1st December 2008.
ORGANISM(S): Arabidopsis thaliana 
Illumina HiSeq technology was used to generate mRNA profiles from Populus tremula x alba INRA 717-1B4 roots treated with Methyl jasmonate. Samples were harvested after two weeks either from untreated control roots or from Methyl jasmonate treated roots. Paired-end (2X100bp) reads were generated and ...
ORGANISM(S): Populus tremula x Populus alba 
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