Abiotic and biotic stresses are the main reasons of substantial crop yield losses worldwide. Research devoted to reveal mechanisms of plant reactions during their interactions with the environment are conducted on the level of genome, transcriptome, proteome, and metabolome. Data obtained during these studies would permit to define biochemical and physiological mechanisms of plant resistance or susceptibility to affecting factors/stresses. Metabolomics based on mass spectrometric techniques is an important part of research conducted in the direction of breeding new varieties of crop plants tolerant to the affecting stresses and possessing good agronomical features. Studies of this kind are carried out on model, crop and resurrection plants....
International audienceBiotic and abiotic stresses strongly affect plant growth, quality of productio...
Crop growth and yield often face sophisticated environmental stresses, especially the low availabili...
Biological systems are exceedingly complex. The unraveling of the genome in plants and humans reveal...
Metabolites reflect the integration of gene expression, protein interaction and other different regu...
Heat and drought stresses are presently the principal risk on world's food quantity, limiting yield....
Plant metabolism is profoundly involved in physiological regulation and defence responses when the e...
The breeding of stress-tolerant cultivated plants that would allow for a reduction in harvest losses...
International audienceClimate change and an increasing population, present a massive global challeng...
Changes in plant metabolism are at the heart of plant developmental processes, underpinning many of ...
Plant metabolism is perturbed by various abiotic stresses. As such the metabolic network of plants m...
Abiotic and biotic stresses affect plant physiology and growth. The development of metabolomics, alo...
Jorge TF, Rodrigues JA, Caldana C, et al. Mass spectrometry-based plant metabolomics: Metabolite res...
As genomes of many plant species have been sequenced, demand for functional genomics has dramaticall...
Adverse environmental effects have a significant impact on plants' life and influ-ence the plants' m...
Metabolomics is playing an increasingly important role in plant science. It aims at the comprehensiv...
International audienceBiotic and abiotic stresses strongly affect plant growth, quality of productio...
Crop growth and yield often face sophisticated environmental stresses, especially the low availabili...
Biological systems are exceedingly complex. The unraveling of the genome in plants and humans reveal...
Metabolites reflect the integration of gene expression, protein interaction and other different regu...
Heat and drought stresses are presently the principal risk on world's food quantity, limiting yield....
Plant metabolism is profoundly involved in physiological regulation and defence responses when the e...
The breeding of stress-tolerant cultivated plants that would allow for a reduction in harvest losses...
International audienceClimate change and an increasing population, present a massive global challeng...
Changes in plant metabolism are at the heart of plant developmental processes, underpinning many of ...
Plant metabolism is perturbed by various abiotic stresses. As such the metabolic network of plants m...
Abiotic and biotic stresses affect plant physiology and growth. The development of metabolomics, alo...
Jorge TF, Rodrigues JA, Caldana C, et al. Mass spectrometry-based plant metabolomics: Metabolite res...
As genomes of many plant species have been sequenced, demand for functional genomics has dramaticall...
Adverse environmental effects have a significant impact on plants' life and influ-ence the plants' m...
Metabolomics is playing an increasingly important role in plant science. It aims at the comprehensiv...
International audienceBiotic and abiotic stresses strongly affect plant growth, quality of productio...
Crop growth and yield often face sophisticated environmental stresses, especially the low availabili...
Biological systems are exceedingly complex. The unraveling of the genome in plants and humans reveal...