Linolenic acid (Ln) released from chloroplast membrane galactolipids is a precursor of the phytohormone jasmonic acid (JA). The involvement of this hormone in different plant biological processes, such as responses to biotic stress conditions, has been extensively studied. However, the role of Ln in the regulation of gene expression during abiotic stress situations mediated by cellular redox changes and/or by oxidative stress processes remains poorly understood. An RNA-seq approach has increased our knowledge of the interplay among Ln, oxidative stress and ROS signaling that mediates abiotic stress conditions. Transcriptome analysis with the aid of RNA-seq in the absence of oxidative stress revealed that the incubation of Arabidopsis thalia...
Transcriptomic Footprints Disclose Specificity of Reactive Oxygen Species Signaling in Arabidopsis1,...
Transcriptomic Footprints Disclose Specificity of Reactive Oxygen Species Signaling in Arabidopsis1,...
Excess excitation energy, mechanical injury and defence against pathogens, each trigger rapid produc...
Plants are continuously exposed to a wide range of environmental conditions, including cold, drought...
Plants have evolved with intricate mechanisms to cope with multiple environmental stresses. To adapt...
Recently, we reported that the novel mitochondrial RNA editing factor SLO2 is essential for mitochon...
Recently, we reported that the novel mitochondrial RNA editing factor SLO2 is essential for mitochon...
Plants have evolved with intricate mechanisms to cope with multiple environmental stresses. To adapt...
Reactive oxygen species ( ROS) are key players in the regulation of plant development, stress respon...
Transcriptomic Footprints Disclose Specificity of Reactive Oxygen Species Signaling in Arabidopsis1,...
Reactive oxygen species ( ROS) are key players in the regulation of plant development, stress respon...
Background: Reactive oxygen species (ROS) are unavoidable by-products of oxygenic photosynthesis, ca...
Excess excitation energy, mechanical injury and defence against pathogens, each trigger rapid produc...
Transcriptomic Footprints Disclose Specificity of Reactive Oxygen Species Signaling in Arabidopsis1,...
Transcriptomic Footprints Disclose Specificity of Reactive Oxygen Species Signaling in Arabidopsis1,...
Transcriptomic Footprints Disclose Specificity of Reactive Oxygen Species Signaling in Arabidopsis1,...
Transcriptomic Footprints Disclose Specificity of Reactive Oxygen Species Signaling in Arabidopsis1,...
Excess excitation energy, mechanical injury and defence against pathogens, each trigger rapid produc...
Plants are continuously exposed to a wide range of environmental conditions, including cold, drought...
Plants have evolved with intricate mechanisms to cope with multiple environmental stresses. To adapt...
Recently, we reported that the novel mitochondrial RNA editing factor SLO2 is essential for mitochon...
Recently, we reported that the novel mitochondrial RNA editing factor SLO2 is essential for mitochon...
Plants have evolved with intricate mechanisms to cope with multiple environmental stresses. To adapt...
Reactive oxygen species ( ROS) are key players in the regulation of plant development, stress respon...
Transcriptomic Footprints Disclose Specificity of Reactive Oxygen Species Signaling in Arabidopsis1,...
Reactive oxygen species ( ROS) are key players in the regulation of plant development, stress respon...
Background: Reactive oxygen species (ROS) are unavoidable by-products of oxygenic photosynthesis, ca...
Excess excitation energy, mechanical injury and defence against pathogens, each trigger rapid produc...
Transcriptomic Footprints Disclose Specificity of Reactive Oxygen Species Signaling in Arabidopsis1,...
Transcriptomic Footprints Disclose Specificity of Reactive Oxygen Species Signaling in Arabidopsis1,...
Transcriptomic Footprints Disclose Specificity of Reactive Oxygen Species Signaling in Arabidopsis1,...
Transcriptomic Footprints Disclose Specificity of Reactive Oxygen Species Signaling in Arabidopsis1,...
Excess excitation energy, mechanical injury and defence against pathogens, each trigger rapid produc...