Frontiers How Salicylic Acid Takes Transcriptional 2020
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Frontiers How salicylic acid takes transcriptional.

Mar 25, 2015 · How salicylic acid takes transcriptional control over jasmonic acid signaling.SA-induced redox changes, mediated by thioredoxins and glutaredoxins, modify transcriptional regulators that are involved in suppression of JA-dependent genes, such as NPR1 and TGA transcription factors, which affects their localization or DNA binding activity. Mar 25, 2015 · Salicylic acid may also antagonize JA-inducible gene transcription by inducing the expression of genes encoding transcriptional regulators that interfere with JA signaling. These SA-induced regulators could inhibit a positive regulator of JA-inducible gene expression by interacting with it, as is described for the GRX480-TGA interaction in “Role of Reduction of Transcriptional Regulators. SCM 2015 How salicylic acid takes transcriptional control over jasmonic acid signaling. Front. Plant Sci. 6:170. doi: 10.3389/fpls.2015.00170 How salicylic acid takes transcriptional control.

Mar 25, 2015 · How salicylic acid takes transcriptional control over jasmonic acid signaling Article PDF Available in Frontiers in Plant Science 6170:170 · March. Apr 16, 2019 · Salicylic acid SA is a plant hormone that has been described to play an essential role in the activation and regulation of multiple responses to biotic and to abiotic stresses. In particular, during plant-microbe interactions, as part of the defense mechanisms, SA is initially accumulated at the local infected tissue and then spread all over the plant to induce systemic acquired resistance. Title: How salicylic acid takes transcriptional control over jasmonic acid signaling: Authors: Caarls, L., Pieterse, C. M., Van Wees, S. C. Type. In plants, salicylic acid SA plays important roles in regulating immunity and programed cell death. Early studies revealed that increased SA accumulation is associated with the onset of hypersensitive reaction during resistance gene-mediated defense responses. SA was also found to accumulate to high levels in lesion-mimic mutants and in some cases the accumulation of SA is required for the.

Mar 19, 2015 · It is well established that salicylic acid SA plays a critical role in the transcriptional reprograming that occurs during the plant defense response against biotic and abiotic stress. In the course of the defense response, the transcription of different sets of defense genes is controlled in a spatio-temporal manner via SA-mediated mechanisms. The small phenolic compound salicylic acid SA is critical for plant defense against a broad spectrum of pathogens and responses to different abiotic stress conditions. Particularly in response to pathogens, SA is involved in multiple processes, including basal and resistance gene-mediated defense as well as systemic acquired resistance SAR. Oct 18, 2019 · Plant hormones play central roles in plant growth, developmental processes, and plant response to biotic and abiotic stresses. On the one hand, plant hormones may allocate limited resources to the most serious stresses; on the other hand, the crosstalks among multiple plant hormone signaling regulate the balance between plant growth and defense.

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Info: Editorial contributions currently displayed are for Frontiers articles published after 01/01/2014 only. How salicylic acid takes transcriptional control over jasmonic acid signaling Lotte Caarls. HDA19 is required for the repression of salicylic acid biosynthesis and salicylic acid‐mediated defense responses in Arabidopsis. a Model for Perennial Crop Plants, Frontiers in Plant Science, 08, 2017. Crossref., How salicylic acid takes transcriptional control over jasmonic acid signaling, Frontiers in Plant Science, 6, 2015. Aug 07, 2018 · In plants, salicylic acid SA plays important roles in regulating immunity and programed cell death. Early studies revealed that increased SA accumulation is associated with the onset of hypersensitive reaction during resistance gene-mediated defense responses. SA was also found to. It is well established that salicylic acid SA plays a critical role in the transcriptional reprograming that occurs during the plant defense response against biotic and abiotic stress. In the course of the defense response, the transcription of different sets of defense genes is controlled in a spatio-temporal manner via SA-mediated mechanisms.

Dec 09, 2014 · Salicylic acid signal transduction: the initiation of biosynthesis, perception and transcriptional reprogramming Carolin Seyfferth and Kenichi Tsuda Department of Plant Microbe Interactions, Max Planck Institute for Plant Breeding Research, Cologne, Germany. A dominant-interfering camta3 mutation compromises primary transcriptional outputs mediated by both cell surface and intracellular immune receptors in Arabidopsis thaliana. Salicylic acid signal transduction: the initiation of biosynthesis, perception and transcriptional reprogramming. Frontiers In and Loop are registered trade marks of. The phytohormone salicylic acid SA is a small phenolic compound that regulates diverse physiological processes, in particular plant resistance against pathogens. Understanding SA-mediated signaling has been a major focus of plant research. Pathogen-induced SA is mainly synthesized via the isochorismate pathway in chloroplasts, with ICS1 ISOCHORISMATE SYNTHASE 1 being a critical enzyme.

Frontiers EditorialSalicylic Acid Signaling Networks.

May 26, 2016 · Salicylic acid SA is a critical plant hormone that is involved in many processes, including seed germination, root initiation, stomatal closure, floral induction, thermogenesis, and response to abiotic and biotic stresses. Its central role in plant immunity, although extensively studied, is still only partially understood.

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