Chromatin-Based Transcriptional Reprogramming in Plants under Abiotic Stresses
Транскрипционная репрограммировка растений на основе хроматина в условиях абиотических стрессов
2022-05-29
SCID: 54.1/j4cbejum
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DNA methylationabiotic stresschromatin remodelinghistone modificationtranscriptional reprogramming
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Abstract (AI)
Plants' stress response machinery is characterized by an intricate network of signaling cascades that receive and transmit environmental cues and ultimately trigger transcriptional reprogramming. The family of epigenetic regulators that are the key players in the stress-induced signaling cascade comprise of chromatin remodelers, histone modifiers, DNA modifiers and regulatory non-coding RNAs. Changes in the histone modification and DNA methylation lead to major alterations in the expression level and pattern of stress-responsive genes to adjust with abiotic stress conditions namely heat, cold, drought and salinity. The spotlight of this review falls primarily on the chromatin restructuring under severe abiotic stresses, crosstalk between epigenetic regulators along with a brief discussion on stress priming in plants.
Key Findings
1
Chromatin remodelers, histone modifiers, DNA modifiers, and regulatory non-coding RNAs act as key epigenetic regulators of stress responses.
2
Chromatin restructuring contributes to plant adaptation to heat, cold, drought, and salinity, with epigenetic regulators exhibiting crosstalk.
3
Plant abiotic-stress responses involve signaling cascades that culminate in transcriptional reprogramming.
4
Stress-induced changes in histone modifications and DNA methylation alter the expression levels and patterns of stress-responsive genes.
5
The review highlights chromatin remodeling under severe abiotic stress and discusses stress priming as an adaptive mechanism.
Research Object
plants under severe abiotic stresses, including heat, cold, drought, and salinity
Research Subject
chromatin restructuring and epigenetic regulation of stress-responsive gene transcription, including histone modifications, DNA methylation, regulator crosstalk, and stress priming
Publication Details
Publication Date
2022-05-29
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