Javascript must be enabled to continue!
MEDIATOR SUBUNIT17 integrates jasmonate and auxin signaling pathways to regulate thermomorphogenesis
View through CrossRef
Abstract
Plant adjustment to environmental changes involves complex crosstalk between extrinsic and intrinsic cues. In the past two decades, extensive research has elucidated the key roles of PHYTOCHROME-INTERACTING FACTOR4 (PIF4) and the phytohormone auxin in thermomorphogenesis. In this study, we identified a previously unexplored role of jasmonate (JA) signaling components, the Mediator complex, and their integration with auxin signaling during thermomorphogenesis in Arabidopsis (Arabidopsis thaliana). Warm temperature induces expression of JA signaling genes including MYC2, but, surprisingly, this transcriptional activation is not JA dependent. Warm temperature also promotes accumulation of the JA signaling receptor CORONATINE INSENSITIVE1 (COI1) and degradation of the JA signaling repressor JASMONATE-ZIM-DOMAIN PROTEIN9, which probably leads to de-repression of MYC2, enabling it to contribute to the expression of MEDIATOR SUBUNIT17 (MED17). In response to warm temperature, MED17 occupies the promoters of thermosensory genes including PIF4, YUCCA8 (YUC8), INDOLE-3-ACETIC ACID INDUCIBLE19 (IAA19), and IAA29. Moreover, MED17 facilitates enrichment of H3K4me3 on the promoters of PIF4, YUC8, IAA19, and IAA29 genes. Interestingly, both occupancy of MED17 and enrichment of H3K4me3 on these thermomorphogenesis-related promoters are dependent on PIF4 (or PIFs). Altered accumulation of COI1 under warm temperature in the med17 mutant suggests the possibility of a feedback mechanism. Overall, this study reveals the role of the Mediator complex as an integrator of JA and auxin signaling pathways during thermomorphogenesis.
Oxford University Press (OUP)
Title: MEDIATOR SUBUNIT17 integrates jasmonate and auxin signaling pathways to regulate thermomorphogenesis
Description:
Abstract
Plant adjustment to environmental changes involves complex crosstalk between extrinsic and intrinsic cues.
In the past two decades, extensive research has elucidated the key roles of PHYTOCHROME-INTERACTING FACTOR4 (PIF4) and the phytohormone auxin in thermomorphogenesis.
In this study, we identified a previously unexplored role of jasmonate (JA) signaling components, the Mediator complex, and their integration with auxin signaling during thermomorphogenesis in Arabidopsis (Arabidopsis thaliana).
Warm temperature induces expression of JA signaling genes including MYC2, but, surprisingly, this transcriptional activation is not JA dependent.
Warm temperature also promotes accumulation of the JA signaling receptor CORONATINE INSENSITIVE1 (COI1) and degradation of the JA signaling repressor JASMONATE-ZIM-DOMAIN PROTEIN9, which probably leads to de-repression of MYC2, enabling it to contribute to the expression of MEDIATOR SUBUNIT17 (MED17).
In response to warm temperature, MED17 occupies the promoters of thermosensory genes including PIF4, YUCCA8 (YUC8), INDOLE-3-ACETIC ACID INDUCIBLE19 (IAA19), and IAA29.
Moreover, MED17 facilitates enrichment of H3K4me3 on the promoters of PIF4, YUC8, IAA19, and IAA29 genes.
Interestingly, both occupancy of MED17 and enrichment of H3K4me3 on these thermomorphogenesis-related promoters are dependent on PIF4 (or PIFs).
Altered accumulation of COI1 under warm temperature in the med17 mutant suggests the possibility of a feedback mechanism.
Overall, this study reveals the role of the Mediator complex as an integrator of JA and auxin signaling pathways during thermomorphogenesis.
Related Results
All That JAZ
All That JAZ
The intoxicating scent of jasmine depends in part on jasmonates, fatty acid-derived hormones implicated in plant defense and development. Jasmonate signaling in plants depends on C...
From cold acclimation to thermomorphogenesis: a phosphoproteomics approach to decipher acclimation across the temperature spectrum
From cold acclimation to thermomorphogenesis: a phosphoproteomics approach to decipher acclimation across the temperature spectrum
Climate change is leading to more irregular weather patterns, such as heat waves and cold spells, which negatively affect ecosystems and agriculture. The resulting temperature extr...
Auxin Information Processing; Partners and Interactions beyond the Usual Suspects
Auxin Information Processing; Partners and Interactions beyond the Usual Suspects
Auxin plays a major role in a variety of processes involved in plant developmental patterning and its adaptation to environmental conditions. Therefore, an important question is ho...
Microrna Regulation of Nodule Zone-Specific Gene Expression In Soybean
Microrna Regulation of Nodule Zone-Specific Gene Expression In Soybean
Nitrogen is a paramount important essential element for all living organisms. It has been found to bea crucial structural component of proteins, nucleic acids, enzymes and other ce...
Jasmonate signaling coordinates with the SOD7–KLU pathway to regulate seed size in Arabidopsis thaliana
Jasmonate signaling coordinates with the SOD7–KLU pathway to regulate seed size in Arabidopsis thaliana
Abstract
Seed size is crucial for crop yield and plant ecological fitness. The phytohormone jasmonate regulates Arabidopsis thaliana seed size, but the underlying mo...
Role of GOBLET and Auxin in Controlling Organ Development and Patterning
Role of GOBLET and Auxin in Controlling Organ Development and Patterning
The size and shape of plant leaves are extremely diverse within and among species, and are also sensitive to growth conditions. Compound leaves, such as those of tomato, maintain m...
Exogenous Methyl Jasmonate Mediated Physiological and Transcriptomic Network Improves Thrips tolerance in alfalfa (Medicago Sativa. L)
Exogenous Methyl Jasmonate Mediated Physiological and Transcriptomic Network Improves Thrips tolerance in alfalfa (Medicago Sativa. L)
Abstract
Exogenous methyl jasmonate is widely acknowledged for its role in triggering plants' defense systems against pest invasions. Nonetheless, there has been a dearth o...
Transcriptional regulators of stamen development in Arabidopsis identified by transcriptional profiling
Transcriptional regulators of stamen development in Arabidopsis identified by transcriptional profiling
SummaryIn Arabidopsis, jasmonate is required for stamen and pollen maturation. Mutants deficient in jasmonate synthesis, such as opr3, are male‐sterile but become fertile when jasm...

