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  6. Synchronization of Developmental Processes and Defense Signaling by Growth Regulating Transcription Factors
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Synchronization of Developmental Processes and Defense Signaling by Growth Regulating Transcription Factors

Source Publication
PLOS One
Date Issued
May 29, 2014
Author(s)
Liu, Jinyi  
Rice, John Hollis  
Chen, Nana  
Baum, Thomas J.
Hewezi, Tarek  
DOI
10.1371/journal.pone.0098477
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/50514
Abstract

Growth regulating factors (GRFs) are a conserved class of transcription factor in seed plants. GRFs are involved in various aspects of tissue differentiation and organ development. The implication of GRFs in biotic stress response has also been recently reported, suggesting a role of these transcription factors in coordinating the interaction between developmental processes and defense dynamics. However, the molecular mechanisms by which GRFs mediate the overlaps between defense signaling and developmental pathways are elusive. Here, we report large scale identification of putative target candidates of Arabidopsis GRF1 and GRF3 by comparing mRNA profiles of the grf1/grf2/grf3 triple mutant and those of the transgenic plants overexpressing miR396-resistant version of GRF1 or GRF3. We identified 1,098 and 600 genes as putative targets of GRF1 and GRF3, respectively. Functional classification of the potential target candidates revealed that GRF1 and GRF3 contribute to the regulation of various biological processes associated with defense response and disease resistance. GRF1 and GRF3 participate specifically in the regulation of defense-related transcription factors, cell-wall modifications, cytokinin biosynthesis and signaling, and secondary metabolites accumulation. GRF1 and GRF3 seem to fine-tune the crosstalk between miRNA signaling networks by regulating the expression of several miRNA target genes. In addition, our data suggest that GRF1 and GRF3 may function as negative regulators of gene expression through their association with other transcription factors. Collectively, our data provide new insights into how GRF1 and GRF3 might coordinate the interactions between defense signaling and plant growth and developmental pathways.

Disciplines
Agricultural Science
Agriculture
Plant Sciences
Comments

This article was published openly thanks to the University of Tennessee Open Publishing Support Fund.


Licensed under a Creative Commons Attribution 4.0 International license.

Recommended Citation
Liu J, Rice JH, Chen N, Baum TJ, Hewezi T (2014) Synchronization of Developmental Processes and Defense Signaling by Growth Regulating Transcription Factors. PLOS ONE 9(5): e98477. https://doi.org/10.1371/journal.pone.0098477
Submission Type
Publisher's Version
Embargo Date
November 4, 2015
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Hewezi_Synchronization.pdf

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Checksum (MD5)

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