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miRNAs mediate SnRK1-dependent energy signaling in Arabidopsis

Overview of attention for article published in Frontiers in Plant Science, January 2013
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Title
miRNAs mediate SnRK1-dependent energy signaling in Arabidopsis
Published in
Frontiers in Plant Science, January 2013
DOI 10.3389/fpls.2013.00197
Pubmed ID
Authors

Ana Confraria, Cláudia Martinho, Alexandre Elias, Ignacio Rubio-Somoza, Elena Baena-González

Abstract

The SnRK1 protein kinase, the plant ortholog of mammalian AMPK and yeast Snf1, is activated by the energy depletion caused by adverse environmental conditions. Upon activation, SnRK1 triggers extensive transcriptional changes to restore homeostasis and promote stress tolerance and survival partly through the inhibition of anabolism and the activation of catabolism. Despite the identification of a few bZIP transcription factors as downstream effectors, the mechanisms underlying gene regulation, and in particular gene repression by SnRK1, remain mostly unknown. microRNAs (miRNAs) are 20-24 nt RNAs that regulate gene expression post-transcriptionally by driving the cleavage and/or translation attenuation of complementary mRNA targets. In addition to their role in plant development, mounting evidence implicates miRNAs in the response to environmental stress. Given the involvement of miRNAs in stress responses and the fact that some of the SnRK1-regulated genes are miRNA targets, we postulated that miRNAs drive part of the transcriptional reprogramming triggered by SnRK1. By comparing the transcriptional response to energy deprivation between WT and dcl1-9, a mutant deficient in miRNA biogenesis, we identified 831 starvation genes misregulated in the dcl1-9 mutant, out of which 155 are validated or predicted miRNA targets. Functional clustering analysis revealed that the main cellular processes potentially co-regulated by SnRK1 and miRNAs are translation and organelle function and uncover TCP transcription factors as one of the most highly enriched functional clusters. TCP repression during energy deprivation was impaired in miR319 knockdown (MIM319) plants, demonstrating the involvement of miR319 in the stress-dependent regulation of TCPs. Altogether, our data indicates that miRNAs are components of the SnRK1 signaling cascade contributing to the regulation of specific mRNA targets and possibly tuning down particular cellular processes during the stress response.

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 124 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Germany 2 2%
Portugal 1 <1%
Slovenia 1 <1%
Unknown 120 97%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 37 30%
Student > Master 21 17%
Researcher 18 15%
Student > Doctoral Student 10 8%
Student > Bachelor 6 5%
Other 15 12%
Unknown 17 14%
Readers by discipline Count As %
Agricultural and Biological Sciences 84 68%
Biochemistry, Genetics and Molecular Biology 18 15%
Business, Management and Accounting 1 <1%
Psychology 1 <1%
Chemistry 1 <1%
Other 1 <1%
Unknown 18 15%
Attention Score in Context

Attention Score in Context

This research output has an Altmetric Attention Score of 1. This is our high-level measure of the quality and quantity of online attention that it has received. This Attention Score, as well as the ranking and number of research outputs shown below, was calculated when the research output was last mentioned on 20 June 2013.
All research outputs
#20,195,024
of 22,712,476 outputs
Outputs from Frontiers in Plant Science
#15,848
of 19,948 outputs
Outputs of similar age
#248,758
of 280,743 outputs
Outputs of similar age from Frontiers in Plant Science
#241
of 517 outputs
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