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Mutations in the Arabidopsis ROL17/isopropylmalate synthase 1 locus alter amino acid content, modify the TOR network, and suppress the root hair cell development mutant lrx1

Authors: Myriam Schaufelberger; Florian Galbier; Aline Herger; Rita de Brito Francisco; Stefan Roffler; Gilles Clement; Anouck Diet; +3 Authors

Mutations in the Arabidopsis ROL17/isopropylmalate synthase 1 locus alter amino acid content, modify the TOR network, and suppress the root hair cell development mutant lrx1

Abstract

The growth and development of organisms must be tightly controlled and adjusted to nutrient availability and metabolic activities. The Target of Rapamycin (TOR) network is a major control mechanism in eukaryotes and influences processes such as translation, mitochondrial activity, production of reactive oxygen species, and the cytoskeleton. In Arabidopsis thaliana, inhibition of the TOR kinase causes changes in cell wall architecture and suppression of phenotypic defects of the cell wall formation mutant lrx1 (leucine-rich repeat extensin 1). The rol17 (repressor of lrx1 17) mutant was identified as a new suppressor of lrx1 that induces also a short root phenotype. The ROL17 locus encodes isopropylmalate synthase 1, a protein involved in leucine biosynthesis. Dependent on growth conditions, mutations in ROL17 do not necessarily alter the level of leucine, but always cause development of the rol17 mutant phenotypes, suggesting that the mutation does not only influence leucine biosynthesis. Changes in the metabolome of rol17 mutants are also found in plants with inhibited TOR kinase activity. Furthermore, rol17 mutants show reduced sensitivity to the TOR kinase inhibitor AZD-8055, indicating a modified TOR network. Together, these data suggest that suppression of lrx1 by rol17 is the result of an alteration of the TOR network.

Journal of Experimental Botany, 70 (8)

ISSN:1460-2431

ISSN:0022-0957

Countries
Switzerland, France, France, France
Keywords

570, IPMS1, Physiology, [SPI.GPROC] Engineering Sciences [physics]/Chemical and Process Engineering, [SDV]Life Sciences [q-bio], Arabidopsis, Plant Science, 580 Plants (Botany), lrx1, Plant Roots, Organogenesis, Plant, Phosphatidylinositol 3-Kinases, 10126 Department of Plant and Microbial Biology, Leucine, [SDV.IDA]Life Sciences [q-bio]/Food engineering, 1110 Plant Science, azd-8055, [SDV.BV]Life Sciences [q-bio]/Vegetal Biology, [SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineering, [SDV.BV] Life Sciences [q-bio]/Vegetal Biology, Arabidopsis; AZD-8055; IPMS1; leucine; leucine-rich repeat extensin; LRX1; rol17; root; root hair; TOR, LRX1, 580, Arabidopsis Proteins, rol17, 1314 Physiology, TOR, [SDV.IDA] Life Sciences [q-bio]/Food engineering, root, Research Papers, leucine-rich repeat extensin, AZD-8055, [SDV] Life Sciences [q-bio], ipms1, arabidopsis, Phenotype, Glucosyltransferases, Mutation, leucine, Signal Transduction, root hair

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citations
This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Citations provided by BIP!
popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
BIP!Popularity provided by BIP!
influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Influence provided by BIP!
impulse
This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.
BIP!Impulse provided by BIP!
45
Top 10%
Top 10%
Top 10%
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