Patterns of Metabolite Changes Identified from Large-Scale Gene Perturbations in Arabidopsis Using a Genome-Scale Metabolic Network

dc.contributor.author Kim, Taehyong
dc.contributor.author Dreher, Kate
dc.contributor.author Nilo-Poyanco, Ricardo
dc.contributor.author Wurtele, Eve
dc.contributor.author Lee, Insuk
dc.contributor.author Fiehn, Oliver
dc.contributor.author Lange, Bernd Markus
dc.contributor.author Nikolau, Basil
dc.contributor.author Sumner, Lloyd
dc.contributor.author Welti, Ruth
dc.contributor.author Rhee, Seung
dc.contributor.department Roy J. Carver Department of Biochemistry, Biophysics and Molecular Biology (CALS)
dc.contributor.department Department of Genetics, Development, and Cell Biology (LAS)
dc.contributor.department Biochemistry, Biophysics and Molecular Biology, Roy J. Carver Department of
dc.contributor.department Center for Metabolic Biology
dc.date 2019-06-26T01:23:18.000
dc.date.accessioned 2020-06-29T23:46:34Z
dc.date.available 2020-06-29T23:46:34Z
dc.date.copyright Thu Jan 01 00:00:00 UTC 2015
dc.date.issued 2015-04-01
dc.description.abstract <p>Metabolomics enables quantitative evaluation of metabolic changes caused by genetic or environmental perturbations. However, little is known about how perturbing a single gene changes the metabolic system as a whole and which network and functional properties are involved in this response. To answer this question, we investigated the metabolite profiles from 136 mutants with single gene perturbations of functionally diverse Arabidopsis (<em>Arabidopsis thaliana</em>) genes. Fewer than 10 metabolites were changed significantly relative to the wild type in most of the mutants, indicating that the metabolic network was robust to perturbations of single metabolic genes. These changed metabolites were closer to each other in a genome-scale metabolic network than expected by chance, supporting the notion that the genetic perturbations changed the network more locally than globally. Surprisingly, the changed metabolites were close to the perturbed reactions in only 30% of the mutants of the well-characterized genes. To determine the factors that contributed to the distance between the observed metabolic changes and the perturbation site in the network, we examined nine network and functional properties of the perturbed genes. Only the isozyme number affected the distance between the perturbed reactions and changed metabolites. This study revealed patterns of metabolic changes from large-scale gene perturbations and relationships between characteristics of the perturbed genes and metabolic changes.</p>
dc.description.comments <p>This article is published as Kim, Taehyong, Kate Dreher, Ricardo Nilo-Poyanco, Insuk Lee, Oliver Fiehn, Bernd Markus Lange, Basil J. Nikolau et al. "Patterns of metabolite changes identified from large-scale gene perturbations in Arabidopsis using a genome-scale metabolic network." <em>Plant physiology</em> 167, no. 4 (2015): 1685-1698. doi: <a href="http://dx.doi.org/10.1104/pp.114.252361" target="_blank">10.1104/pp.114.252361</a>. Copyright American Society of Plant Biologists. Posted with permission.</p>
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dc.identifier archive/lib.dr.iastate.edu/bbmb_ag_pubs/221/
dc.identifier.articleid 1229
dc.identifier.contextkey 14406456
dc.identifier.s3bucket isulib-bepress-aws-west
dc.identifier.submissionpath bbmb_ag_pubs/221
dc.identifier.uri https://dr.lib.iastate.edu/handle/20.500.12876/10690
dc.language.iso en
dc.source.bitstream archive/lib.dr.iastate.edu/bbmb_ag_pubs/221/2015_Nikolau_PatternsMetabolite.pdf|||Fri Jan 14 22:42:12 UTC 2022
dc.source.uri 10.1104/pp.114.252361
dc.subject.disciplines Biochemistry, Biophysics, and Structural Biology
dc.subject.disciplines Cell and Developmental Biology
dc.subject.disciplines Genetics and Genomics
dc.title Patterns of Metabolite Changes Identified from Large-Scale Gene Perturbations in Arabidopsis Using a Genome-Scale Metabolic Network
dc.type article
dc.type.genre article
dspace.entity.type Publication
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