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We began analyzing https://link.springer.com/article/10.1007/s00438-005-1113-1, but it redirected us to https://link.springer.com/article/10.1007/s00438-005-1113-1. The analysis below is for the second page.

Title[redir]:
Stress induces the expression of AtNADK-1, a gene encoding a NAD(H) kinase in Arabidopsis thaliana | Molecular Genetics and Genomics
Description:
A novel Arabidopsis thaliana gene (AtNADK-1) was identified based on its response to radiation and oxidative stress. Levels of AtNADK-1 mRNA increase eight-fold following exposure to ionising radiation and are enhanced three-fold by treatment with hydrogen peroxide. The gene also appears to be differentially regulated during compatible and incompatible plant-pathogen interactions in response to Pseudomonas syringae pv. tomato. The full-length AtNADK-1 cDNA encodes a 58-kDa protein that shows high sequence homology to the recently defined family of NAD(H) kinases. Recombinant AtNADK-1 utilises ATP to phosphorylate both NAD and NADH, showing a two-fold preference for NADH. Using reverse genetics, we demonstrate that AtNADK-1 deficient plants display enhanced sensitivity to gamma irradiation and to paraquat-induced oxidative stress. Our results indicate that this novel NAD(H) kinase may contribute to the maintenance of redox status in Arabidopsis thaliana.

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  • Education
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Custom-built

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🌠 Phenomenal Traffic: 5M - 10M visitors per month


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Keywords {🔍}

google, scholar, plant, arabidopsis, article, stress, kinase, nad, gene, biochem, nadh, oxidative, cell, mol, biol, atnadk, thaliana, radiation, molecular, genetics, expression, kazmaier, response, access, mitochondrial, privacy, cookies, content, search, pierrugues, brutesco, information, publish, genomics, berrin, alonso, montillet, roby, biology, physiol, chem, saccharomyces, cerevisiae, author, data, log, journal, research, induces, jeanguy,

Topics {✒}

month download article/chapter incompatible plant-pathogen interactions 1o2-escalated jasmonate biosynthesis saint-paul lez durance article molecular genetics paraquat-induced oxidative stress jean-luc montillet chloroplast-localized nad kinase cellular signalling early light-inducible proteins full article pdf dependent isocitrate dehydrogenase privacy choices/manage cookies related subjects ionising radiation induces plant nad+ kinase greene publishing associates plant bio-defence plant disease resistance plant-microorganism interactions article berrin full-length enzyme mitochondrial dna recently defined family arabidopsis thaliana gene arabidopsis thaliana cdnas reverse genetics arabidopsis mutant early plant response cell suspension cultures saccharomyces cerevisiae encodes photooxidative stress caused calmodulin-dependent activity molecular biology author information authors calmodulin-independent activity lipoxygenase-dependent production human nad kinase nad kinase activity european economic area atnadk-1 mrna increase pseudomonas syringae pv closely linked obf obp1-binding sites saccharomyces cerevisiae sensitive active oxygen species laval-martin dl umr cnrs/inra 2594 castanet-tolosan cedex plant cell 8

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            T-DNA insertion mutant
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      headline:Stress induces the expression of AtNADK-1, a gene encoding a NAD(H) kinase in Arabidopsis thaliana
      description:A novel Arabidopsis thaliana gene (AtNADK-1) was identified based on its response to radiation and oxidative stress. Levels of AtNADK-1 mRNA increase eight-fold following exposure to ionising radiation and are enhanced three-fold by treatment with hydrogen peroxide. The gene also appears to be differentially regulated during compatible and incompatible plant-pathogen interactions in response to Pseudomonas syringae pv. tomato. The full-length AtNADK-1 cDNA encodes a 58-kDa protein that shows high sequence homology to the recently defined family of NAD(H) kinases. Recombinant AtNADK-1 utilises ATP to phosphorylate both NAD and NADH, showing a two-fold preference for NADH. Using reverse genetics, we demonstrate that AtNADK-1 deficient plants display enhanced sensitivity to gamma irradiation and to paraquat-induced oxidative stress. Our results indicate that this novel NAD(H) kinase may contribute to the maintenance of redox status in Arabidopsis thaliana.
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         Oxidative stress
         Plant-pathogen interaction
         NAD(H) phosphorylation
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         Human Genetics
         Microbial Genetics and Genomics
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