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Thorium impact on tobacco root transcriptome

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    0473850 - ÚEB 2018 RIV NL eng J - Journal Article
    Mazari, Kateřina - Landa, Přemysl - Přerostová, Sylva - Müller, Karel - Vaňková, Radomíra - Soudek, Petr - Vaněk, Tomáš
    Thorium impact on tobacco root transcriptome.
    Journal of Hazardous Materials. Roč. 325, MAR 5 (2017), s. 163-169. ISSN 0304-3894. E-ISSN 1873-3336
    R&D Projects: GA MŠMT(CZ) LD11073; GA MŠMT(CZ) LD13029
    Institutional support: RVO:61389030
    Keywords : arabidopsis-thaliana roots * juncea var. foliosa * cadmium accumulation * deficiency responses * mineral-nutrition * gene-expression * plant transfer * iron uptake * uranium * soil * Microarray * Thorium * Gene expression * Toxicity * Nicotiana tabacum
    OECD category: Plant sciences, botany
    Impact factor: 6.434, year: 2017

    Thorium is natural actinide metal with potential use in nuclear energetics. Contamination by thorium, originated from mining activities or spills, represents environmental risk due to its radioactivity and chemical toxicity. A promising approach for cleaning of contaminated areas is phytoremediation, which need to be based, however, on detail understanding of the thorium effects on plants. In this study we investigated transcriptomic response of tobacco roots exposed to 200 mu M thorium for one week. Thorium application resulted in up-regulation of 152 and down-regulation of 100 genes (p-value <0.01, fold change >= 2). The stimulated genes were involved in components of jasmonic acid and salicylic acid signaling pathways and various abiotic (e.g. oxidative stress) and biotic stress (e.g. pathogens, wounding) responsive genes. Further, up-regulation of phosphate starvation genes and down-regulation of genes involved in phytic acid biosynthesis indicated that thorium disturbed phosphate uptake or signaling. Also expression of iron responsive genes was influenced. Negative regulation of several aquaporins indicated disturbance of water homeostasis. Genes potentially involved in thorium transport could be zinc-induced facilitator ZIF2, plant cadmium resistance PCR2, and ABC transporterABCG40. This study provides the first insight at the processes in plants exposed to thorium.
    Permanent Link: http://hdl.handle.net/11104/0270974

     
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