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Cited 10 time in webofscience Cited 14 time in scopus
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Nucleoredoxin 1 positively regulates heat stress tolerance by enhancing the transcription of antioxidants and heat-shock proteins in tomato

Authors
Cha, J.-Y.Ahn, G.Jeong, S.Y.Shin, G.-I.Ali, I.Ji, M.G.Alimzhan, A.Lee, S.Y.Kim, M.G.Kim, W.-Y.
Issue Date
Dec-2022
Publisher
Academic Press
Keywords
Antioxidant; Heat stress; Nucleoredoxin; Oxidative stress; Reactive oxygen species; Tomato
Citation
Biochemical and Biophysical Research Communications, v.635, pp 12 - 18
Pages
7
Indexed
SCIE
SCOPUS
Journal Title
Biochemical and Biophysical Research Communications
Volume
635
Start Page
12
End Page
18
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/29913
DOI
10.1016/j.bbrc.2022.10.033
ISSN
0006-291X
1090-2104
Abstract
Thioredoxins (TRXs) are small oxidoreductase proteins located in various subcellular compartments. Nucleoredoxin (NRX) is a nuclear-localized TRX and a key component for the integration of the antioxidant system with the immune response. Although NRX is well characterized in biotic stress responses, its functional role in abiotic stress responses is still elusive. To understand whether NRX contributes to heat stress response in tomato (Solanum lycopersicum), we generated CRISPR/Cas9-mediated mutations in SlNRX1 (slnrx1). Interestingly, the slnrx1 mutant was extremely sensitive to heat stress with higher electrolyte leakage, malondialdehyde contents, and H2O2 concentration compared to wild-type tomato plants, suggesting that SlNRX1 negatively regulates heat stress-induced oxidative damage. We also found that transcripts encoding antioxidant enzymes and Heat-Shock Proteins (HSPs) in slnrx1 were down-regulated either in the absence or presence of heat stress. These data suggest that NRX1 is a positive regulator for heat stress tolerance by elevating antioxidant capacity and inducing HSPs to protect cells against heat stress-induced oxidative damage and protein denaturation, respectively. © 2022 Elsevier Inc.
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