LeGRXS14 Reduces Salt Stress Tolerance in Arabidopsis thaliana
Salt stress represents a significant abiotic stressor for plants and poses a severe threat to agricultural productivity. Glutaredoxins (GRXs) are small disulfide reductases that can scavenge cellular reactive oxygen species and are crucial for plant growth and development, particularly under stressf...
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Veröffentlicht in: | Plants (Basel) 2023-06, Vol.12 (12), p.2320 |
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Zusammenfassung: | Salt stress represents a significant abiotic stressor for plants and poses a severe threat to agricultural productivity. Glutaredoxins (GRXs) are small disulfide reductases that can scavenge cellular reactive oxygen species and are crucial for plant growth and development, particularly under stressful circumstances. Although CGFS-type GRXs were found to be involved in various abiotic stresses, the intrinsic mechanism mediated by LeGRXS14, a tomato (
Mill.) CGFS-type GRX, is not yet fully understood. We discovered that LeGRXS14 is relatively conserved at the N-terminus and exhibits an increase in expression level under salt and osmotic stress conditions in tomatoes. The expression levels of
in response to osmotic stress peaked relatively rapidly at 30 min, while the response to salt stress only peaked at 6 h. We constructed
overexpression
(OE) lines and confirmed that LeGRXS14 is located on the plasma membrane, nucleus, and chloroplasts. In comparison to the wild-type Col-0 (WT), the OE lines displayed greater sensitivity to salt stress, resulting in a profound inhibition of root growth under the same conditions. Analysis of the mRNA levels of the WT and OE lines revealed that salt stress-related factors, such as
,
, and
were downregulated. Based on our research, it can be concluded that
plays a significant role in plant tolerance to salt. However, our findings also suggest that
may act as a negative regulator in this process by exacerbating Na
toxicity and the resulting oxidative stress. |
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ISSN: | 2223-7747 2223-7747 |
DOI: | 10.3390/plants12122320 |