Different responses in metallothionein gene expression and antioxidative enzyme activity lead to more ROS accumulation in rice exposed to Tl(III) than to Tl(I)

This is the first study to investigate the reduction mechanism of Tl (III) to Tl(I) in the presence of plants, especially rice. Smaller plant density could effectively reduce the content of organic acids in the hydroponic system to keep the stability of Tl(III). As the plant density was reduced from...

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Veröffentlicht in:Chemosphere (Oxford) 2020-11, Vol.259, p.127258-127258, Article 127258
Hauptverfasser: Yao, Yan, Wang, Moyun, Zhang, Ping, Wang, Xiaolan, Huang, Xuexia, Liu, Wei, Wang, Zhenchun, Yang, Ruiqi
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Sprache:eng
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Zusammenfassung:This is the first study to investigate the reduction mechanism of Tl (III) to Tl(I) in the presence of plants, especially rice. Smaller plant density could effectively reduce the content of organic acids in the hydroponic system to keep the stability of Tl(III). As the plant density was reduced from 40 seedlings to 10 seedlings in 100 mL Tl(III) solution, the content of oxalate was declined to one-third of the original, and the ratio of Tl(III)/total Tl was increased from 39.6% to 81.0% in the first 2 h treatment. Then the differences in antioxidant capacity of rice exposed to the two Tl species were studied. The contents of malondialdehyde (MDA), hydrogen peroxide (H2O2) and superoxide anion (O2˙-) of rice roots exposed to Tl(III) were all higher than those to Tl(I). Meanwhile, the catalase (CAT) activity was significantly depressed and peroxidase (POD) was increased by Tl(III), whereas superoxide dismutase (SOD) showed a rise in both Tl(I) and Tl(III) with no significant difference between them. The expression of metallothionein gene OsMT1a to Tl(I) was upregulated to 255.5 times of Tl(III) though OsMT2c was downregulated to 0.39 times of Tl(III). Overall, the different responses in metallothionein gene expression and antioxidative enzyme activation might result in more ROS accumulation to rice roots by Tl(III) treatment than those by Tl(I). [Display omitted] •Decreasing plant density slowed the reduction of T1(III) to T1(I) with plants.•Tl(III) significantly increased ROS and MDA contents in rice roots.•Different antioxidant enzyme activities in rice were induced by the two Tl species.•Different expression patterns of MTs in the two Tl species affected ROS scavenging.
ISSN:0045-6535
1879-1298
DOI:10.1016/j.chemosphere.2020.127258