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Rice Science ›› 2026, Vol. 33 ›› Issue (2): 159-162.DOI: 10.1016/j.rsci.2025.10.012

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  • 收稿日期:2025-06-13 接受日期:2025-10-29 出版日期:2026-03-28 发布日期:2026-04-01

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. [J]. Rice Science, 2026, 33(2): 159-162.

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链接本文: http://www.ricesci.org/CN/10.1016/j.rsci.2025.10.012

               http://www.ricesci.org/CN/Y2026/V33/I2/159

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Fig. 1. Ustiloxins induce liver injury in mice under different ustiloxins concentrations. A, Relative expression levels of Gstm1, Gstm3, Htatip2, and Mcm7 in mouse liver after three-month oral administration of ustiloxins. B and C, Ustiloxin effect on relative expression levels of CYP450-related genes in mouse hepatocytes (BNLCL2 cell, B) and livers (C). D and E, Protein expression of CYP2E1 and CYP1B1 in mouse hepatocytes (BNLCL2 cell, D) and livers (E). F, Nrf2, HO-1, and Keap1 mRNA expression in mouse hepatocytes (BNLCL2 cell, left) and livers (right). G and H, Expression of several proteins associated with oxidative stress in mouse hepatocytes (BNLCL2 cell, G) and livers (H). I, IL-1β and IL-18 mRNA expression in mouse hepatocytes (left) and livers (right). J and K, Protein expression of Pro-IL-1β, cleaved-IL-1β, and IL-18 in mouse hepatocytes (BNLCL2 cell, J) and livers (K). In A, B, C, F, and I, GAPDH is the internal control. In D, E, G, H, J, and K, GAPDH is the internal control. In D, E, G, H, J, and K, we uniformly apply intra-group normalization to reflect only relative changes for each protein with the expression value under no ustiloxin treatments as the control ‘1’. Data are mean ± SD (n = 3). * and **, P < 0.05 and P < 0.01 by the Tukey’s honestly significant difference test.

Fig. 1. Ustiloxins induce liver injury in mice under different ustiloxins concentrations. A, Relative expression levels of Gstm1, Gstm3, Htatip2, and Mcm7 in mouse liver after three-month oral administration of ustiloxins. B and C, Ustiloxin effect on relative expression levels of CYP450-related genes in mouse hepatocytes (BNLCL2 cell, B) and livers (C). D and E, Protein expression of CYP2E1 and CYP1B1 in mouse hepatocytes (BNLCL2 cell, D) and livers (E). F, Nrf2, HO-1, and Keap1 mRNA expression in mouse hepatocytes (BNLCL2 cell, left) and livers (right). G and H, Expression of several proteins associated with oxidative stress in mouse hepatocytes (BNLCL2 cell, G) and livers (H). I, IL-1β and IL-18 mRNA expression in mouse hepatocytes (left) and livers (right). J and K, Protein expression of Pro-IL-1β, cleaved-IL-1β, and IL-18 in mouse hepatocytes (BNLCL2 cell, J) and livers (K). In A, B, C, F, and I, GAPDH is the internal control. In D, E, G, H, J, and K, GAPDH is the internal control. In D, E, G, H, J, and K, we uniformly apply intra-group normalization to reflect only relative changes for each protein with the expression value under no ustiloxin treatments as the control ‘1’. Data are mean ± SD (n = 3). * and **, P < 0.05 and P < 0.01 by the Tukey’s honestly significant difference test.

参考文献 14

[1] Chen B, Lu Y R, Chen Y N, et al. 2015. The role of Nrf2 in oxidative stress-induced endothelial injuries. J Endocrinol, 225(3): R83-R99.
[2] Cheng S Y, Liu H, Sun Q, et al. 2019. Occurrence of the fungus mycotoxin, ustiloxin A, in surface waters of paddy fields in Enshi, Hubei, China, and toxicity in Tetrahymena thermophila. Environ Pollut, 251: 901-909.
[3] Farzaei M H, Zobeiri M, Parvizi F, et al. 2018. Curcumin in liver diseases: A systematic review of the cellular mechanisms of oxidative stress and clinical perspective. Nutrients, 10(7): 855.
[4] Hu X F, Wang J, Li R Y, et al. 2022. Establishment of an artificial inoculation method of Ustilaginoidea virens without damaging the rice panicle sheaths. Plant Dis, 106(1): 289-296.
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[6] Huded S, Devanna P, Chittaragi A, et al. 2022. Spatial distribution patterns for identifying risk areas associated with false smut disease of rice in Southern India. Agronomy, 12: 2947.
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[8] Leung T M, Nieto N. 2013. CYP2E1 and oxidant stress in alcoholic and non-alcoholic fatty liver disease. J Hepatol, 58(2): 395-398.
[9] Lu Y K, Cederbaum A I. 2008. CYP2E1 and oxidative liver injury by alcohol. Free Radic Biol Med, 44(5): 723-738.
[10] Pandey N, Vaishnav R, Rajavat AS, et al. 2024. Exploring the potential of Bacillus for crop productivity and sustainable solution for combating rice false smut disease. Front Microbiol, 15: 1405090.
[11] Qian H, Chao X J, Williams J, et al. 2021. Autophagy in liver diseases: A review. Mol Aspects Med, 82: 100973.
[12] Sun Q, Qian Z, Liu H, et al. 2022. Occurrence and translocation of ustiloxins in rice false smut-occurred paddy fields, Hubei, China. Environ Pollut, 307: 119460.
[13] Sun W X, Fan J, Fang A F, et al. 2020. Ustilaginoidea virens: Insights into an emerging rice pathogen. Annu Rev Phytopathol, 58: 363-385.
[14] Zheng W Y, Song Z Y, Li S, et al. 2021. Protective effects of sesamol against liver oxidative stress and inflammation in high-fat diet-induced hepatic steatosis. Nutrients, 13(12): 4484.

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