木质素
水稻
苯丙素
镉
谷胱甘肽
戒毒(替代医学)
转录组
抗氧化剂
生物化学
氧化应激
化学
食品科学
生物
植物
酶
基因
生物合成
基因表达
医学
替代医学
有机化学
病理
作者
Qin Dong,Yingjie Wu,Juncheng Chen,Xi Chen,Peng Lü,Zulfiqar Ali Sahito,Yi Tang,Yulan Chen,Tao Qi,Qiang Xu,Rong Huang,Youlin Luo,Xiaoyan Tang,Qiquan Li,Changquan Wang
标识
DOI:10.1016/j.jhazmat.2023.131931
摘要
Cadmium (Cd) is readily absorbed by rice and enters the food chain, posing a health risk to humans. A better understanding of the mechanisms of Cd-induced responses in rice will help in developing solutions to reduce Cd uptake in rice. Therefore, this research attempted to reveal the detoxification mechanisms of rice in response to Cd through physiological, transcriptomic and molecular approaches. The results showed that Cd stress restricted rice growth, led to Cd accumulation and H2O2 production, and resulted cell death. Transcriptomic sequencing revealed glutathione and phenylpropanoid were the major metabolic pathways under Cd stress. Physiological studies showed that antioxidant enzyme activities, glutathione and lignin contents were significantly increased under Cd stress. In response to Cd stress, q-PCR results showed that genes related to lignin and glutathione biosynthesis were upregulated, whereas metal transporter genes were downregulated. Further pot experiment with rice cultivars with increased and decreased lignin content confirmed the causal relationship between increased lignin and reduced Cd in rice. This study provides a comprehensive understanding of lignin-mediated detoxification mechanism in rice under Cd stress and explains the function of lignin in production of low-Cd rice to ensure human health and food safety.
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