转录组学和生理分析表明,硫减轻了水稻(Oryza sativa L.)的汞毒性。

IF 6.9 Q1 Environmental Science
Yingmei Huang , Jicai Yi , Xiaomin Li , Fangbai Li
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引用次数: 4

摘要

汞(Hg)是最危险的污染物之一,由于通过大米摄入会对人类健康构成风险,因此引发了全球关注。硫(S)是植物生长的关键成分,硫可以减少水稻籽粒中汞的积累。然而,在汞胁迫的水稻植株中,S的详细作用和S介导的反应机制尚不清楚。目前,为了研究添加S对水稻生长、汞积累、生理指标和基因表达谱的影响,用Hg(20µmol/L HgCl2)和Hg加元素硫(100 mg/L)水培水稻幼苗。施硫显著降低了汞胁迫水稻根系中汞的积累,减轻了汞对水稻生长的抑制作用。添加S显著降低了Hg诱导的活性氧生成、膜脂质过氧化水平和抗氧化酶活性,同时增加了叶片中谷胱甘肽的含量。根的转录组学分析在对照(CK)与Hg、CK与Hg+S和Hg与Hg+S数据集中分别鉴定了3411、2730和581个差异表达基因。S介导的生物代谢途径分为六组:生物合成和代谢、表达调控、转运、刺激反应、氧化还原和细胞壁生物发生。与CK处理相比,大多数生物过程相关基因在汞胁迫下上调,但在Hg+S处理中下调。研究结果提供了转录组学和生理学证据,证明S可能对植物抗汞胁迫至关重要,并将有助于制定减少或植物修复汞污染的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Transcriptomics and physiological analyses reveal that sulfur alleviates mercury toxicity in rice (Oryza sativa L.)

Transcriptomics and physiological analyses reveal that sulfur alleviates mercury toxicity in rice (Oryza sativa L.)

Mercury (Hg) is one of the most dangerous contaminants and has sparked global concern since it poses a health risk to humans when consumed through rice. Sulfur (S) is a crucial component for plant growth, and S may reduce Hg accumulation in rice grains. However, the detailed effects of S and the mechanisms underlying S-mediated responses in Hg-stressed rice plants remain unclear. Currently, to investigate the effects of S addition on rice growth, Hg accumulation, physiological indexes, and gene expression profiles, rice seedlings were hydroponically treated with Hg (20 µmol/L HgCl2) and Hg plus elemental sulfur (100 mg/L). S application significantly reduced Hg accumulation in Hg-stressed rice roots and alleviated the inhibitory effects of Hg on rice growth. S addition significantly reduced Hg-induced reactive oxygen species generation, membrane lipid peroxidation levels, and activities of antioxidant enzymes while increasing glutathione content in leaves. Transcriptomic analysis of roots identified 3,411, 2,730, and 581 differentially expressed genes in the control (CK) vs. Hg, CK vs. Hg + S, and Hg vs. Hg + S datasets, respectively. The pathway of S-mediated biological metabolism fell into six groups: biosynthesis and metabolism, expression regulation, transport, stimulus response, oxidation reduction, and cell wall biogenesis. The majority of biological process-related genes were upregulated under Hg stress compared with CK treatment, but downregulated in the Hg + S treatment. The results provide transcriptomic and physiological evidence that S may be critical for plant Hg stress resistance and will help to develop strategies for reduction or phytoremediation of Hg contamination.

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来源期刊
Journal of environmental sciences
Journal of environmental sciences Environmental Science (General)
CiteScore
12.80
自引率
0.00%
发文量
0
审稿时长
17 days
期刊介绍: Journal of Environmental Sciences is an international peer-reviewed journal established in 1989. It is sponsored by the Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, and it is jointly published by Elsevier and Science Press. It aims to foster interdisciplinary communication and promote understanding of significant environmental issues. The journal seeks to publish significant and novel research on the fate and behaviour of emerging contaminants, human impact on the environment, human exposure to environmental contaminants and their health effects, and environmental remediation and management. Original research articles, critical reviews, highlights, and perspectives of high quality are published both in print and online.
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