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Transcriptome Profiling and Physiological Studies Reveal a Major Role for Aromatic Amino Acids in Mercury Stress Tolerance in Rice Seedlings

机译:转录组分析和生理研究揭示了芳族氨基酸在水稻幼苗对汞胁迫的耐受性中的重要作用

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摘要

Mercury (Hg) is a serious environmental pollution threat to the planet. The accumulation of Hg in plants disrupts many cellular-level functions and inhibits growth and development, but the mechanism is not fully understood. To gain more insight into the cellular response to Hg, we performed a large-scale analysis of the rice transcriptome during Hg stress. Genes induced with short-term exposure represented functional categories of cell-wall formation, chemical detoxification, secondary metabolism, signal transduction and abiotic stress response. Moreover, Hg stress upregulated several genes involved in aromatic amino acids (Phe and Trp) and increased the level of free Phe and Trp content. Exogenous application of Phe and Trp to rice roots enhanced tolerance to Hg and effectively reduced Hg-induced production of reactive oxygen species. Hg induced calcium accumulation and activated mitogen-activated protein kinase. Further characterization of the Hg-responsive genes we identified may be helpful for better understanding the mechanisms of Hg in plants.
机译:汞是对地球的严重环境污染威胁。汞在植物中的积累破坏了许多细胞水平的功能并抑制了生长发育,但其机理尚不完全清楚。为了更深入地了解细胞对汞的反应,我们对汞胁迫期间的水稻转录组进行了大规模分析。短期暴露诱导的基因代表细胞壁形成,化学排毒,二次代谢,信号转导和非生物胁迫反应的功能类别。此外,汞胁迫上调了一些与芳香族氨基酸(Phe和Trp)有关的基因,并增加了游离Phe和Trp含量的水平。在水稻根部外源施用Phe和Trp可以增强对汞的耐受性,并有效减少汞诱导的活性氧的产生。汞诱导钙积累并激活丝裂原活化蛋白激酶。我们鉴定出的Hg响应基因的进一步表征可能有助于更好地了解植物中Hg的机制。

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