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Herbicide-related signaling in plants reveals novel insights for herbicide use strategies, environmental risk assessment and global change assessment challenges

机译:植物中与除草剂相关的信号揭示了除草剂使用策略,环境风险评估和全球变化评估挑战的新颖见解

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摘要

Herbicide impact is usually assessed as the result of a unilinear mode of action on a specific biochemical target with a typical dose-response dynamics. Recent developments in plant molecular signaling and crosstalk between nutritional, hormonal and environmental stress cues are however revealing a more complex picture of inclusive toxicity. Herbicides induce large-scale metabolic and gene-expression effects that go far beyond the expected consequences of unilinear herbicide-target-damage mechanisms. Moreover, groundbreaking studies have revealed that herbicide action and responses strongly interact with hormone signaling pathways, with numerous regulatory protein-kinases and -phosphatases, with metabolic and circadian clock regulators and with oxidative stress signaling pathways. These interactions are likely to result in mechanisms of adjustment that can determine the level of sensitivity or tolerance to a given herbicide or to a mixture of herbicides depending on the environmental and developmental status of the plant Such regulations can be described as rheostatic and their importance is discussed in relation with herbicide use strategies, environmental risk assessment and global change assessment challenges.
机译:通常将除草剂的影响评估为对具有特定剂量反应动力学的特定生化目标的单线性作用模式的结果。然而,植物分子信号传导以及营养,激素和环境胁迫信号之间的串扰的最新发展揭示了包容性毒性的更为复杂的图景。除草剂引起大规模的代谢和基因表达作用,远远超出了单线性除草剂-靶标-破坏机制的预期结果。此外,开创性的研究表明,除草剂的作用和反应与激素信号传导途径,许多调节蛋白激酶和磷酸酶,代谢和生物钟调节剂以及氧化应激信号传导途径强烈相互作用。这些相互作用可能导致调节机制,该调节机制可以确定对给定除草剂或除草剂混合物的敏感性或耐受性水平,具体取决于植物的环境和发育状况。有关除草剂使用策略,环境风险评估和全球变化评估挑战的讨论。

著录项

  • 来源
    《The Science of the Total Environment》 |2016年第1期|1618-1628|共11页
  • 作者单位

    UMR 6553 Ecosystems-Biodiversity-Evolution, Universite de Rennes 1/CNRS, Campus de Beaulieu, Batiment 14A, F-35042 Rennes Cedex, France;

    UMR 6553 Ecosystems-Biodiversity-Evolution, Universite de Rennes 1/CNRS, Campus de Beaulieu, Batiment 14A, F-35042 Rennes Cedex, France;

    UMR 6553 Ecosystems-Biodiversity-Evolution, Universite de Rennes 1/CNRS, Campus de Beaulieu, Batiment 14A, F-35042 Rennes Cedex, France;

    UMR 6553 Ecosystems-Biodiversity-Evolution, Universite de Rennes 1/CNRS, Campus de Beaulieu, Batiment 14A, F-35042 Rennes Cedex, France;

    UMR 6553 Ecosystems-Biodiversity-Evolution, Universite de Rennes 1/CNRS, Campus de Beaulieu, Batiment 14A, F-35042 Rennes Cedex, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Abiotic stress; Global change; Herbicide pollution; Herbicide resistance; Organic pollutants; Xenobiotics;

    机译:非生物胁迫;全球变化;除草剂污染;抗除草剂;有机污染物;异生物素;

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