Department of Crop Science, Federal University of Rio Grande do Sul, Porto Alegre, RS 91540-000, Brazil.
Department of Plant Breeding and Genetics, Max Planck Institute for Plant Breeding Research, D-50829 Cologne, Germany.
Int J Mol Sci. 2021 Mar 24;22(7):3314. doi: 10.3390/ijms22073314.
Herbicide resistance is broadly recognized as the adaptive evolution of weed populations to the intense selection pressure imposed by the herbicide applications. Here, we tested whether transcriptional gene silencing (TGS) and RNA-directed DNA Methylation (RdDM) pathways modulate resistance to commonly applied herbicides. Using wild-type plants exposed to sublethal doses of glyphosate, imazethapyr, and 2,4-D, we found a partial loss of TGS and increased susceptibility to herbicides in six out of 11 tested TGS/RdDM mutants. Mutation in (), that plays an important role in DNA demethylation, leading to strongly increased susceptibility to all applied herbicides, and imazethapyr in particular. Transcriptomic analysis of the imazethapyr-treated wild type and plants revealed a relation of the herbicide upregulated genes to chemical stimulus, secondary metabolism, stress condition, flavonoid biosynthesis, and epigenetic processes. Hypersensitivity to imazethapyr of the flavonoid biosynthesis component () mutant plants strongly suggests that ROS1-dependent accumulation of flavonoids is an important mechanism for herbicide stress response in . In summary, our study shows that herbicide treatment affects transcriptional gene silencing pathways and that misregulation of these pathways makes Arabidopsis plants more sensitive to herbicide treatment.
杂草对除草剂的抗性被广泛认为是杂草种群对除草剂强烈选择压力的适应性进化。在这里,我们测试了转录基因沉默 (TGS) 和 RNA 指导的 DNA 甲基化 (RdDM) 途径是否调节对常用除草剂的抗性。使用暴露于草甘膦、咪草烟和 2,4-D 的亚致死剂量下的野生型植物,我们在 11 个测试的 TGS/RdDM 突变体中的 6 个中发现 TGS 部分丧失和对 6 种除草剂的敏感性增加。在 () 中发生突变,该基因在 DNA 去甲基化中起重要作用,导致对所有应用的除草剂,特别是咪草烟的敏感性显著增加。用咪草烟处理的野生型和 植物的转录组分析显示,除草剂上调基因与化学刺激、次生代谢、应激条件、类黄酮生物合成和表观遗传过程有关。类黄酮生物合成成分 () 突变体植物对咪草烟的超敏性强烈表明,ROS1 依赖性类黄酮的积累是拟南芥植物对除草剂胁迫反应的一个重要机制。总之,我们的研究表明,除草剂处理会影响转录基因沉默途径,而这些途径的失调会使拟南芥植物对除草剂处理更敏感。