Laboratory of Molecular and Cell Biology, All-Russia Research Institute for Agricultural Microbiology, Saint Petersburg 196608, Russia.
Research Resource Centre "Molecular and Cell Technologies", Saint Petersburg State University, Saint Petersburg 199034, Russia.
Int J Mol Sci. 2023 May 12;24(10):8646. doi: 10.3390/ijms24108646.
Triazole fungicides are widely used in agricultural production for plant protection, including pea ( L.). The use of fungicides can negatively affect the legume- symbiosis. In this study, the effects of triazole fungicides Vintage and Titul Duo on nodule formation and, in particular, on nodule morphology, were studied. Both fungicides at the highest concentration decreased the nodule number and dry weight of the roots 20 days after inoculation. Transmission electron microscopy revealed the following ultrastructural changes in nodules: modifications in the cell walls (their clearing and thinning), thickening of the infection thread walls with the formation of outgrowths, accumulation of poly-β-hydroxybutyrates in bacteroids, expansion of the peribacteroid space, and fusion of symbiosomes. Fungicides Vintage and Titul Duo negatively affect the composition of cell walls, leading to a decrease in the activity of synthesis of cellulose microfibrils and an increase in the number of matrix polysaccharides of cell walls. The results obtained coincide well with the data of transcriptomic analysis, which revealed an increase in the expression levels of genes that control cell wall modification and defense reactions. The data obtained indicate the need for further research on the effects of pesticides on the legume- symbiosis in order to optimize their use.
三唑类杀菌剂广泛用于农业生产中的植物保护,包括豌豆(L.)。杀菌剂的使用会对豆科植物-共生体产生负面影响。在这项研究中,研究了三唑类杀菌剂 Vintage 和 Titul Duo 对根瘤形成的影响,特别是对根瘤形态的影响。两种杀菌剂在接种后 20 天最高浓度时,均降低了根瘤的数量和干重。透射电子显微镜揭示了根瘤中的以下超微结构变化:细胞壁的修饰(其变清和变薄)、感染线壁的增厚伴随着突起的形成、类细菌中聚-β-羟基丁酸酯的积累、周质空间的扩张以及共生体的融合。 Vintage 和 Titul Duo 杀菌剂会对细胞壁的组成产生负面影响,导致纤维素微纤维合成活性降低,细胞壁基质多糖数量增加。获得的结果与转录组分析的数据非常吻合,该数据揭示了控制细胞壁修饰和防御反应的基因表达水平的增加。获得的数据表明,需要进一步研究农药对豆科植物-共生体的影响,以便优化其使用。