Rodriguez-Morelos Victor Hugo, Calonne-Salmon Maryline, Bremhorst Vincent, Garcés-Ruiz Mónica, Declerck Stéphane
Laboratory of Mycology, Earth and Life Institute, Université catholique de Louvain, Louvain-la-Neuve, Belgium.
Louvain Institute of Data Analysis and Modeling in Economics and Statistics, Statistical Methodology and Computing Service, Université catholique de Louvain, Louvain-la-Neuve, Belgium.
Front Plant Sci. 2021 Mar 10;12:642094. doi: 10.3389/fpls.2021.642094. eCollection 2021.
Fungicides are widely used in conventional agriculture to control fungal diseases, but may also affect non-target microorganisms such as arbuscular mycorrhizal (AM) fungi. These root symbionts develop extended mycelial networks within the soil via mechanisms such as anastomosis that indistinctly concerns intact and damaged hyphae, the latter being named hyphal healing mechanism (HHM). The HHM differs between and . However, the effects of fungicides on this mechanism in unknown. Here, the impact of azoxystrobin, pencycuron, flutolanil, and fenpropimorph at 0.02 and 2 mg L were tested on the HHM of sp. MUCL 52331 and MUCL 41833, and repair events visualized carefully under a dissecting bright-field light microscope. Azoxystrobin was the more detrimental for both AM fungi at 2 mg L, while fenpropimorph impacted only (stimulating at low and inhibiting at high concentration). Conversely, flutolanil and pencycuron did not impact any of the two AM fungi. The mechanisms involved remains to be elucidated, but perturbation in the still-to-be firmly demonstrated spitzenkörper or in sterols content as well as a process of hormesis are possible avenues that deserve to be explored in view of a rationale management of chemicals to control fungal pathogens without harming the beneficial AM fungi.
杀菌剂在传统农业中被广泛用于控制真菌病害,但也可能影响非靶标微生物,如丛枝菌根(AM)真菌。这些根系共生体通过诸如吻合等机制在土壤中形成扩展的菌丝网络,该机制对完整和受损的菌丝均有影响,后者被称为菌丝愈合机制(HHM)。HHM在[具体菌种1]和[具体菌种2]之间存在差异。然而,杀菌剂对该机制的影响尚不清楚。在此,测试了浓度为0.02和2 mg/L的嘧菌酯、戊菌隆、氟酰胺和粉唑醇对[具体菌种1]MUCL 52331和[具体菌种2]MUCL 41833的HHM的影响,并在解剖明场光学显微镜下仔细观察修复事件。嘧菌酯在2 mg/L时对两种AM真菌的危害更大,而粉唑醇仅对[具体菌种1]有影响(低浓度时刺激,高浓度时抑制)。相反,氟酰胺和戊菌隆对两种AM真菌均无影响。其中涉及的机制仍有待阐明,但尚未得到确凿证实的顶端小体或甾醇含量的扰动以及毒物兴奋效应过程可能是值得探索的途径,以便在不损害有益AM真菌的情况下合理管理用于控制真菌病原体的化学物质。