Third Faculty of Medicine, Charles University, Ruská 87, 100 00, Prague, Czech Republic.
Faculty of Science, University of Hradec Králové, Hradec Králové, Czech Republic.
Environ Sci Pollut Res Int. 2022 Sep;29(44):67430-67441. doi: 10.1007/s11356-022-22684-8. Epub 2022 Aug 27.
Azole fungicides have been essential pillars of global food security since the commercialization of triadimefon. However, the potential for fungicides to induce sublethal effects on larval development and emergence from overwintering is underresearched. We hypothesized that contact exposure to field-realistic concentrations of a broad spectrum of triazole fungicides alters the pupation and metamorphosis of crabronid wasps. Therefore, triazole fungicides shape the hymenopteran communities in agrocenoses. We applied field-realistic concentrations of three triazole fungicides, difenoconazole, penconazole, and tebuconazole, to the defecated prepupae of Pemphredon fabricii (Hymenoptera: Crabronidae). We monitored their survival, pupation, and metamorphosis into adults, including the timing of these events. All three tested triazole fungicides altered the time to the metamorphosis into adults of P. fabricii prepupae compared to the vehicle-treated controls. This effect was concentration-independent within the recommended concentration ranges for foliar applications. However, the three triazole fungicides were not associated with any significant declines in overall survival. Thus, the commonly used triazole fungicides affect the synchronization of the metamorphosis into adults with the availability of food and nesting resources of the study species. The study compounds did not affect the survival, which agrees with previous studies of other azole fungicides, which revealed effects on survival only when used in combination with other compounds. Further research should address the multiplicative effects of the triazole fungicides with other agrochemicals on the timing of the metamorphosis of bees and wasps.
唑类杀菌剂自三唑酮商业化以来一直是全球食品安全的重要支柱。然而,杀菌剂对幼虫发育和越冬后出现的亚致死效应的潜力尚未得到充分研究。我们假设接触到田间实际浓度的广谱三唑类杀菌剂会改变肿腿蜂的蛹化和变态。因此,三唑类杀菌剂塑造了农业生态系统中的膜翅目昆虫群落。我们将三种三唑类杀菌剂,即烯唑醇、戊唑醇和三唑醇,应用于 Pemphredon fabricii(膜翅目:胡蜂科)的排粪预蛹。我们监测了它们的存活、蛹化和变态为成虫,包括这些事件的时间。与对照相比,三种测试的三唑类杀菌剂都改变了 P. fabricii 预蛹变态为成虫的时间。这种影响在推荐的叶面施药浓度范围内与浓度无关。然而,这三种三唑类杀菌剂与总体存活率的任何显著下降无关。因此,常用的三唑类杀菌剂会影响研究物种的成虫变态与食物和筑巢资源可用性的同步性。研究化合物没有影响生存,这与其他唑类杀菌剂的先前研究一致,这些研究表明,只有在与其他化合物联合使用时,才会对生存产生影响。进一步的研究应该探讨三唑类杀菌剂与其他农用化学品对蜜蜂和胡蜂变态时间的相乘效应。