Department of Biology, CESAM (Centre for Environmental and Marine Studies), Campus de Santiago, 3810-193, Aveiro, Portugal.
Sci Rep. 2018 Apr 3;8(1):5547. doi: 10.1038/s41598-018-23883-5.
The development of environmentally friendly plant protection products (PPPs), including pesticides, is a challenge nowadays. A commercial herbicide combining terbuthylazine and nicosulfuron as active substances (a.s.) was selected as a model PPP. The suitability of manipulating the ratio between a.s. towards alternative formulations with reduced impacts in a non-target indicator (Lemna minor) was assessed. The efficacy of such eco-friendlier a.s. ratios was then assessed using a target weed, Portulaca oleracea. Single and mixture toxicity testing with L. minor revealed an antagonistic joint action of the a.s., suggesting an environmentally protective effect of the combination compared to single dosing of a.s. The efficacy testing against the target weed of single and combined treatments of the a.s. showed that (i) the a.s. behave antagonistically throughout the whole P. oleracea response surface; (ii) there were no environmentally safe a.s. combinations ensuring target-efficacy; (iii) terbuthylazine alone was effective in controlling P. oleracea with no environmental hazardous potential, dosed at concentrations 10-fold lower than those involved in commercially recommended application doses. Overall, this case-study suggests that modelling tools widely used in the field of environmental risk assessment of PPPs may also have application in PPP design stages for a more efficient meeting of efficacy and environmental friendliness requirements.
如今,开发环保型植保产品(PPPs),包括农药,是一项挑战。本文选择了一种含有特丁津和烟嘧磺隆作为活性成分(a.s.)的商业除草剂作为模型 PPP 进行研究。评估了操纵 a.s. 与替代配方之间比例的适宜性,以减少对非靶标指示生物(浮萍)的影响。然后使用靶标杂草马齿苋评估了这种更环保的 a.s. 比例的功效。浮萍的单一和混合物毒性测试表明 a.s. 具有拮抗联合作用,表明与单一剂量 a.s. 相比,该组合具有环境保护作用。对靶标杂草的单一和组合处理的 a.s. 的功效测试表明:(i)a.s. 在整个马齿苋反应表面上表现出拮抗作用;(ii)没有确保靶标功效的环境安全的 a.s. 组合;(iii)特丁津单独使用时,在环境无危险的浓度下(比商业推荐施药剂量低 10 倍),对马齿苋有效。总体而言,本案例研究表明,广泛用于 PPPs 环境风险评估领域的建模工具也可能应用于 PPP 设计阶段,以更有效地满足功效和环境友好性要求。