National Research Centre for Grapes, P.O. Manjri Farm, Pune, 412 307, Maharashtra, India.
Environ Monit Assess. 2014 Dec;186(12):8599-610. doi: 10.1007/s10661-014-4027-8. Epub 2014 Sep 2.
Food safety is a global concern due to the increased use of pesticides in agriculture. In grapes, carbendazim is one of the frequently detected fungicides. However, it is amenable to biodegradation. In this study, we aimed to assess the degradation of carbendazim by four Bacillus subtilis strains, which had earlier shown potential for biocontrol of grape diseases. In liquid medium, each of the four strains, namely, DR-39, CS-126, TL-171, and TS-204, could utilize carbendazim as the sole carbon source. The half-life was minimized from 8.4 days in the uninoculated spiked control to 4.0-6.2 days by the four strains. In Thompson Seedless sprayed with carbendazim at 1.0 g L(-1), the residue on grape berries in control was 0.44 mg kg(-1) after 25 days of application, whereas in grapes treated with the four B. subtilis strains, the residues had decreased to 0.02 mg kg(-1). The degradation kinetics showed low half-lives of 3.1 to 5.2 days in treated grapes as compared to 8.8 days in control. In inoculated soils, the half-lives were 5.9 to 7.6 days in autoclaved and 6.5 to 7.2 days in nonautoclaved soils as compared to 8.2 and 8.0 days in respective controls. The growth dynamics of these strains in all the three matrices was not affected by presence of carbendazim. Bacillus strains TS-204 and TL-171 showed higher degradation rate than the other two strains in all the three matrices and show promise for in situ biodegradation of carbendazim.
食品安全是一个全球性的问题,这是由于农业中农药的使用越来越多。在葡萄中,多菌灵是经常检测到的杀菌剂之一。然而,它是可生物降解的。在这项研究中,我们旨在评估四种枯草芽孢杆菌菌株对多菌灵的降解作用,这四种菌株之前显示出对葡萄病害生物防治的潜力。在液体培养基中,DR-39、CS-126、TL-171 和 TS-204 这四个菌株中的每一个都可以利用多菌灵作为唯一的碳源。在未接种的添加对照中,半衰期为 8.4 天,而四个菌株的半衰期最小为 4.0-6.2 天。在施用过 1.0 g/L 多菌灵的汤普森无核葡萄中,对照中葡萄浆果上的残留量为 0.44 mg/kg,在经过 25 天的施药后,而在经过四种枯草芽孢杆菌菌株处理的葡萄中,残留量已降至 0.02 mg/kg。降解动力学显示,与对照相比,处理过的葡萄中的半衰期为 3.1 至 5.2 天,而对照中的半衰期为 8.8 天。在接种土壤中,在高压灭菌和未高压灭菌的土壤中的半衰期分别为 5.9 至 7.6 天和 6.5 至 7.2 天,而相应对照中的半衰期分别为 8.2 天和 8.0 天。这些菌株在所有三种基质中的生长动态不受多菌灵的影响。在所有三种基质中,菌株 TS-204 和 TL-171 的降解率均高于其他两个菌株,有望实现多菌灵的原位生物降解。