首页> 外文期刊>Environmental Science and Pollution Research >Substrate sterilization with thiophanate-methyl and its biodegradation to carbendazim in oyster mushroom (Pleurotus ostreatus var. florida)
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Substrate sterilization with thiophanate-methyl and its biodegradation to carbendazim in oyster mushroom (Pleurotus ostreatus var. florida)

机译:用甲基甲基杀菌杀菌剂及其在牡蛎蘑菇中的碳纳西姆生物降解(Pleurotus Ostreatus var。佛罗里达州)

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Residue analysis to detect thiophanate-methyl and its primary metabolite (carbendazim) during oyster mushroom (Pleurotus ostreatus var. florida) cultivation was done for two consecutive years 2017 and 2018. Wheat straw substrate was chemically treated with different treatments of thiophate-methyl, viz, thiophanate-methyl 30 ppm + formalin 500 ppm (T1), thiophanate-methyl 40 ppm + formalin 500 ppm (T2), thiophanate-methyl 50 ppm + formalin 500 ppm (T3), thiophanate-methyl 60 ppm + formalin 500 ppm (T4), and formalin 500 ppm (T5 as control and recommended concentration), and utilized for cultivation of oyster mushroom. Treatments T3 and T4 exhibited significant difference in pH levels during both the trials. Minimum spawn run, pinhead formation, and fruit body formation time were recorded in treatments T3 and T4. Significantly higher biological efficiency (%) was recorded in treatments T3 and T4 as compared with all other treatments. No incidence of competitor molds was recorded in T3 and T4. Pesticide residue analysis for detection of thiophanate-methyl and its metabolite (carbendazim) was done in the fruit body produced in T3 and T4 treatments using liquid chromatography with tandem mass spectrometry method. No residue of thiophanate-methyl and carbendazim was detected at 50 ppm concentration of thiophanate-methyl during both the trials. However, in trial II, residue of carbendazim (5.39 μg/kg) was detected at 60 ppm. Based on the findings of the trials I and II, T3 (thiophanate-methyl 50 ppm + formalin 500 ppm) may be utilized for substrate sterilization for oyster mushroom cultivation and Pleurotus ostreatus var. florida could be recognized as microorganism which could play a role in degradation of thiophanate-methyl.
机译:残留分析在牡蛎蘑菇(Pleurotus Ostreatus var中的甲苯酚 - 甲基及其初级代谢物(Carbendazim)进行培养。在2017年和2018年连续两年进行培养。用不同的硫代素 - 甲基,Viz化学处理麦秸基质,硫氰酸甲基30 ppm +福尔马林500ppm(t1),硫氰酸甲基40 ppm +福尔马林500ppm(t2),硫氰酸甲酯50 ppm +福尔马林500ppm(t3),甲苯磺酸 - 甲基60 ppm +福尔马林500 ppm( T4)和福尔马林500ppm(T5作为控制和推荐浓度),并用于培养牡蛎蘑菇。治疗T3和T4在试验中表现出pH水平的显着差异。在治疗T3和T4的情况下记录最小产卵运行,针头形成和果体形成时间。与所有其他治疗相比,在治疗T3和T4中记录明显较高的生物效率(%)。 T3和T4中没有竞争力模具的发病率。使用液相色谱法用串联质谱法在T3和T4处理中产生的水果体中进行了检测的农药残留分析及其代谢物(Carbendazim)。在试验期间,在50ppm浓度的硫代苯甲苯甲基甲基中没有检测到硫代甲酸甲酯残留物。然而,在试验II中,在60ppm下检测碳氮菊酯(5.39μg/ kg)的残留物。基于试验I和II,T3(硫氰酸甲酯50ppm +福尔马林500ppm)可用于牡蛎蘑菇培养和肺炎癌症患者的底物灭菌。佛罗里达州可以被认为是微生物,这可能在甲基甲基降解中发挥作用。

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