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Stability assessment of hydro dispersive nanometric permethrin and its biosafety study towards the beneficial bacterial isolate from paddy rhizome

机译:水电分散纳米氯菊酯的稳定性评估及其生物安全性研究稻瘟病菌有益细菌分离物

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Nanopesticides such as nanopermethrin can serve as an alternative to conventional pesticides causing eco-toxicity. The nanoformulation of this pyrethroid pesticide was carried out by solvent evaporation of pesticide-loaded microemulsion. The Z average for the nanopermethrin dispersion in paddy field water was found to be 169.2 +/- A 0.75 nm with a polydispersity index of 0.371 that exhibits uniform dispersion. Further, the nanopermethrin (NP) dispersion exhibited an effective stability in the paddy field water for a duration of 48 h with a Z average of 177.3 +/- A 1.2 nm and a zeta potential of -30.7 +/- A 0.9 mV. The LC50 of the nanopermethrin against Culex tritaeniorhynchus in the field condition was found to be 0.051 mu g/mL. In addition to the stability assessment, the biosafety of the nanopermethrin was commenced on the beneficial bacterial isolate Enterobacter ludwigii (VITSPR1) considered as plant growth-promoting rhizobacteria. The toxic effect of nanopesticide was compared to its bulk counterpart, i.e. bulk permethrin (BP) at a concentration of 100 A mu g/mL, and the nanopesticide was found to be potentially safe. The results of biomarker enzymatic assays (lipid peroxidase, glutathione reductase, lactate dehydrogenase) displayed insignificant (p < 0.05) toxicity of NP towards the bacterial cells compared to BP. The live-dead cell staining and SEM analysis illustrated negligible toxicity of NP towards the bacteria. The non-toxic behaviour of the NP towards the non-target species was studied which displayed the eco-safe property of NP.
机译:纳米钯等纳米钯可以作为常规农药的替代品,导致生态毒性。通过溶剂蒸发的农药 - 负载的微乳液蒸发来进行该拟除虫菊酯农药的纳米造型。发现稻田水中纳米水胺分散体的Z平均值为169.2 +/- 0.75nm,具有0.371的多分散指数,其具有均匀的分散体。此外,纳米液甲菊酯(NP)分散体在稻田水中表现出有效稳定性,持续48小时,Z平均为177.3 +/- 1.2nm,Zeta电位为-30.7 +/- a 0.9 mV。纳米吡啶的LC50针对野外条件下的Culex tritaeniorhynchus为0.051μg/ ml。除了稳定性评估之外,纳米哌啶的生物安全性在被视为植物生长的无毒性植物的有益细菌分离肠杆菌(VitPr1)上。将纳米电机的毒性效应与其体积的对应物相比,即浓度为100 a mu g / ml的体积氯菊酯(Bp),并且发现纳米物质可能是安全的。与BP相比,生物标志物酶测定(脂质过氧化物酶,谷胱甘肽还原酶,谷胱甘肽还原酶,乳酸脱氢酶,乳酸脱氢酶,NP对细菌细胞的毒性进行了微不足道(P <0.05)。实时死细胞染色和SEM分析说明了NP朝向细菌的可忽略毒性。研究了NP朝向非靶种物种的无毒行为,其显示了NP的生态安全性。

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