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Development of MgO-sepoilite Nanocomposites against Phytopathogenic Fungi of Rice (Oryzae sativa): A Green Approach

机译:MgO-寿翅油纳米复合材料对水稻植物疗法真菌的影响(Oryzae Sativa):绿色方法

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Innovation in agriculture is a vital organ of research for sustainable food supply to the increasing global population. Organic compounds used as fungicidal agents against seed-borne pathogens are bracketed due to their toxic nature and residual effects, which are either already banned or may get banned in the near future. In this study, the surface and electric properties of nontoxic sepiolite have been blended with the antimicrobial properties of metabolizable MgO nanoforms (nMgO) as a greener alternative to prepare their nanocomposites. We compared a sepiolite-MgO (SE-MgO) nanocomposite with MgO nanoparticles in an aqua dispersed form (aqMgO-NPs) for their antifungal evaluation against various phytopathogenic fungi of rice. The SE-MgO nanocomposite was more potent in comparison to aqMgO-NPs with ED_(90) > 230 and 249 μg/mL, respectively, against the test fungi better than standard fungicides. Ultramicroscopic studies revealed hyphal distortion and spore collapse as the cause of antimycotic activity. The in vitro seed treatment revealed 100% hyphal reduction with SE-MgO at 250 μg/mL of MgO as an active ingredient (a.i.). MgO and sepiolite both have been regarded as safe materials by international agencies; therefore, using their nanocomposites can be an effective, sustainable, nontoxic, eco-friendly, and residue-free strategy for combating fungal menace against phytopathogens.
机译:农业创新是对越来越多的全球人口的可持续粮食供应的重要组织。由于它们的毒性性质和残留效应,用作针对种子传播病原体的杀真菌剂的有机化合物被包围,这些化合物已经被禁止或者可能会在不久的将来被禁止。在该研究中,无毒海泡石的表面和电性能已与代谢MgO纳米血管(NMGO)的抗微生物性能共混,作为制备纳米复合材料的更加绿色替代品。我们将Sepiolite-MgO(Se-MgO)纳米复合材料与MgO纳米颗粒进行比较,以Aqua分散的形式(aqmgo-nps)进行抗真菌对水稻各种植物致病真菌的抗真菌评价。与AQMGO-NPS相比,SE-MgO纳米复合材料分别与ED_(90)> 230和249μg/ mL的AQMGO-NPS相对于试验真菌比标准​​杀真菌剂更好。超微镜下研究揭示了作为抗催化活性的原因的酸性畸变和孢子塌陷。体外种子处理揭示了在250μg/ ml的MgO中用Se-MgO螯合晶晶晶晶片,作为活性成分(A.i.)。 MgO和Sepiolite都被国际机构视为安全材料;因此,使用它们的纳米复合材料可以是有效,可持续的,无毒,环保和残留的免疫策略,用于对抗植物病变的真菌威胁。

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