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Iron Oxide and Titanium Dioxide Nanoparticle Effects on Plant Performance and Root Associated Microbes

机译:氧化铁和二氧化钛纳米粒子对植物性能和根系相关微生物的影响

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摘要

In this study, we investigated the effect of positively and negatively charged Fe3O4 and TiO2 nanoparticles (NPs) on the growth of soybean plants (Glycine max.) and their root associated soil microbes. Soybean plants were grown in a greenhouse for six weeks after application of different amounts of NPs, and plant growth and nutrient content were examined. Roots were analyzed for colonization by arbuscular mycorrhizal (AM) fungi and nodule-forming nitrogen fixing bacteria using DNA-based techniques. We found that plant growth was significantly lower with the application of TiO2 as compared to Fe3O4 NPs. The leaf carbon was also marginally significant lower in plants treated with TiO2 NPs; however, leaf phosphorus was reduced in plants treated with Fe3O4. We found no effects of NP type, concentration, or charge on the community structure of either rhizobia or AM fungi colonizing plant roots. However, the charge of the Fe3O4 NPs affected both colonization of the root system by rhizobia as well as leaf phosphorus content. Our results indicate that the type of NP can affect plant growth and nutrient content in an agriculturally important crop species, and that the charge of these particles influences the colonization of the root system by nitrogen-fixing bacteria.
机译:在这项研究中,我们研究了带正电和带负电的Fe3O4和TiO2纳米颗粒(NPs)对大豆植物(Glycine max。)及其根系相关土壤微生物生长的影响。施用不同数量的NP后,大豆植物在温室中生长了六周,并检查了植物的生长和营养成分。使用基于DNA的技术,通过丛枝菌根(AM)真菌和形成根瘤的固氮细菌分析了根的定殖。我们发现,与Fe3O4 NP相比,使用TiO2可以显着降低植物的生长。 TiO2 NPs处理的植物的叶片碳含量也略低。然而,用Fe3O4处理的植物中的叶磷减少了。我们发现NP类型,浓度或电荷对根瘤菌或AM真菌定植植物根的群落结构没有影响。然而,Fe3O4 NPs的电荷影响根瘤菌根系定植以及叶磷含量。我们的结果表明,NP的类型可以影响植物的生长和重要农业作物物种中的营养成分,并且这些颗粒的电荷会影响固氮细菌对根系的定殖。

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