首页> 外文期刊>Journal of Agricultural and Food Chemistry >Manganese Nanoparticles: Impact on Non-nodulated Plant as a Potent Enhancer in Nitrogen Metabolism and Toxicity Study both in Vivo and in Vitro
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Manganese Nanoparticles: Impact on Non-nodulated Plant as a Potent Enhancer in Nitrogen Metabolism and Toxicity Study both in Vivo and in Vitro

机译:锰纳米粒子:对非结节植物的影响,作为体内和体外氮代谢和毒性研究的有效增强剂

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Mung bean plants were grown under controlled conditions and supplemented with macro- and micronutrients. The objective of this study was to determine the response of manganese nanoparticles (MnNP) in nitrate uptake, assimilation, and metabolism compared with the commercially used manganese salt, manganese sulfate (MS). MnNP was modulated to affect the assimilatory process by enhancing the net flux of nitrogen assimilation through NR-NiR and GS-GOGAT pathways. This study was associated with toxicological investigation on in vitro and in vivo systems to promote MnNP as nanofertilizer and can be used as an alternative to MS. MnNP did not impart any toxicity to the mice brain mitochondria except in the partial inhibition of complex II—III activity in ETC. Therefore, mitochondrial dysfunction and neurotoxicity, which were noted by excess usage of elemental manganese, were prevented. This is the first attempt to highlight the nitrogen uptake, assimilation, and metabolism in a plant system using a nanoparticle to promote a biosafe nanomicronutrient-based crop management.
机译:绿豆植物在受控条件下生长,并补充了大量和微量营养素。这项研究的目的是确定锰纳米颗粒(MnNP)与市售锰盐,硫酸锰(MS)相比对硝酸盐吸收,吸收和代谢的响应。通过增强通过NR-NiR和GS-GOGAT途径吸收氮的净通量,调节MnNP以影响同化过程。这项研究与体外和体内系统的毒理学研究有关,以促进MnNP作为纳米肥料的使用,并可作为MS的替代品。 MnNP不会对小鼠脑线粒体产生任何毒性,只是在ETC中部分抑制复合物II-III的活性。因此,可以防止线粒体功能障碍和神经毒性,这些元素通过过量使用元素锰而引起。这是首次尝试使用纳米粒子促进基于生物安全的纳米微营养素的作物管理中植物系统中氮的吸收,吸收和代谢。

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