EFFECT OF MAGNETITE AND CHITOSAN-MAGNETITE ADDITION ON BACTERIAL LEVELS AND NH3-N (FREE-LIVING N2-FIXING BACTERIA CULTURE)

Ali Umar, Deden Saprudin, Fahrizal Hazra
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Abstract

Free-living N2-fixing bacteria are essential in the soil because they provide a source of nitrogen in the form of ammonium needed by plants to be used in building protein blocks. The fixation of free N2 needs to be increased by adding nanomaterials such as magnetite (Fe3O4), which has an active group and can be a source of nitrogenase enzyme cofactor. In this study, increased N2 fixation used N2-fixing bacteria in Burks medium. This increase was determined by measuring NH3 levels using the Phenate method formed after Burks medium was treated with Fe3O4 and chitosan-magnetite (CS-Fe3O4). The study found that the number of bacteria can be well decreased. This research showed that using Fe3O4 and CS-Fe3O4 increased NH3-N levels in cultures of free-living nitrogen-fixing bacteria by 15.40% and 75.54%. For future development, it can be in the form of optimization, the effect of adding the same material to plant secondary metabolites, and the mechanism of bacteria in using the material.
磁铁矿和壳聚糖-磁铁矿添加物对细菌数量和 nh3-n 的影响(自由生活的固定 n2 细菌培养物)
自由生活的固氮细菌在土壤中至关重要,因为它们提供植物所需的铵形式的氮源,用于构建蛋白质块。需要通过添加磁铁矿(Fe3O4)等纳米材料来增加游离 N2 的固定。在这项研究中,利用伯克斯培养基中的固氮细菌增加了 N2 固定。这种增加是通过使用苯甲酸盐法测量 Burks 培养基经 Fe3O4 和壳聚糖-磁铁矿(CS-Fe3O4)处理后形成的 NH3 水平来确定的。研究发现,细菌的数量可以很好地减少。这项研究表明,使用 Fe3O4 和 CS-Fe3O4 能使自由生活固氮菌培养物中的 NH3-N 含量分别增加 15.40% 和 75.54%。对于未来的发展,可以从优化形式、添加相同材料对植物次生代谢产物的影响以及细菌利用材料的机理等方面进行研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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