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Mechanism of nutrition activity of a microgranule fertilizer fortified with proteins

机译:用蛋白质强化微霉菌肥料营养活性机制

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摘要

A microgranule fertilizer was designed for localized fertilization of soil with controlled release of nutrients. The microgranule matrix was fortified with proteins, which were obtained from food industry byproducts or waste, i.e., whey protein from milk serum, soy protein from soy isolate and egg white protein from chicken egg white powder. The mechanism of the protein decomposition and migration of micro and macromolecule compounds through two different model soil systems was investigated. The potential of the protein fortified fertilizer for localized fertilization of the potted maize seeds was evaluated. The study revealed that proteins slowly diffused through soil with simultaneous degradation, which was accompanied with release of ammonia ions. The highest concentration of proteins and degradation products was found in a close vicinity of the microgranule. The microgranules were used as a local fertilizer for maize seeds in the pot experiments. The experiments confirmed statistically significant improvement in root density of maize plant compared to control group. Byproducts or waste of food industry, such as the milk serum and soy can be used as a source of proteins that degrade in soil without a pretreatment. The degradation is accompanied with formation of ammonium ions, which can be utilized by plants as a nitrogen source. The fertilizer microgranule should be placed in a close vicinity to the plant seed, since the maximum of the protein concentration and ammonia ions is reached at a very close distance from the microgranule.
机译:设计了一种微血管肥料,用于源于控释营养物的土壤局部施肥。将微林基质与蛋白质强化,该蛋白质是从食品工业副产物或废物中获得的,即来自牛奶血清的乳清蛋白,来自鸡蛋白色粉末的大豆孤立和蛋白蛋白质的大豆蛋白。研究了蛋白质分解的机制和微量分子化合物通过两种不同模型土壤系统的迁移。评估了蛋白质强化肥料的潜力,用于盆栽玉米种子的局部施肥。该研究表明,蛋白质通过同时降解的土壤缓慢地扩散,伴随着氨离子的释放。在微粒附近发现蛋白质最高浓度和降解产物。微粒用作罐实验中的玉米种子的局部肥料。与对照组相比,该实验证实了玉米植物根密度的统计学显着改善。食品工业的副产品或浪费,例如牛奶血清和大豆可以用作在没有预处理的情况下降解土壤中的蛋白质来源。降解伴随着铵离子的形成,其可以通过植物作为氮源使用。肥料微草应置于植物种子附近,因为蛋白质浓度的最大值和氨离子在距微林非常近距离达到。

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