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The influence of a microbial inoculum on the enzymatic activity of peat and morphological features of the French marigold

机译:微生物接种物对法国万寿菊泥炭酶活性和形态特征的影响

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The objective of the study was to determine the dynamics of the enzymatic activity in a substrate containing a microbiological inoculum (Effective Microorganisms – EM) intended to improve French marigold growth and flowering. The material used in the study was peat substrate of 5.5–6.0 pH into which plants were planted and then inoculated with different doses of the EM biofertilizer (1 : 10, 1 : 50, 1 : 100). Samples of the substrate on which experimental plants were cultivated were collected during the following three phases: the phase of seedling planting, the phase of vegetative growth and the phase of flowering. The scope of investigations comprised determination of the activity of dehydrogenases, urease and acid phosphatase activity by the spectrophotometric method. In addition, the following plant morphological analyses were performed: plant height, shoot number and length, number of buds and inflorescences, and leaf greenness index (SPAD). It was found that the phase of plant development was proved to be the main determinant of the activity of the enzymes under study. The EM biofertilizer had positive effect on the acid phosphatase activity. However, the preparation did not have stimulating effect on the activity of urease or dehydrogenases. The EM biofertilizer concentrated at 1 : 100 and applied into the soil and foliage resulted in a larger number of darker leaves and greater number of inflorescences on the plants.
机译:这项研究的目的是确定含有微生物接种物(有效微生物– EM)的底物中酶活性的动态变化,该接种物旨在改善法国万寿菊的生长和开花。研究中使用的材料是pH为5.5-6.0的泥炭基质,在其中种植了植物,然后接种了不同剂量的EM生物肥料(1:10、1:50、1:100)。在以下三个阶段中收集了种植实验植物的基质样品:幼苗种植阶段,营养生长阶段和开花阶段。研究范围包括通过分光光度法测定脱氢酶活性,脲酶和酸性磷酸酶活性。另外,进行了以下植物形态分析:植物高度,枝条数和长度,芽和花序数以及叶绿度指数(SPAD)。发现植物发育的阶段被证明是所研究的酶的活性的主要决定因素。 EM生物肥料对酸性磷酸酶活性有积极影响。但是,该制剂对脲酶或脱氢酶的活性没有刺激作用。 EM生物肥料以1:100的浓度浓缩并施用到土壤和树叶中,导致植物上的深色叶子和花序数量增加。

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