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Impact of Microbiological Inoculum on Numbers and Activity of Microorganisms in Peat Substrate and on Growth and Flowering of Scarlet Sage

机译:微生物接种物对泥炭基质中微生物数量和活性的影响以及对猩红鼠尾草生长和开花的影响

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The aim of our study was to determine the dynamics of development of select groups of microorganisms and the activity of dehydrogenases in a substrate containing a microbiological inoculum (BAF,) intended to improve scarlet sage growth and flowering. The material used in the investigations was peat substrate of 5.5-6.0 pH into which plants were planted and then inoculated with different doses of the BAF, bioprepara-tion (1:10, 1:50, 1:100). Samples of the substrate were collected during the following three phases: seedling planting, vegetative growth, and flowering. The following parameters were determined: developmental dynamics of total bacteria number, actinomycetes, molds (Koch plate method), and dehydrogenases activity (spectrophotometric method). Moreover, plant morphological parameters such as plant height, shoot number and length, number of buds and inflorescences, as well as content of chlorophyll a+b, a, and b, and leaf greenness index (SPAD) were also measured. The application of the BAF_1 inoculant into the peat substrate contributed to increased number of heterotrophic bacteria, actinomycetes, molds, and dehydrogenases activity. The number of the studied microorganisms were stimulated most significantly by the applied foliar applica-tionof the biopreparation at 1:10 concentration, while their metabolic activity also was stimulated by the foliar application of the experimental inoculum applied at a concentration of 1:50. The applied BAF inoculum failed to exert a significant effect on the number and greenness index of leaves or on leaf blade width and length. However, irrespective of the dose and method of application of the inoculum, it improved the degree of coloring of inflorescence buds and affected the length of inflorescences (in particular, the foliar and soil application of 1:50 concentration) and increased the chlorophyll content in plants (especially the soil application with the biopreparation at 1:50 concentration, as well as foliar application at 1:100 concentration).
机译:我们研究的目的是确定含有微生物接种物(BAF)的基质中特定微生物群发育的动力学和脱氢酶的活性,该基质旨在改善猩红鼠尾草的生长和开花。研究中使用的材料是5.5-6.0 pH的泥炭基质,在其中种植了植物,然后用不同剂量的BAF生物制备(1:10、1:50、1:100)进行接种。在以下三个阶段收集底物样品:幼苗种植,营养生长和开花。确定了以下参数:细菌总数,放线菌,霉菌(Koch平板法)和脱氢酶活性(分光光度法)的发育动力学。此外,还测量了植物形态参数,例如植物高度,枝条数和长度,芽和花序数,以及叶绿素a + b,a和b的含量以及叶绿度指数(SPAD)。 BAF_1接种剂在泥炭基质中的应用有助于增加异养细菌,放线菌,霉菌和脱氢酶活性的数量。通过以1:10的浓度对生物制剂进行叶面施用,可最大程度地刺激研究微生物的数量,而通过以1:50的浓度对实验接种物的叶面施用也可刺激其代谢活性。施用的BAF接种物不能对叶片的数量和绿色指数或叶片的宽度和长度产生显着影响。但是,无论接种量和使用方法如何,它都能改善花序的着色程度,并影响花序的长度(特别是叶面和土壤的浓度为1:50)并增加了叶绿素含量。植物(尤其是在以1:50的浓度进行生物制剂处理的土壤中,以及在以1:100的浓度进行叶面处理时)。

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