INFLUENCE OF BIOGENIC SUBSTANCES ADDING INTO MOLASSES SOLUTIONS ON THE EFFICIENCY OF BIOLOGICALLY ACTIVE SUBSTANCES SYNTHESIS

Author(s):  
С.О. СЕМЕНИХИН ◽  
О.В. ВОРОБЬЕВА ◽  
М.В. БАБАКИНА ◽  
В.О. ГОРОДЕЦКИЙ

Побочный продукт сахарного производства – свекловичная меласса используется в микробиологической промышленности в качестве компонента высокопродуктивного субстрата для культивирования микроорганизмов, синтезирующих биологически активные вещества. На наш взгляд, перспективна предварительная подготовка мелассы путем ее насыщения биогенными веществами, повышающими эффективность жизнедеятельности микроорганизмов. Для подтверждения этого исследовано влияние внесения биогенных веществ в растворы свекловичной мелассы при их обработке на жизнедеятельность микроорганизмов, способствующих повышению синтеза витамина В2 и жиров. Объектами исследования были раствор свекловичной мелассы с массовой долей сухих веществ 78% и 3 штамма микроорганизмов – Bacillus subtilis B-501, Cryptococcus curvatus Y-2236 и Rhodotorula glutinis Y-332. Анализ исходного содержания макро- и микроэлементов в растворе свекловичной мелассы позволил установить, что содержащихся в мелассе биогенных веществ достаточно для жизнедеятельности Bacillus subtilis B-501 с удельной выработкой витамина В2 в количестве 0,019 г/г сахаров при степени утилизации сахаров 42,55%. Для повышения эффективности жизнедеятельности Rhodotorula glutinis Y-332 требуется внесение сульфатов железа FeSO4 и марганца MnSO4, которые способствуют увеличению удельной выработки жиров с 0,019 до 0,030 г/г сахара в каждом случае. Для повышения эффективности жизнедеятельности Cryptococcus curvatus Y-2236 требуется внесение сульфатов железа FeSO4 и марганца MnSO4, а также источников фосфора KH2PO4 и азота (NH4)2SO4. Внесение указанных биогенных веществ способствует повышению удельной выработки жиров с 0,011 до 0,015–0,020 г/г сахаров. A byproduct of sugar production – beet molasses is used in the microbiological industry as a component of a highly productive substrate for the cultivation of microorganisms that synthesize biologically active substances. In our opinion, the preliminary preparation of molasses by its saturation with biogenic substances to increase the efficiency of the vital activity of microorganisms is promising. To confirm this, the effect of introducing biogenic substances into the solution of beet molasses during their processing on the vital activity of microorganisms that contribute to the increase in the synthesis of vitamin B2 and fats has been studied. The objects of the study were a solution of beet molasses with a mass fraction of dry substances of 78% and 3 strains of microorganisms – Bacillus subtilis B-501, Cryptococcus curvatus Y-2236 and Rhodotorula glutinis Y-332. Analysis of the initial content of macro-and microelements in the solution of beet molasses allowed us to establish that the nutrients contained in the molasses are sufficient for the vital activity of Bacillus subtilis B-501 with a specific production of vitamin B2 in the amount of 0,019 g/g of sugars with a degree of sugar utilization of 42,55%. To improve the vital efficiency of the Rhodotorula glutinis Y-332, the addition of ferrous FeSO4 and manganese MnSO4 sulfates is required, which increase the fats specific production from 0,019 to 0,030 g/g of sugars in each case. To improve the vital efficiency of the Cryptococcus curvatus Y-2236 the addition of ferrous FeSO4 and manganese MnSO4 sulfates, as well as sources of phosphorus KH2PO4 and nitrogenium (NH4)2SO4is required. Adding these nutrients contributes the increase of fats specific production from 0,011 to 0,015–0,020 g/g of sugars.

Author(s):  
С.О. СЕМЕНИХИН ◽  
О.В. ФЕДОСЕЕВА ◽  
М.В. БАБАКИНА ◽  
Н.М. ДАИШЕВА

Проведены исследования обработки растворов свекловичной мелассы 4 штаммами микроорганизмов с целью обогащения растворов жирами. Выявлено влияние начального значения рН, а также оптимального содержания сухих веществ в растворах мелассы, обеспечивающие эффективную жизнедеятельность микроорганизмов с синтезом биологически активных веществ. Установлено, что штаммы R. glutinis Y-332, C. curvatus Y-2236 и U. isabellina F-526 в растворах мелассы с начальным значением рН 8,5 синтезировали жиры в количестве 0,015 0,017 и 0,007 г/г сахаров соответственно штамм R. toruloides Y-334 в растворе мелассы с начальным значением рН 7,0 синтезировал жиры в количестве 0,004 г/г сахаров. Впервые получены экспериментальные данные, позволившие оценить эффективность микробиологического синтеза жиров в растворах мелассы без дополнительного внесения биогенных веществ, а также без поддержания оптимальной рН среды 4 видов микроорганизмов. Обосновано, что штаммы R. glutinis Y-332 и C. curvatus Y-2236 являются наиболее перспективными для обогащения растворов свекловичной мелассы жирами. Research aimed at treatment of beet molasses solutions with 4 strains of microorganisms in order to enrich the solutions with fats has beed established. The influence of the initial pH value, as well as the optimal dry matter content in molasses solutions, which ensure the effective vital activity of microorganisms with the synthesis of biologically active substances, is revealed. It was established that the strains of R. glutinis Y-332, C. curvatus Y-2236 and U. isabellina F-526 in molasses solutions with an initial pH of 8,5 synthesize fats in an amount of 0,015 0,017 and 0,007 g/g of sugars, respectively and the strain of R. toruloides Y-334 in molasses solution with an initial pH value of 7,0 synthesizes fats in an amount of 0,004 g/g of sugars. For the first time, it was obtained the experimental data that made possible to evaluate effectiveness of microbiological synthesis of fats in molasses solutions without nutrient addition, as well as without maintaining the optimal pH of the environment for 4 types of microorganisms. It is proved that R. glutinis strain Y-332 and C. curvatus strain Y-2236 are the most promising strains for enriching beet molasses solutions with fats.


2018 ◽  
Vol 64 (2) ◽  
pp. 65-70 ◽  
Author(s):  
V.O. Trokoz ◽  
◽  
A.V. Trokoz ◽  
V.F. Radchikov ◽  
M.M. Broshkov ◽  
...  

Author(s):  
M.A. Frolova ◽  
A.I. Albulov ◽  
E.I. Kovaleva ◽  
A.K. Eliseev ◽  
A.V. Grin

Unfavorable environmental factors: pesticides, chemicals, poor nutrition of bee colonies lead to a decrease in the bee's immune defense. Currently, there is a continuous search for biologically active substances that stimulate the vital activity of bees and increase the egg-laying of queens. Analysis of scientific sources data has shown high efficiency for stimulating the viability and increasing the productivity of bees of such biologically active additives as chitosan and its derivatives, probiotic strains of bacteria Bacillus subtilis and Bacillus Lichineformis, as well as sources of vital amino acids. The experience accumulated to date in the use of chitosan and its derivatives in veterinary medicine makes it possible to classify chitosan as an effective adaptogen with multifunctional properties capable of providing the body's resistance to numerous adverse environmental factors and pathogens of various diseases. Due to the excess positive charge, chitosan acquires the properties of a highly active anionite. It binds and firmly holds ions of various heavy metals, radioactive isotopes, toxic elements with their subsequent removal from the body of animals, including bees. Chitosan and its derivatives have high antibacterial, sorption, fungicidal, antiviral activity, being a natural biocompatible product that is biodegradable to CO2 and H2O and does not pollute the environment. To stimulate the vital activity of bees and increase the egg-laying of queens, stimulating protein supplements are needed to cover the lack of vital amino acids, probiotic preparations that improve the microbiocenosis of the intestines of bees, sugar syrup. Earlier, at the preliminary stage of research, we developed a recipe for stimulating feeding for bees "BiChit", which includes low molecular weight chitosan, chitosan succinate, dry bacterial mass of Bacillus subtilis VKM B-2716D and Bacillus licheniformis VKM B-2717D, lactose-free edible glucose hydrolyzate, lactose-free whey. In this work, the influence of the multifunctional stimulating feeding "BiHit" on the economically useful traits of bee colonies based on private apiaries in the Moscow region and the Republic of Crimea has been studied. Studies have shown a positive effect of feeding on family strength, brood and honey production.


2019 ◽  
Vol 10 (4) ◽  
pp. 544-552
Author(s):  
N. O. Tymoshok ◽  
M. S. Kharchuk ◽  
V. G. Kaplunenko ◽  
V. S. Bityutskyy ◽  
S. I. Tsekhmistrenko ◽  
...  

The present study was performed to characterize of selenium nanoparticles (Nano-Se) which were synthesized by pulsed laser ablation in liquids to obtain the aqueous selenium citrate solution. The study was conducted using bacteriological and electronic-microscopic methods. Transmission electron microscopy (TEM) and spectroscopy analyses demonstrated that nano-selenium particles obtained by the method of selenium ablation had the size of 4–8 nm. UV-Visible Spectrum colloidal solution Nano-Se exhibited absorption maxima at 210 nm. To clarify some effects of the action of Nano-Se on Bacillus subtilis, we investigated the interaction of Nano-Se with B. subtilis IMV B-7392 before and after incubation with Nano-Se, examining TEM images. It has been shown that exposure to B. subtilis IMV B-7392 in the presence of Nano-Se is accompanied by the rapid uptake of Nano-Se by bacterial culture. TEM analysis found that the electron-dense Nano-Se particles were located in the intracellular spaces of B. subtilis IMV B-7392. That does not lead to changes in cultural and morphological characteristics of B. subtilis IMV B-7392. Using TEM, it has been shown that penetration of nanoparticles in the internal compartments is accompanied with transient porosity of the cell membrane of B. subtilis IMV B-7392 without rupturing it. The effective concentration of Nano-Se 0.2 × 10–3 mg/mL was found to increase the yield of biologically active substances of B. subtilis. In order to create probiotic nano-selenium containing products, the nutrient medium of B. subtilis IMV B-7392 was enriched with Nano-Se at 0.2 × 10–3 mg/mL. It was found that particles Nano-Se are non-toxic to the culture and did not exhibit bactericidal or bacteriostatic effects. The experimentally demonstrated ability of B. subtilis to absorb selenium nanoparticles has opened up the possibility of using Nano-Se as suitable drug carriers.


2020 ◽  
Vol 9 (4) ◽  
pp. 40-43
Author(s):  
N. K. Yuldasheva ◽  
S. D. Gusakova ◽  
D. Kh. Nurullaeva ◽  
N. T. Farmanova ◽  
R. P. Zakirova ◽  
...  

Introduction. Lipids are a widespread group of biologically active substances in nature, making up the bulk of the organic substances of all living organisms. They accumulate in plants in seeds, as well as in fruits and perform a number of vital functions: they are the main components of cell membranes and the energy reserve for the body.Aim. Study of neutral lipids of sown oats (Avena sativa L.).Materials and methods. The objects of the study were fruits (grains) of oats of the sown variety "Tashkent 1," harvested in the Republic of Uzbekistan. Results and discussions. Neutral lipids of oat grains have been found to contain 13 fatty acids with a predominance of the sum of oleic, linolenic and linoleic acids. The total degree of unsaturation was almost 78%. Absorption bands characteristic of these substances were observed in the IR spectrum of MEGC.Conclusion. According to the results of the NL analysis, oat grains consisted of triacylglycerides and free LCDs, which were accompanied by hydrocarbons, phytosterols, triterpenoids and tocopherols.


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