Influence of cobalt chloride and ferric citrate on purple non-sulfur bacteria Rhodopseudomonas yavorovii

IF 0.8 Q2 Environmental Science Biosystems Diversity Pub Date : 2022-01-28 DOI:10.15421/012204
S. Hnatush, O. Maslovska, S. Komplikevych, I. V. Kovbasa
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引用次数: 1

Abstract

Heavy metals that enter the environment due to natural processes or industrial activities, when accumulated, have a negative impact on organisms, including microorganisms. Microorganisms have developed various adaptations to heavy metal compounds. The aim of our work was to investigate the influence of ferric citrate and cobalt (II) chloride on biomass accumulation, indicators of free radical damage and activity of enzymes of the antioxidant defense system of bacteria Rhodopseudomonas yavorovii IMV B-7620, that were isolated from the water of Yavorivske Lake (Ukraine, Lviv region), which was formed as a result of flooding of a sulfur quarry. We used cultural, photometric methods, and statistical processing of the results was performed using two-way ANOVA and factor analysis. It was found that ferric citrate at a concentration of 1–12 mM causes inhibition of the accumulation of biomass of bacteria Rh. yavorovii IMV B-7620 up to 44.7%, and cobalt (II) chloride at a concentration of 1–15 mM – up to 70.4%, compared with the control. The studied concentrations of ferric citrate and cobalt (II) chloride cause free radical damage to lipids and proteins of Rh. yavorovii IMV B-7620. As a result of two-way ANOVA we found that under the influence of ferric citrate statistically significant changes in biomass accumulation, lipid hydroperoxides and thiobarbiturate reactive species content, superoxide dismutase activity were predetermined by increasing the concentration of metal salts as well as increasing the duration of cultivation of bacteria, while the content of diene conjugates and catalase activity changed with increasing duration of cultivation. Under the influence of cobalt (II) chloride, statistically significant changes in all studied indicators were found both due to the increase in the concentration of metal salts and with increasing duration of bacterial cultivation. The studied parameters of Rh. yavorovii IMV B-7620 cells under the influence of ferric citrate and cobalt (II) chloride are combined into two factors, that explain 95.4% and 99.2% of the total data variance, respectively. Under the influence of ferric citrate, the first latent factor included diene conjugates, thiobarbiturate reactive species, carbonyl groups in proteins, which are closely linked by a direct bond and inversely related to the content of lipid hydroperoxides and catalase activity. The second latent factor included duration of cultivation of bacteria, biomass accumulation, and superoxide dismutase activity, which are inversely related to lipid hydroperoxide content and catalase activity. Under the influence of cobalt (II) chloride, the first latent factor included the content of lipid hydroperoxides, carbonyl groups in proteins, as well as catalase and superoxide dismutase activities, which are inversely related to bacterial biomass.
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氯化钴和柠檬酸铁对紫色无硫细菌雅氏红假单胞菌的影响
由于自然过程或工业活动而进入环境的重金属一旦积累,就会对包括微生物在内的生物体产生负面影响。微生物对重金属化合物产生了不同的适应性。我们的工作目的是研究柠檬酸铁和氯化钴(II)对亚沃罗维红假单胞菌IMV B-7620的生物量积累、自由基损伤指标和抗氧化防御系统酶活性的影响,这些细菌是从亚沃里夫斯克湖(乌克兰利沃夫地区)的水中分离出来的,该湖是由硫磺采石场的洪水形成的。我们采用培养、光度法,并采用双向方差分析和因子分析对结果进行统计处理。结果表明,1 ~ 12 mM浓度的柠檬酸铁对Rh菌生物量的积累有抑制作用。与对照相比,yavorovii IMV B-7620可达44.7%,而氯化钴(II)浓度为1-15 mM时可达70.4%。研究了柠檬酸铁和氯化钴浓度对Rh脂质和蛋白质的自由基损伤。IMV B-7620。通过双向方差分析发现,在柠檬酸铁的影响下,菌体生物量积累、脂质氢过氧化物和硫代巴比脲类活性物质含量、超氧化物歧化酶活性均由金属盐浓度的增加和培养时间的延长决定,而二烯偶联物含量和过氧化氢酶活性则随着培养时间的延长而变化。在氯化钴(II)的影响下,由于金属盐浓度的增加和细菌培养时间的延长,所研究的所有指标都发生了统计学上显著的变化。研究了Rh的参数。yavorovvii IMV B-7620电池在柠檬酸铁和氯化钴(II)的影响下被合并为两个因素,分别解释了95.4%和99.2%的总数据方差。在柠檬酸铁的影响下,第一潜在因子包括二烯缀合物、硫代巴比妥酸盐活性物质、蛋白质中的羰基,它们通过直接键紧密相连,与脂质氢过氧化物含量和过氧化氢酶活性呈负相关。第二个潜在因素包括细菌培养时间、生物量积累和超氧化物歧化酶活性,它们与脂质过氧化氢含量和过氧化氢酶活性呈负相关。在氯化钴的影响下,第一个潜在因素包括脂质氢过氧化物含量、蛋白质中的羰基以及过氧化氢酶和超氧化物歧化酶活性,它们与细菌生物量呈负相关。
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来源期刊
CiteScore
2.40
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0.00%
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审稿时长
12 weeks
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