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Optimization of fermentation conditions through response surface methodology for enhanced antibacterial metabolite production by Streptomyces sp. 1-14 from cassava rhizosphere

机译:通过响应面法优化发酵条件以增强链霉菌产生的抗菌代谢产物。木薯根际1-14

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摘要

Streptomyces species 1–14 isolated from cassava rhizosphere soil were evaluated for their antibacterial efficacy against Fusarium oxysporum f.sp. cubense race 4 (FOC4). Of the 63 strains tested, thirteen exhibited potent antibacterial properties and were further screened against eight fungal pathogens. The strain that showed maximum inhibition against all of the test pathogens was identified by 16S rDNA sequencing as Streptomyces sp. 1–14, was selected for further studies. Through the propagation of Streptomyces sp. 1–14 in soil under simulated conditions, we found that FOC4 did not significantly influence the multiplication and survival of Streptomyces sp. 1–14, while indigenous microorganisms in the soil did significantly influence Streptomyces sp. 1–14 populations. To achieve maximum metabolite production, the growth of Streptomyces 1–14 was optimized through response surface methodology employing Plackett-Burman design, path of steepest ascent determinations and Box-Behnken design. The final optimized fermentation conditions (g/L) included: glucose, 38.877; CaCl2•2H2O, 0.161; temperature, 29.97°C; and inoculation amount, 8.93%. This optimization resulted in an antibacterial activity of 56.13% against FOC4, which was 12.33% higher than that before optimization (43.80%). The results obtained using response surface methodology to optimize the fermentation medium had a significant effect on the production of bioactive metabolites by Streptomyces sp. 1–14. Moreover, during fermentation and storage, pH, light, storage temperature, etc., must be closely monitored to reduce the formation of fermentation products with reduced antibacterial activity. This method is useful for further investigations of the production of anti-FOC4 substances, and could be used to develop bio-control agents to suppress or control banana fusarium wilt.
机译:从木薯根际土壤中分离的链霉菌1-14种被评估对尖孢镰刀菌具有抗菌作用。立方体种族4(FOC4)。在所测试的63株菌株中,有13株表现出强大的抗菌性能,并针对8种真菌病原体进行了进一步筛选。通过16S rDNA测序鉴定对所有测试病原体显示出最大抑制作用的菌株为链霉菌属。选择1–14进行进一步研究。通过链霉菌sp的繁殖。在模拟条件下在土壤中的1–14,我们发现FOC4不会显着影响链霉菌sp。的繁殖和存活。 1–14,而土壤中的原生微生物确实对链霉菌具有显着影响。 1–14人口。为了获得最大的代谢产物产量,通过使用Plackett-Burman设计,最陡峭的上升路径和Box-Behnken设计的响应面方法,优化了链霉菌1-14的生长。最终的最佳发酵条件(g / L)包括:葡萄糖38.877;发酵后的发酵条件。 CaCl2·2H2O,0.161;温度29.97°C;接种量为8.93%。这种优化导致对FOC4的抗菌活性为56.13%,比优化前的抗菌活性(43.80%)高12.33%。使用响应面方法优化发酵培养基获得的结果对链霉菌属生物活性代谢产物的产生有重要影响。 1-14。此外,在发酵和储存过程中,必须严密监测pH值,光照,储存温度等,以减少抗菌活性降低的发酵产物的形成。该方法可用于进一步研究抗FOC4物质的产生,并可用于开发生物控制剂来抑制或控制香蕉枯萎病。

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