首页> 外文期刊>Journal of Microbiology, Biotechnology and Food Sciences >OPTIMIZATION OF PHYSICO-CHEMICAL CONDITIONS FOR GROWTH AND ANTI-ARCHAEAL PRODUCTION BY Haloarcula sp. SWO25
【24h】

OPTIMIZATION OF PHYSICO-CHEMICAL CONDITIONS FOR GROWTH AND ANTI-ARCHAEAL PRODUCTION BY Haloarcula sp. SWO25

机译:Haloarcula sp。的生长和反古细菌生产的理化条件的优化25号

获取原文
           

摘要

An extremely halophilic archeon SWO25, affiliated to Haloarcula sp., isolated from sebkha of Ouargla (South Algeria) was screened for secretion of antagonistic substance. To enhance the growth and antagonistic activity, physicochemical conditions were optimized by using a full factorial design. The selected factors were NaCl, MgSO4 and temperature. At first, the antagonistic activity was partially characterized and suitability of Gompertz and Baranyi equations were evaluated for describing archaeal growth curves. The results show that the secreted antagonistic activity has broad spectrum, highest activity was obtained against Halobacterium salinarum and was completely abolished by proteinase K and pronase, suggesting that it is a halocin. The modified Gompertz equation was statistically sufficient to describe the growth data of strain SWO25. Secondary models for Growth rate (μ), lag-time (λ), LnNmax and antagonistic activity (Ac) followed a linear trend with lowest R2 greater than 80% and lack of fit not significant (>0.05). A clear interaction effect between NaCl concentration and temperature on growth rate and anti-archaeal activity was shown; this interaction was affected by MgSO4 concentration in the case of antagonistic activity. Optimal conditions for growth parameters and anti-archaeal activity were different; they were simultaneously optimized at 20% NaCl, 7.5% MgSO4 and a temperature of 45°C. Under these conditions 1.6 and 1.4 fold increase in the specific growth rate and the maximal biomass respectively were reached but there was no further increase on anti-archaeal production. This study contributes to a large-scale biomass and anti-archaeal production for fundamental studies or potential applications.
机译:从Ouargla(南阿尔及利亚)的sebkha分离出的与Haloarcula sp。相关的极嗜盐的古细菌SWO25被筛选出拮抗物质的分泌。为了增强生长和拮抗活性,通过使用全因子设计优化了理化条件。选择的因素为NaCl,MgSO4和温度。首先,对拮抗活性进行部分表征,并评估了Gompertz和Baranyi方程用于描述古细菌生长曲线的适用性。结果表明,所分泌的拮抗活性具有广谱性,对盐沼盐杆菌具有最高的活性,并且被蛋白酶K和链霉蛋白酶完全消除,表明它是盐蛋白。改进的Gompertz方程在统计上足以描述SWO25菌株的生长数据。增长率(μ),滞后时间(λ),LnNmax和拮抗活性(Ac)的次级模型遵循线性趋势,最低R2大于80%,并且缺乏拟合不显着(> 0.05)。 NaCl浓度和温度对生长速率和抗古细菌活性有明显的相互作用。在拮抗活性的情况下,该相互作用受MgSO 4浓度的影响。生长参数和抗古细菌活性的最佳条件不同;同时在20%NaCl,7.5%MgSO4和45°C温度下对它们进行了优化。在这些条件下,比生长速率和最大生物量分别增加了1.6倍和1.4倍,但抗古细菌的产量没有进一步增加。这项研究有助于大规模的生物质和古细菌的生产,以用于基础研究或潜在的应用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号