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首页> 外文期刊>Marine biotechnology >Enhanced production of antimicrobial compounds by three salt-tolerant actinobacterial strains isolated from the sundarbans in a niche-mimic bioreactor.
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Enhanced production of antimicrobial compounds by three salt-tolerant actinobacterial strains isolated from the sundarbans in a niche-mimic bioreactor.

机译:在利基模拟生物反应器中,从sundarbans中分离出的三种耐盐放线菌菌株提高了抗菌化合物的生产。

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摘要

A novel reactor system, the rotating disk bioreactor (RDBR), was used to mimic the niche environmental conditions of three salt-tolerant estuarine actinobacteria isolated from the Sundarbans region off the Bay of Bengal, designated MS310 (99% similar in its 16S rRNA gene sequence to Streptomyces parvallus), MS3/20 and MS1/7. The RDBR, operated at a rotational speed of one revolution per day, 50% submergence of discs, aeration rate of 1.0 vvm, and with a sucrose-containing medium, faithfully mimicked the intertidal estuarine habitat of these marine isolates, and supported biofilm formation and production of antimicrobial metabolites-in particular, actinomycin D by MS310. Onset of antibiotic production by MS310 occurs at 20 h in the RDBR compared to 55 h in a conventional stirred-tank bioreactor (STBR). Furthermore, peak antimicrobial activity is attained much earlier in the RDBR with MS310 (at 45 h) than that reported with a terrestrial strain of S. parvallus grown in a STBR (at 144 h). Peak antimicrobial activity of metabolites produced by MS1/7 and MS3/20 were also attained earlier in the RDBR (at 25 and 12 h, respectively) than in a STBR (at 80 and 28 h, respectively). Antibiotic synthesis in the three isolates, in general, appears to be associated with their growth. Overall, the RDBR may be considered the preferred alternative to the STBR for production of antimicrobials by biofilm-forming estuarine bacteria for its much higher surface/volume ratio, lower costs, and easy operability.
机译:一种新颖的反应器系统,即旋转盘生物反应器(RDBR),用于模拟从孟加拉湾Sundarbans地区分离的三种耐盐河口放线菌的生态环境条件,指定为MS310(其16S rRNA基因相似度为99%)链霉菌的序列),MS3 / 20和MS1 / 7。 RDBR的运转速度为每天一转,圆盘浸入50%,通气速率为1.0 vvm,并使用含蔗糖的培养基,忠实地模拟了这些海洋分离物的潮间带河口栖息地,并支持了生物膜的形成和MS310生产抗菌代谢产物,特别是放线菌素D。与传统的搅拌罐式生物反应器(STBR)中的55小时相比,RDBR中MS310的抗生素产生开始于20小时。此外,在MSBR的RDBR中(在45 h处)获得的峰值抗菌活性要比在STBR中生长的细小链球菌的地面菌株(在144 h处)报道的要早得多。在RDBR中(分别在25和12 h处)比在STBR中(分别在80和28 h处)还获得了由MS1 / 7和MS3 / 20产生的代谢物的最高抗菌活性。通常,三种分离物中的抗生素合成似乎与其生长有关。总体而言,RDBR可被认为是STBR的首选替代产品,因为它具有更高的表面积/体积比,更低的成本以及易于操作的特性,可通过形成生物膜的河口细菌生产抗菌剂。

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