首页> 外文期刊>Journal of Biotechnology >Rapid and solitary production of mono-rhamnolipid biosurfactant and biofilm inhibiting pyocyanin by a taxonomic outlier Pseudomonas aeruginosa strain CR1
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Rapid and solitary production of mono-rhamnolipid biosurfactant and biofilm inhibiting pyocyanin by a taxonomic outlier Pseudomonas aeruginosa strain CR1

机译:通过分类异常铜绿假单胞菌菌株CR1快速和孤零零地生产单核脂素生物活性剂和生物膜抑制粘稠的碧糊肽

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摘要

Biosurfactant - Rhamnolipids (RLs) and antibacterial toxin - pyocyanin (PYO) produced by Pseudomonas aeruginosa strains have great potential for biotechnological applications. Generally, RLs are produced as a mixture of di-rhamnolipids (di-RLs) and mono-rhamnolipids (mono-RLs). Mono-RLs possess superior emulsification and antimicrobial properties and are costlier than di-RLs. In this study, a taxonomic outlier P. aeruginosa strain CR1 isolated from rhizosphere soil was explored for mono-RLs and PYO production. Phylogenetically strain CR1 resembles avirulent outlier P. aeruginosa strain ATCC9027, lacks archetypical virulence genes and harbors unique pathways for the synthesis of solely mono-RLs and PYO. Strain CR1 produced RL biosurfactant which efficiently emulsified hydrocarbons, showed hemolysis and inhibited Bacillus subtilis. At 37 degrees C, strain CR1 exclusively produced 21.77 g L-1 and 19.22 g L-1 rhamnolipid in glycerol amended Luria Bertani (LB) medium and basal medium amended with rice bran oil, respectively after 54 h growth. Besides RL production was unaffected under varying nitrogen sources. Structural characterization using FTIR, TLC, and LC-MS confirmed that strain CR1 exclusively produced mono-RLs, majorly dominated by Rha-C-10-C-10, Rha-C-10-C-8, and CH3-Rha-C-12:2-C-10:1. The compound was stable over a wide pH range (4-12), salinity (25%) and 100 degrees C indicating its applicability under harsh environmental conditions. In addition, strain CR1 produced 4.5 mu g mL(-1) PYO, which could efficiently inhibit biofilm formation by Bacillus species. The environmental outlier strain CR1 can be used for the industrial production of biotechnologically important mono-RLs and PYO.
机译:通过假单胞菌铜绿假单胞菌菌株生产的生物活性剂 - 菌毒素(RLS)和抗菌毒素 - 碧菁(PYO)具有很大的生物技术应用的潜力。通常,RLS作为二核脂脂(DI-RLS)和单rhamnolipid(单rls)的混合物制备。单r-rls具有卓越的乳化和抗微生物性能,并且比di-rls更昂贵。在本研究中,为单次RLS和PYO生产探索了从根际土壤中分离的分类异常铜绿假单胞菌菌株CR1。系统源性菌株CR1类似于无毒的异常值P.铜绿假单胞菌菌株ATCC9027,缺乏原型的毒力基因和Harbors独特的途径,用于合成单一RLS和Pyo。菌株Cr1产生的R1生物活性剂,其有效地乳化烃,显示出溶血和抑制的枯草芽孢杆菌。在37℃下,菌株CR1专门制备21.77g L-1和19.22g L-1 rhamnolipid在甘油修正后的甘油(LURIA Bertani(LB)培养基和基础培养基,分别在54小时后分别在54小时后进行。除了RL生产之外,在不同的氮源下不受影响。使用FTIR,TLC和LC-MS的结构表征证实,菌株CR1专门生产的单r-R1,主要由RHA-C-10-C-10,RHA-C-10-C-8和CH3-RHA-C. -12:2-C-10:1。该化合物在宽的pH范围(4-12),盐度(25%)和100摄氏度上稳定,表明其在恶劣环境条件下的适用性。此外,菌株Cr1产生4.5μgmml(-1)π,其可以有效地抑制Bacillus物种的生物膜形成。环境异常菌株CR1可用于生物技术重要的单rls和π的工业生产。

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