Kiran George Seghal, Ninawe Arun Shivanth, Lipton Anuj Nishanth, Pandian Vijayalakshmi, Selvin Joseph
a Department of Food Science and Technology , Pondicherry University , Puducherry , India .
b Department of Biotechnology , New Delhi , India .
Crit Rev Biotechnol. 2016;36(3):399-415. doi: 10.3109/07388551.2014.979758. Epub 2015 Feb 2.
Rhamnolipid-biosurfactants are known to be produced by the genus Pseudomonas, however recent literature reported that rhamnolipids (RLs) are distributed among diverse microbial genera. To integrate the evolutionary implications of rhamnosyl transferase among various groups of microorganisms, a comprehensive comparative motif analysis was performed amongst bacterial producers. Findings on new RL-producing microorganism is helpful from a biotechnological perspective and to replace infective P. aeruginosa strains which ultimately ensure industrially safe production of RLs. Halotolerant biosurfactants are required for efficient bioremediation of marine oil spills. An insight on the exploitation of marine microbes as the potential source of RL biosurfactants is highlighted in the present review. An economic production process, solid-state fermentation using agro-industrial and industrial waste would increase the scope of biosurfactants commercialization. Potential and prospective applications of RL-biosurfactants including hydrocarbon bioremediation, heavy metal removal, antibiofilm activity/biofilm disruption and greener synthesis of nanoparticles are highlighted in this review.
鼠李糖脂生物表面活性剂已知由假单胞菌属产生,然而最近的文献报道鼠李糖脂(RLs)分布于多种微生物属中。为了整合不同微生物群体中鼠李糖基转移酶的进化意义,对细菌生产者进行了全面的比较基序分析。从生物技术角度来看,发现新的产RL微生物并取代具有感染性的铜绿假单胞菌菌株有助于最终确保RLs的工业安全生产。耐盐生物表面活性剂对于海洋溢油的高效生物修复是必需的。本综述着重介绍了将海洋微生物作为RL生物表面活性剂潜在来源加以开发利用的情况。利用农业工业和工业废料进行固态发酵这一经济的生产工艺将扩大生物表面活性剂商业化的范围。本综述着重介绍了RL生物表面活性剂的潜在和预期应用,包括碳氢化合物生物修复、重金属去除、抗生物膜活性/生物膜破坏以及纳米颗粒的绿色合成。