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1 to produce a lipopeptide that functions as a biosurfactant.
2 scued for swarming by external addition of a biosurfactant.
3 xploitation of a new generation of microbial biosurfactants.
4 requiring massive secretions of rhamnolipid biosurfactants.
5 lecular genetics of two structurally diverse biosurfactants, a glycolipid and a lipopeptide, were the
6 ivity, and mutual synergism of antimicrobial biosurfactants and reduced destabilization of membrane p
8 ecules (carboxymethyl cellulose, rhamnolipid biosurfactants, and soy protein) on the aggregation and
11 bolic prudence works because the carbon-rich biosurfactants are only produced when growth is limited
13 SapB represents an important class of these biosurfactants, as illustrated by its ability to restore
17 olites identified a new class of lipopeptide biosurfactants/biofilm modulators (the malleipeptins) an
18 atory mechanisms of the originally described biosurfactants, both of which are controlled by quorum s
21 tically manipulating a strain to produce the biosurfactants constitutively we show that swarming beco
23 pB is required for their ability to serve as biosurfactants facilitating the emergence of newly forme
25 but that while their ability to function as biosurfactants is conserved, their specific lantibiotic
28 otile and displays increased production of a biosurfactant-like substance, reduced intracellular surv
29 ent molecular size: rhamnolipid (RL, anionic biosurfactant, M.W. 600 g mol(-1)) and carboxymethylcell
30 the other surface modifiers, suggesting that biosurfactants may be the most suitable surface modifier
32 s to investigate the effect of a rhamnolipid biosurfactant on biodegradation of (14)C-labeled phenant
35 metabolic prudence: wild-type cells secrete biosurfactants only when the cost of their production an
36 heir own because they lack production of the biosurfactant orfamide A, but they do co-swarm with orfa
39 d surfaces, requires functional flagella and biosurfactant production, and results in complex motilit
41 variants detach by a mechanism requiring the biosurfactant rhamnolipid and that this detachment mecha
42 ort, we show that the P. aeruginosa-produced biosurfactant rhamnolipid greatly enhances the solubilit
43 rstanding why certain surfactants, including biosurfactants such as antimicrobial lipopeptides and sa
46 ive for industrial sustainability has pushed biosurfactants to the top of the agenda of many companie
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