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生物表面活性剂的天然作用。

Natural roles of biosurfactants.

作者信息

Ron E Z, Rosenberg E

机构信息

Department of Molecular Microbiology and Biotechnology, Tel Aviv University, Ramat Aviv, Israel.

出版信息

Environ Microbiol. 2001 Apr;3(4):229-36. doi: 10.1046/j.1462-2920.2001.00190.x.

Abstract

Microorganisms produce a variety of surface-active agents (or surfactants). These can be divided into low-molecular-weight molecules that lower surface and interfacial tensions efficiently and high-molecular-weight polymers that bind tightly to surfaces. These surfactants, produced by a wide variety of microorganisms, have very different chemical structures and surface properties. It is therefore reasonable to assume that different groups of biosurfactants have different natural roles in the growth of the producing microorganisms. Moreover, as their chemical structures and surface properties are so different, each emulsifier probably provides advantages in a particular ecological niche. Several bioemulsifiers have antibacterial or antifungal activities. Other bioemulsifiers enhance the growth of bacteria on hydrophobic water-insoluble substrates by increasing their bioavailability, presumably by increasing their surface area, desorbing them from surfaces and increasing their apparent solubility. Bioemulsifiers also play an important role in regulating the attachment-detachment of microorganisms to and from surfaces. In addition, emulsifiers are involved in bacterial pathogenesis, quorum sensing and biofilm formation. Recent experiments indicate that a high-molecular-weight bioemulsifier that coats the bacterial surface can be transferred horizontally to other bacteria, thereby changing their surface properties and interactions with the environment.

摘要

微生物能产生多种表面活性剂。这些表面活性剂可分为能有效降低表面张力和界面张力的低分子量分子,以及紧密结合于表面的高分子量聚合物。由多种微生物产生的这些表面活性剂,具有非常不同的化学结构和表面性质。因此,合理的假设是,不同种类的生物表面活性剂在产生它们的微生物生长过程中具有不同的天然作用。此外,由于它们的化学结构和表面性质差异如此之大,每种乳化剂可能在特定的生态位中具有优势。几种生物乳化剂具有抗菌或抗真菌活性。其他生物乳化剂通过增加疏水性水不溶性底物上细菌的生物利用度来促进其生长,推测是通过增加其表面积、将它们从表面解吸以及增加其表观溶解度来实现的。生物乳化剂在调节微生物与表面的附着 - 脱离过程中也起着重要作用。此外,乳化剂还参与细菌致病、群体感应和生物膜形成。最近的实验表明,一种覆盖细菌表面的高分子量生物乳化剂可以水平转移到其他细菌,从而改变它们的表面性质以及与环境的相互作用。

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