Korenevsky Anton, Beveridge Terry J
Department of Molecular and Cellular Biology and Advanced Foods and Materials Network - Networks of Centres of Excellence, University of Guelph, Guelph, Ontario N1G 2W1, Canada.
Microbiology (Reading). 2007 Jun;153(Pt 6):1872-1883. doi: 10.1099/mic.0.2006/003814-0.
Shewanella strains have previously been studied with regard to their cell surface ultrastructure and LPS composition. They have now been further characterized with respect to their surface physicochemistry and ability to adhere to haematite. The surfaces of the Shewanella strains were found to be electronegative and hydrophilic, and these properties could be correlated with LPS composition or the presence of capsular polysaccharides. Strains expressing rough LPS with no capsule were more hydrophobic and electronegative than those possessing smooth LPS or capsules. By combining different approaches, such as contact-angle measurement, hydrophilic/hydrophobic chromatography, microelectrophoresis, adhesion assays and calculation of interaction energies, it was shown that electrostatic interactions predominate over hydrophobic interactions at the cell-iron oxide interface. Bacterial adhesion to haematite was significantly reduced in strains expressing smooth LPS or a capsule. These findings remained true for Shewanella strains grown under either aerobic or anaerobic conditions, although the surfaces of anaerobic cells appeared to be less electronegative and more hydrophilic than those of aerobic cells.
此前已对希瓦氏菌属菌株的细胞表面超微结构和脂多糖组成进行了研究。现在,又进一步对它们的表面物理化学性质以及附着于赤铁矿的能力进行了表征。发现希瓦氏菌属菌株的表面呈负电性且具亲水性,这些特性可能与脂多糖组成或荚膜多糖的存在有关。表达粗糙脂多糖且无荚膜的菌株比那些具有光滑脂多糖或荚膜的菌株更疏水且带负电。通过结合不同方法,如接触角测量、亲水/疏水色谱法、微电泳、黏附试验以及相互作用能的计算,结果表明在细胞与氧化铁界面处,静电相互作用比疏水相互作用更为显著。表达光滑脂多糖或荚膜的菌株对赤铁矿的细菌黏附显著减少。对于在需氧或厌氧条件下生长的希瓦氏菌属菌株,这些发现仍然成立,尽管厌氧细胞的表面似乎比需氧细胞的表面负电性更弱且亲水性更强。