Max-Planck-Institute for Marine Microbiology, Department Molecular Ecology, Celsiusstr 1, 28359 Bremen, Germany.
Syst Appl Microbiol. 2013 Sep;36(6):417-25. doi: 10.1016/j.syapm.2013.05.002. Epub 2013 Jul 1.
The degradation of diatoms is mainly catalyzed by Bacteroidetes and this process is of global relevance for the carbon cycle. In this study, a combination of catalyzed reporter deposition-fluorescence in situ hybridization (CARD-FISH) and fluorescent lectin binding analysis (FLBA) was used to identify and map glycoconjugates involved in the specific interactions of Bacteroidetes and diatoms, as well as detritus, at the coastal marine site Helgoland Roads (German Bight, North Sea). The study probed both the presence of lectin-specific extracellular polymeric substances (EPS) of Bacteroidetes for cell attachment and that of glycoconjugates on diatoms with respect to binding sites for Bacteroidetes. Members of the clades Polaribacter and Ulvibacter were shown to form microcolonies within aggregates for which FLBA indicated the presence of galactose containing slime. Polaribacter spp. was shown to bind specifically to the setae of the abundant diatom Chaetoceros spp., and the setae were stained with fucose-specific lectins. In contrast, Ulvibacter spp. attached to diatoms of the genus Asterionella which bound, among others, the mannose-specific lectin PSA. The newly developed CARD-FISH/FLBA protocol was limited to the glycoconjugates that persisted after the initial CARD-FISH procedure. The differential attachment of bacteroidetal clades to diatoms and their discrete staining by FLBA provided evidence for the essential role that formation and recognition of glycoconjugates play in the interaction of bacteria with phytoplankton.
硅藻的降解主要由拟杆菌门催化,这一过程对全球碳循环具有重要意义。在这项研究中,组合应用催化报告物沉积-荧光原位杂交(CARD-FISH)和荧光凝集素结合分析(FLBA),以鉴定和绘制与拟杆菌门和硅藻特异性相互作用有关的糖缀合物,以及在沿海海洋地点 Helgoland Roads(北海德国湾)的碎屑的位置。该研究探查了拟杆菌门用于细胞附着的凝集素特异性细胞外聚合物质(EPS)的存在,以及与拟杆菌门结合位点有关的硅藻上糖缀合物的存在。Polaribacter 和 Ulvibacter 两个菌属的成员被证明在聚集体内形成微菌落,FLBA 表明这些聚集体内存在含有半乳糖的黏液。Polaribacter spp. 被证明可以特异性地结合丰富的硅藻 Chaetoceros spp. 的刚毛,并且这些刚毛被特异性地结合到岩藻糖的凝集素染色。相比之下,Ulvibacter spp. 附着在 Asterionella 属的硅藻上,这些硅藻结合了例如 PSA 这种甘露糖特异性的凝集素。新开发的 CARD-FISH/FLBA 方案仅限于在初始 CARD-FISH 过程后仍存在的糖缀合物。拟杆菌门菌属对硅藻的差异附着及其通过 FLBA 的离散染色,为糖缀合物在细菌与浮游植物相互作用中形成和识别所起的重要作用提供了证据。