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The quantity and distribution of biofilm growth of Escherichia coli strain ATCC 9723 depends on the carbon/energy source

机译:大肠杆菌菌株 ATCC 9723 的生物膜生长的数量和分布取决于碳/能量来源

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Escherichia coli strain 15 (ATCC 9723) formed robust biofilms of two distinct forms on glass tubes. In rich, low-osmolarity medium, the biofilms were restricted to the air/liquid interface, resulting in rings attached to the glass. As it was not evident that these biofilms extended across the liquid surface, we termed them 'ring' rather than 'pellicle' biofilms. In minimal medium supplemented with a non-fermentable substrate as the carbon/energy source, we observed either robust ring biofilms or little biofilm of any type, depending on the substrate. In contrast, fermentable substrates (sugars and sugar derivatives) supported robust biofilms covering most of the solid/liquid interface, which we termed 'tube-covering biofilms'. Maximal biofilm growth was observed when the sugar was a relatively poor substrate, supporting slow growth and known to cause minimal dephosphorylation of regulatory protein Enzyme IIA Glucose of the phosphotransferase system. Compounds found to be inhibitors of biofilm growth, such as lactate, caused a shift from tube-covering to ring form at low concentration and complete loss of biofilm growth at high when added to minimal medium supplemented with a fermentable substrate. Exogenous cAMP activated biofilm growth under all conditions tested, leading to more intense ring or tube-covering biofilms and/or to a shift from ring to tube-covering form.
机译:大肠杆菌菌株 15 (ATCC 9723) 在玻璃管上形成两种不同形式的坚固生物膜。在丰富的低渗透压介质中,生物膜被限制在空气/液体界面上,导致环附着在玻璃上。由于这些生物膜在液体表面的延伸并不明显,因此我们称它们为“环形”而不是“薄层”生物膜。在补充有不可发酵底物作为碳/能量源的最小培养基中,我们观察到坚固的环形生物膜或任何类型的小生物膜,具体取决于基质。相比之下,可发酵底物(糖和糖衍生物)支持覆盖大部分固/液界面的坚固生物膜,我们称之为“管状覆盖生物膜”。当糖是相对较差的底物时,观察到最大的生物膜生长,支持缓慢生长,并且已知会导致磷酸转移酶系统的调节蛋白酶 IIA 葡萄糖的最小去磷酸化。被发现是生物膜生长抑制剂的化合物,如乳酸,在低浓度下从管状转变为环状,当添加到补充有可发酵底物的最小培养基中时,生物膜生长完全丧失。在所有测试条件下,外源性 cAMP 激活生物膜生长,导致更强烈的环状或管状覆盖生物膜和/或从环状生物膜转变为管状覆盖形式。

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