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Effects of Hydrophobic and Electrostatic Cell Surface Properties of Bacteria on Feeding Rates of Heterotrophic Nanoflagellates

机译:细菌的疏水和静电细胞表面特性对异养纳米鞭毛虫摄食速率的影响

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摘要

The influence of cell surface hydrophobicity and electrostatic charge of bacteria on grazing rates of three common species of interception-feeding nanoflagellates was examined. The hydrophobicity of bacteria isolated from freshwater plankton was assessed by using two different methods (bacterial adhesion to hydrocarbon and hydrophobic interaction chromatography). The electrostatic charge of the cell surface (measured as zeta potential) was analyzed by microelectrophoresis. Bacterial ingestion rates were determined by enumerating bacteria in food vacuoles by immunofluorescence labelling via strain-specific antibodies. Feeding rates varied about twofold for each flagellate species but showed no significant dependence on prey hydrophobicity or surface charge. Further evidence was provided by an experiment involving flagellate grazing on complex bacterial communities in a two-stage continuous culture system. The hydrophobicity values of bacteria that survived protozoan grazing were variable, but the bacteria did not tend to become more hydrophilic. We concluded that variability in bacterial cell hydrophobicity and variability in surface charge do not severely affect uptake rates of suspended bacteria or food selection by interception-feeding flagellates.
机译:考察了细胞表面疏水性和细菌静电荷对三种常见的拦截喂食纳米鞭毛虫的放牧率的影响。从淡水浮游生物分离出的细菌的疏水性通过两种不同的方法进行评估(细菌与碳氢化合物的粘附力和疏水相互作用色谱法)。通过微电泳分析细胞表面的静电荷(以ζ电势测量)。通过菌株特异性抗体的免疫荧光标记,通过计数食物液泡中的细菌来确定细菌的摄入速率。每种鞭毛物种的进食速度大约是两倍,但对猎物的疏水性或表面电荷没有明显的依赖性。由涉及在两阶段连续培养系统中复杂的细菌群落上鞭毛放牧的实验提供了进一步的证据。在原生动物放牧后存活的细菌的疏水性值是可变的,但是细菌并不倾向于变得更亲水。我们得出的结论是,细菌细胞疏水性的可变性和表面电荷的可变性不会严重影响悬浮细菌的摄取率或通过截留鞭毛的食物选择。

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