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Effects of Inorganic Particles on Metabolism by a Periphytic Marine Bacterium

机译:无机颗粒对围生性海洋细菌代谢的影响

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摘要

Measurements were made of adsorption of a periphytic marine bacterium, glucose, and glutamic acid to inorganic particles in seawater and defined bacterial growth medium. Measurements of the metabolism of bacteria were made in the presence and absence of particles by microcalorimetry and radiorespirometry. It was found that hydroxyapatite adsorbs glutamic acid, but not glucose, from the experimental medium. It was also found that hydroxyapatite adsorbs essentially all of the bacteria from the medium when the bacterial concentration is approximately 6 × 105 bacteria per ml. If the bacterial concentration is approximately 6 × 107, then only a small fraction of cells become attached. It was therefore possible to select bacterial concentrations and organic nutrients so that bacterial attachment, organic nutrient adsorption, or both would occur in different experiments. In this experimental system the metabolism by attached and nonattached bacteria of adsorbing and nonadsorbing organic nutrients was measured. The results show that bacterial activity in this model system was not enhanced by the particles, regardless of whether the bacteria, the organic nutrient, or both were associated with the surface. In fact, the respiratory activity of the attached bacteria was diminished in comparison with that of free bacteria.
机译:测量了周围水生细菌,葡萄糖和谷氨酸对海水和特定细菌生长培养基中无机颗粒的吸附。通过微量量热法和放射呼吸法在存在和不存在颗粒的情况下测量细菌的代谢。发现羟基磷灰石从实验培养基吸附谷氨酸,但不吸附葡萄糖。还发现,当细菌浓度为每毫升约6×10 5 细菌时,羟基磷灰石从培养基中吸收了基本上所有细菌。如果细菌浓度约为6×10 7 ,则仅一小部分细胞会附着。因此,有可能选择细菌浓度和有机营养物,以便细菌附着,有机营养物吸附或同时发生在不同的实验中。在该实验系统中,测量了附着和不附着的细菌对已吸收和未吸收的有机营养素的代谢。结果表明,无论细菌,有机营养物或两者是否与表面相关,颗粒都不会增强该模型系统中的细菌活性。实际上,与游离细菌相比,附着细菌的呼吸活性降低了。

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