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Observations on the Distinction Between Oligotrophic and Eutrophic Marine Bacteria

机译:富营养性和富营养性海洋细菌的区别观察

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The nutritional requirements of two marine bacteria designated as oligotrophic because they could grow on media containing 10 mg of C per liter supplied as peptone and two classified as eutrophic because they could grow only at higher concentrations of C supplied as peptone were examined. Each of the four organisms was found to have its own unique group of compounds which could serve either individually or in combination as sources of carbon and energy for growth. When the peptone in the medium was replaced by another appropriate source of carbon and energy, the difference in the capacity of the organisms examined to grow at 10 mg of C per liter disappeared, and all four organisms could be described as being oligotrophic. Some of the organisms required a low concentration of one specific carbon source but a higher concentration of another. One of the organisms was inhibited by high concentrations of one specific carbon source but not by another. The observations indicate that current methods of enumeration based on the capacity of cells to grow in the presence of high or low concentrations of complex mixtures of nutrients such as peptone do not distinguish between two broad classes of bacteria differing intrinsically in their ability to grow at high and low concentrations of nutrients. Whether two such broad classes exist seems extremely doubtful. Which organisms will multiply in a particular environment will depend on both the specific nutrients available and their concentrations.
机译:检验了两种海洋细菌的营养需求,这两种细菌被指定为低营养的,因为它们可以在每升含10 mg C的蛋白media中生长,而另外两种被分类为富营养的,因为它们只能在较高浓度的C p中生长。发现四种生物中的每一种都有其独特的化合物组,这些化合物可以单独或组合用作生长的碳和能量来源。当培养基中的蛋白one被另一种合适的碳和能源替代时,被检查的生物以每升10 mg C的能力生长的能力差异就消失了,所有这四种生物都可以说是贫营养的。有些生物需要低浓度的一种特定碳源,但需要较高的另一种碳源。一种生物被高浓度的一种特定碳源抑制,而未被另一种碳源抑制。观察结果表明,当前的枚举方法基于细胞在高或低浓度的复杂营养混合物(例如蛋白one)存在下的生长能力,无法区分本质上在高温下生长能力不同的两大类细菌和低浓度的营养素。是否存在两个这样的大类似乎非常令人怀疑。哪些生物将在特定环境中繁殖将取决于可用的特定营养素及其浓度。

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