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Cationic composition of 22 species of bacteria grown in seawater medium.

机译:在海水培养基中生长的22种细菌的阳离子组成。

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Twenty-two species of bacteria of marine, estuarine, and terrestrial origin were analyzed for cationic content by atomic absorption spectrophotometry after growth in a basal seawater medium. Alcaligenes marinus was analyzed from eight separate but replicate determinations yielding the following cationic concentrations: Na, 5,600 +/- 2,260; Mg 1,580 +/- 740; K, 700 +/- 360; Ca, 790 +/- 390; Mn, 1.7 +/- 0.5; Fe, 256 +/- 57; Ni, 1.7 +/- 0.7; Cu, 14 +/- 4; Zn, 122 +/- 27; Cd, 2.8 +/- 0.7; and Pb, 10 +/- 3 ppm/(dry weight). Washing A. marinus cells before analyses was necessary due to interstitial medium within the cell pellets after centrifugation and loose cationic retention by the cells. The principal source of error in the procedure was ascribed to variability due to washing cells with 0.5 M ammonium formate. The mean cationic concentrations for trace elements in the 22 bacterial cultures grown in the basal seawater medium to constant optical density and washed three times with 0.5 M ammonium formate were: Mn, 2.4 +/- 3.8; Fe, 262 +/- 112; Ni, 2.3 +/- 1.8; Cu, 24 +/- 17; Zn, 146 +/- 72; Cd, 3.8 +/- 2.5; and Pb, 17 +/- 21 ppm (dry weight). Major ions were concentrated only occasionally by the cells after washing, whereas Mn, Fe, Ni, Cu, Zn, Cd, and Pb were concentrated from the medium by the following factors on the average: 180, 1,600, 140, 1,200, 750, 1,900, and 900, respectively.
机译:在基础海水培养基中生长后,通过原子吸收分光光度法分析了22种海洋,河口和陆生细菌的阳离子含量。从八个独立但重复的测定中分析了产碱菌海藻,得到以下阳离子浓度:Na,5,600 +/- 2,260;镁1,580 +/- 740; K,700 +/- 360;钙790 +/- 390; Mn,1.7 +/- 0.5; Mn,1.7 +/- 0.5。铁,256 +/- 57; Ni,1.7 +/- 0.7;铜,14 +/- 4;锌,122 +/- 27;镉2.8 +/- 0.7;和Pb,10 +/- 3 ppm /(干重)。由于离心后细胞沉淀内的间质培养基和细胞的松散阳离子滞留,因此在分析前需要洗涤海藻细胞。程序中的主要错误来源是由于使用0.5 M甲酸铵洗涤细胞而导致的可变性。在基础海水培养基中生长至恒定光密度并用0.5 M甲酸铵洗涤3次的22种细菌培养物中微量元素的平均阳离子浓度为:Mn,2.4 +/- 3.8;铁262 +/- 112; Ni,2.3 +/- 1.8;铜,24 +/- 17;锌,146 +/- 72;镉3.8 +/- 2.5;和Pb,17 +/- 21 ppm(干重)。洗涤后,主要离子仅偶尔会被细胞浓缩,而Mn,Fe,Ni,Cu,Zn,Cd和Pb则平均通过以下因素从培养基中浓缩:180、1,600、140、1,200、750, 1,900和900。

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