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Biochemical Basis of Obligate Autotrophy in Blue-Green Algae and Thiobacilli

机译:蓝绿藻和硫杆菌中专性自养的生化基础

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摘要

Differential rates of incorporation of sugars, organic acids, and amino acids during autotrophic growth of several blue-green algae and thiobacilli have been determined. In obligate autotrophs (both blue-green algae and thiobacilli), exogenously furnished organic compounds make a very small contribution to cellular carbon; acetate, the most readily incorporated compound of those studied, contributes about 10% of newly synthesized cellular carbon. In Thiobacillus intermedius, a facultative chemoautotroph, acetate contributes over 40% of newly synthesized cellular carbon, and succinate and glutamate almost 90%. In the obligate autotrophs, carbon from pyruvate, acetate, and glutamate is incorporated into restricted groups of cellular amino acids, and the patterns of incorporation in all five organisms are essentially identical. These patterns suggest that the tricarboxylic acid cycle is blocked at the level of α-ketoglutarate oxidation. Enzymatic analyses confirmed the absence of α-ketoglutarate dehydrogenase in the obligate autotrophs, and also revealed that they lacked reduced nicotinamide adenine dinucleotide oxidase, and had extremely low levels of malic and succinic dehydrogenase. These enzymatic deficiencies were not manifested by the two facultative chemoautotrophs examined. On the basis of the data obtained, an interpretation of obligate autotrophy in both physiological and evolutionary terms has been developed.
机译:已经确定了几种蓝绿藻和硫杆菌的自养生长过程中糖,有机酸和氨基酸的掺入率差异。在专性自养生物中(蓝绿藻和硫杆菌),外源提供的有机化合物对细胞碳的贡献很小。乙酸酯是研究对象中最容易掺入的化合物,占新合成细胞碳的约10%。在中间型硫代自养细菌间质硫杆菌中,乙酸盐占新合成细胞碳的40%以上,琥珀酸盐和谷氨酸盐占近90%。在专性自养生物中,丙酮酸,乙酸盐和谷氨酸的碳被结合到细胞氨基酸的限制性基团中,并且在所有五个生物体中的结合方式基本上是相同的。这些模式表明三羧酸循环在α-酮戊二酸的氧化水平被阻断。酶分析证实专性自养生物中不存在α-酮戊二酸脱氢酶,并且还显示它们缺乏烟酰胺腺嘌呤二核苷酸氧化酶的还原,并且苹果酸和琥珀酸脱氢酶的含量极低。这些酶缺乏症没有通过两种兼性化学自养生物得到证实。根据获得的数据,已经开发了从生理学和进化学角度对专性自养的解释。

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