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赖氏丁酸弧菌 DSM 519 对明胶和氨基酸的生长相关分解代谢潜能。

Growth-associated catabolic potential of Acetoanaerobium sticklandii DSM 519 on gelatin and amino acids.

机构信息

Molecular Systems Engineering Lab, Department of Bioinformatics, School of Life Sciences, Bharathidasan University, Tiruchirappalli, Tamil Nadu, India.

出版信息

J Basic Microbiol. 2020 Oct;60(10):882-893. doi: 10.1002/jobm.202000292. Epub 2020 Aug 18.

Abstract

Acetoanaerobium sticklandii DSM 519 is a hyperammonia-producing anaerobe that catabolizes proteins and amino acids into organic solvents and volatile acids via the Stickland reactions. However, the specific growth rate and metabolic capability of this organism on proteins and amino acids are not yet known. Therefore, the present study was intended to evaluate its specific growth rate and metabolic potential on gelatin and amino acids in the experimental media. We carried out metabolic assay experiments to calculate its ability to utilize pure gelatin, single amino acids, and amino acid pairs at different growth phases. The results of this study show that complete assimilation of gelatin was achieved by its log-phase culture. The subsequent fermentation of amino acids was much faster than gelatin hydrolysis. The rate of gelatin degradation was associated with the growth and catabolic rates of this organism. Many amino acids were not assimilated completely for its growth and energy conservation. A log-phase culture of this organism preferably utilized l-cysteine, l-arginine, and l-serine, and released more fraction of ammonia. As shown by our analysis, the catabolic rates of these amino acids were determined by the rates of respective enzymes involved in amino acid catabolic pathways and feedback repression of ammonia. The growth kinetic data indicated that at the initial growth stage, a metabolic shift in its solventogenesis and acidogenesis phases was associated with catabolism of certain amino acids. Thus, the results of this study provide a new insight to exploit its log-phase culture as a starter for the production of biofuel components from gelatin processing industries.

摘要

产氨厌氧杆菌(Acetoanaerobium sticklandii)DSM 519 是一种能够通过 Stickland 反应将蛋白质和氨基酸分解为有机溶剂和挥发性酸的产氨厌氧菌。然而,该菌利用蛋白质和氨基酸的比生长速率和代谢能力尚不清楚。因此,本研究旨在评估其在实验培养基中对明胶和氨基酸的比生长速率和代谢潜能。我们进行了代谢测定实验,以计算其在不同生长阶段利用纯明胶、单一氨基酸和氨基酸对的能力。本研究结果表明,对数期培养物可以完全同化明胶。随后的氨基酸发酵比明胶水解快得多。明胶降解的速度与该菌的生长和分解代谢速度有关。许多氨基酸不能被完全同化用于其生长和能量保存。该菌的对数期培养物优选利用 l-半胱氨酸、l-精氨酸和 l-丝氨酸,并释放更多的氨。根据我们的分析,这些氨基酸的分解代谢速率由参与氨基酸分解代谢途径的酶的速率和氨的反馈抑制决定。生长动力学数据表明,在初始生长阶段,其溶剂生成和酸生成阶段的代谢转变与某些氨基酸的分解代谢有关。因此,本研究的结果为利用其对数期培养物作为明胶加工工业生产生物燃料成分的起始物提供了新的见解。

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