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Anaerobic Degradation of Uric Acid by Gut Bacteria of Termites

机译:白蚁肠道细菌对尿酸的厌氧降解

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A study was done of anaerobic degradation of uric acid (UA) by representative strains of uricolytic bacteria isolated from guts of Reticulitermes flavipes termites. Streptococcus strain UAD-1 degraded UA incompletely, secreting a fluorescent compound into the medium, unless formate (or a formicogenic compound) was present as a cosubstrate. Formate functioned as a reductant, and its oxidation to CO2 by formate dehydrogenase provided 2H+ + 2e? needed to drive uricolysis to completion. Uricolysis by Streptococcus UAD-1 thus corresponded to the following equation: 1UA + 1formate → 4CO2 + 1acetate + 4NH3. Urea did not appear to be an intermediate in CO2 and NH3 formation during uricolysis by strain UAD-1. Formate dehydrogenase and uricolytic activities of strain UAD-1 were inducible by growth of cells on UA. Bacteroides termitidis strain UAD-50 degraded UA as follows: 1UA → 3.5 CO2 + 0.75acetate + 4NH3. Exogenous formate was neither required for nor stimulatory to uricolysis by strain UAD-50. Studies of UA catabolism by Citrobacter strains were limited, because only small amounts of UA were metabolized by cells in liquid medium. Uricolytic activity of such bacteria in situ could be important to the carbon, nitrogen, and energy economy of R. flavipes.
机译:通过从黄斑白蚁的肠道中分离出的代表性溶尿细菌菌株对尿酸(UA)的厌氧降解进行了研究。链球菌菌株UAD-1不能完全降解UA,将荧光化合物分泌到培养基中,除非存在甲酸盐(或杀真菌化合物)作为共底物。甲酸酯起还原剂的作用,甲酸酯脱氢酶将其氧化成二氧化碳,可提供2H + + 2e?需要完成尿液溶解。因此,链球菌UAD-1进行的尿液溶解对应于以下方程式:1UA + 1甲酸盐→4CO2 + 1乙酸盐+ 4NH3。在菌株UAD-1的尿液溶解过程中,尿素似乎不是CO2和NH3形成的中间体。 UAD-1菌株的甲酰脱氢酶和尿液溶解活性可以通过在UA上生长来诱导。白蚁杆菌菌株UAD-50降解UA的方法如下:1UA→3.5 CO2 + 0.75乙酸盐+ 4NH3。 UAD-50菌株既不需要也不刺激外源甲酸盐,也不会刺激它。柠檬酸杆菌菌株对UA分解代谢的研究是有限的,因为液体培养基中的细胞只能代谢少量的UA。此类细菌的原位尿液溶解活性可能对黄细菌的碳,氮和能量经济性很重要。

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