首页> 外文期刊>Biotechnology Letters >Lag period of ~(14)CO_2 evolution from dioctyl sulpho[2,3-~(14)C]succinate in relation to adaptation of bacterium,Comamonas terrigena,to dialkyl esters of sulphosuccinate
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Lag period of ~(14)CO_2 evolution from dioctyl sulpho[2,3-~(14)C]succinate in relation to adaptation of bacterium,Comamonas terrigena,to dialkyl esters of sulphosuccinate

机译:磺基琥珀酸二辛基[2,3-〜(14)C]琥珀酸〜(14)CO_2释放的滞后期与细菌Comamonas terrigena对磺基琥珀酸二烷基酯的适应性有关

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摘要

Comamonas terrigena,strain N3H,which was isolated from soil polluted with crude oil products,degraded dioctyl sulphosuccinate,a synthetic commercial surfactant.The primary degradation of this compound,the cleavage of ester bonds between octyl groups and sulphosuccinate,lasted significantly shorter time than the subsequent breakdown of the sulphosuccinate moiety of dioctyl sulpho[2,3-~(14)C]succinate.~(14)CO_2 evolution had a significant shorter lag period with cells in Tris/phosphate medium,without inorganic sulphate and adapted to surfactant,than unadapted cells.The acceleration of the primary degradation by adapted cells also suggest that some enzymes involved in surfactant degradation are inducible.The bacterium may be useful for bioremediation.
机译:从原油产品污染的土壤中分离出的Comomonas terrigena菌株N3H降解了合成的商业表面活性剂磺基琥珀酸二辛酯。该化合物的初次降解,辛基基团和磺基琥珀酸酯之间的酯键裂解持续的时间明显短于辛二酸。随后,二辛基磺酸[2,3-〜(14)C]琥珀酸酯的磺基琥珀酸酯部分分解。〜(14)CO_2的释放在Tris /磷酸盐培养基中没有无机硫酸盐且适应于表面活性剂,细胞的滞后时间明显缩短。适应性细胞加速初次降解也表明某些与表面活性剂降解有关的酶是可诱导的。该细菌可用于生物修复。

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