揭示新的细菌辅助的Morpholine生物降解途径

IF 0.5 Q4 ENGINEERING, CHEMICAL
Rupak Kumar, S. Kapur, Srinivasa Rao Vulichi
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引用次数: 0

摘要

大多数外源性物质在自然界中是可生物降解的、持久的或难降解的。吗啉是一种典型的外源性生物,最初被认为是难降解的,但后来被证明可以被分枝杆菌和假单胞菌等细菌生物降解。然而,建立吗啉成功生物降解所涉及的代谢途径是具有挑战性的,因为它的极端水溶性水平会影响各种分析程序。此外,到目前为止,还没有合适的分析方法来直接估计吗啉及其可降解产物或中间体的活性。然而,方法,特别是光密度法、气相色谱法和质谱分析法,可以间接估计吗啉生物转化形成的降解产物。在本研究中,通过测量所选菌株降解吗啉的能力,确定了吗啉的降解途径。基于对培养滤液的分析,确定新分离物是蓝塔帕龙盐杆菌属,其利用吗啉代谢降解途径中的二甘醇酸途径在吗啉存在下诱导吗啉生物降解途径的两个分支中的一个,而另一个分支被抑制。无论细菌表现出的吗啉降解途径的分支是什么,氨都是降解的最终产物,分离物可能会对其进行生化利用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unraveling the Novel Bacterial Assisted Biodegradation Pathway of Morpholine
Most xenobiotics are biodegradable, persistent or recalcitrant in nature. Morpholine, a typical xenobiotic, was initially regarded as recalcitrant, however, later proved to be biodegradable by bacterial species like Mycobacterium and Pseudomonas in particular. However, establishing the metabolic pathways involved for the successful biodegradation of morpholine is challenging because of its extreme level of water solubility that affects various analytical procedures. In addition, to date, no suitable analytical methods have been reported to directly estimate the activity of morpholine and its degradable products or intermediates. Nevertheless, methods, especially optical density, gas chromatography and mass spectrophotometric analysis, could indirectly estimate the degradation product(s) of morpholine formed as a result of its biotransformation. In this present study, the degradation pathway of morpholine was  scertained by selected bacterial isolates by measuring their capacity to degrade morpholine. Based on this analysis of culture filtrates, it was determined that the novel isolate is the genus Halobacillus blutaparonensis which utilizes the diglycolic acid route from the metabolic degradation pathway of morpholine to induce one of two branches of the morpholine biodegradation pathway in the presence of morpholine while the other branch is inhibited. Whatever the branches with regard to the degradation pathway of morpholine exhibited by bacteria are, ammonia is the final end product of degradation which might be biochemically utilized by the isolate.
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