Department of Plant Science, Faculty of Applied Sciences, MJP Rohilkhand University, Bareilly, 243006, India.
Environ Sci Pollut Res Int. 2014 Feb;21(3):2298-2304. doi: 10.1007/s11356-013-2167-y. Epub 2013 Sep 21.
Burkholderia sp. RKJ 800 utilized 4-chloro-2-aminophenol (4C2AP) as the sole carbon and energy source and degraded it with release of chloride and ammonium ions. The metabolic pathway of degradation of 4C2AP was studied and a novel intermediate, 4-chlorocatechol was identified as a major degradation product of 4C2AP using high-performance liquid chromatography and gas chromatography-mass spectrometry. Enzyme activities for 4C2AP-deaminase and 4-chlorocatechol-1,2-dioxygenase were detected in the crude extracts of the 4C2AP-induced cells of strain RKJ 800. The activity of the 4C2AP-deaminase confirmed the formation of 4-chlorocatechol from 4C2AP and the 4-chlorocatechol-1,2-dioxygenase activity suggested the cleavage of 4-chlorocatechol into 3-chloro-cis,cis-muconate. On the basis of the identified metabolites, we have proposed a novel degradation pathway of 4C2AP for Burkholderia sp. RKJ 800. Furthermore, the potential of Burkholderia sp. RKJ 800 to degrade 4C2AP in soil was also investigated using microcosm studies under laboratory conditions. The results of microcosm studies conclude that Burkholderia sp. RKJ 800 was able to degrade 4C2AP in soil and may be used to remediate 4C2AP-contaminated site. This is the first report of (1) the formation of 4-chlorocatechol and 3-chloro-cis,cis-muconate in the degradation pathway of 4C2AP and (2) bioremediation of 4C2AP by any bacterium.
伯克霍尔德氏菌利用 4-氯-2-氨基酚(4C2AP)作为唯一的碳源和能源,并通过释放氯离子和铵离子来降解它。研究了 4C2AP 降解的代谢途径,使用高效液相色谱法和气相色谱-质谱联用技术鉴定了一种新型中间产物 4-氯邻苯二酚,它是 4C2AP 的主要降解产物之一。在 RKJ 800 菌株的 4C2AP 诱导细胞的粗提物中检测到 4C2AP 脱氨酶和 4-氯邻苯二酚-1,2-双加氧酶的酶活性。4C2AP 脱氨酶的活性证实了 4C2AP 形成 4-氯邻苯二酚,而 4-氯邻苯二酚-1,2-双加氧酶的活性表明 4-氯邻苯二酚裂解为 3-氯顺式,顺式-粘康酸。根据鉴定的代谢产物,我们提出了一种新的 Burkholderia sp. RKJ 800 降解 4C2AP 的途径。此外,还通过实验室条件下的微宇宙研究,研究了 Burkholderia sp. RKJ 800 在土壤中降解 4C2AP 的潜力。微宇宙研究的结果表明,Burkholderia sp. RKJ 800 能够在土壤中降解 4C2AP,并且可以用于修复 4C2AP 污染的场地。这是首次报道(1)4C2AP 降解途径中形成 4-氯邻苯二酚和 3-氯顺式,顺式-粘康酸,以及(2)任何细菌生物修复 4C2AP。