Suppr超能文献

在氧气受限条件下,氯苯的微生物降解会导致3-氯儿茶酚的积累。

Microbial degradation of chlorobenzene under oxygen-limited conditions leads to accumulation of 3-chlorocatechol.

作者信息

Vogt Carsten, Simon Dieter, Alfreider Albin, Babel Wolfgang

机构信息

UFZ Centre for Environmental Research Leipzig-Halle, Department of Environmental Microbiology, Permoserstrasse 15, D-04318 Leipzig, Germany.

出版信息

Environ Toxicol Chem. 2004 Feb;23(2):265-70. doi: 10.1897/02-446.

Abstract

Five bacterial strains (Acidovorax facilis B517, Cellulomonas turbata B529, Pseudomonas veronii B547, Pseudomonas veronii B549, and Paenibacillus polymyxa B550) isolated on chlorobenzene as the sole source of carbon and energy were screened for the accumulation of the putative metabolic intermediate 3-chlorocatechol during growth on chlorobenzene under oxygen-limited conditions in the presence and absence of nitrate (1 mM). 3-Chlorocatechol accumulated in the growth media of all five strains, but accumulation was significantly less in cultures of A. facilis B517 compared to the other four strains. The presence of nitrate did not influence the biological conversion pattern. However, biologically produced nitrite reacted with 3-chlorocatechol chemically, a reaction that masked the accumulation of 3-chlorocatechol. For P. veronii B549, a clear relationship between the presence of 3-chlorocatechol in the medium and low oxygen concentrations was demonstrated. The assumption is made that accumulation of 3-chlorocatechol is due to the low enzymatic turnover of the 3-chlorocatechol cleaving enzyme, catechol-1,2-dioxygenase, at low oxygen concentrations.

摘要

以氯苯作为唯一碳源和能源分离得到的五株细菌菌株(食酸菌属B517、土栖纤维单胞菌B529、维罗纳假单胞菌B547、维罗纳假单胞菌B549和多粘芽孢杆菌B550),在有无硝酸盐(1 mM)存在的情况下,于限氧条件下在氯苯上生长时,对假定的代谢中间体3-氯儿茶酚的积累情况进行了筛选。所有五株菌株的生长培养基中均积累了3-氯儿茶酚,但与其他四株菌株相比,食酸菌属B517培养物中的积累量显著较少。硝酸盐的存在并不影响生物转化模式。然而,生物产生的亚硝酸盐与3-氯儿茶酚发生化学反应,该反应掩盖了3-氯儿茶酚的积累。对于维罗纳假单胞菌B549,培养基中3-氯儿茶酚的存在与低氧浓度之间存在明确的关系。据推测,3-氯儿茶酚的积累是由于在低氧浓度下3-氯儿茶酚裂解酶(儿茶酚-1,2-双加氧酶)的酶周转速度较低所致。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验