首页> 外文期刊>Applied and Environmental Microbiology >Degradation of 3-Chlorobenzoate under Low-Oxygen Conditions in Pure and Mixed Cultures of the Anoxygenic Photoheterotroph Rhodopseudomonas palustris DCP3 and an Aerobic Alcaligenes Species
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Degradation of 3-Chlorobenzoate under Low-Oxygen Conditions in Pure and Mixed Cultures of the Anoxygenic Photoheterotroph Rhodopseudomonas palustris DCP3 and an Aerobic Alcaligenes Species

机译:低氧条件下厌氧光异养红假单胞菌DCP3和好氧产碱菌物种纯净和混合培养物中3-氯苯甲酸的降解

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The presence or absence of molecular oxygen has been shown to play a crucial role in the degradability of haloaromatic compounds. In the present study, it was shown that anaerobic phototrophic 3-chlorobenzoate (3CBA) metabolism by Rhodopseudomonas palustris DCP3 is oxygen tolerant up to a concentration of 3 μM O2. Simultaneous oxidation of an additional carbon source permitted light-dependent anaerobic 3CBA degradation at oxygen input levels which, in the absence of such an additional compound, would result in inhibition of light-dependent dehalogenation. Experiments under the same experimental conditions with strain DCP3 in coculture with an aerobic 3CBA-utilizing heterotroph, Alcaligenes sp. strain L6, revealed that light-dependent dehalogenation of 3CBA did not occur. Under both oxygen limitation (O2 2), all the 3CBA was metabolized by the aerobic heterotroph. These data suggest that biodegradation of (halo)aromatics by photoheterotrophic bacteria such as R. palustris DCP3 may be restricted to anoxic photic environments.
机译:分子氧的存在或不存在已证明在卤代芳族化合物的降解性中起关键作用。在本研究中,研究表明,大红假单胞菌DCP3的厌氧光养性3-氯苯甲酸(3CBA)代谢对氧的耐受性高达3μMO2。附加碳源的同时氧化允许在氧气输入水平下光依赖性厌氧3CBA降解,如果不存在这种附加化合物,则会导致光依赖性脱卤的抑制。在相同的实验条件下,用DCP3菌株与利用需氧3CBA的异养菌Alcaligenes sp。共培养。 L6菌株显示3CBA的光依赖性脱卤未发生。在两种氧气限制下(O2 2),所有3CBA都被有氧异养菌代谢。这些数据表明,光异养细菌,如帕氏疏螺旋体DCP3对(卤)芳烃的生物降解可能仅限于缺氧的光环境。

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