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Isolation and characterization of Rhodopseudomonas sp. S_(9-1) capable of degrading pyrazosulfuron-ethyl

机译:rhodopseudomonass sp的分离与表征。 S_(9-1)能够降解吡唑硫磺酸乙基

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A bacterial strain S_(9-1) capable of degrading sulfonylurea herbicide pyrazosulfuron-ethyl (PSE) was isolated from contaminated soil through the enrichment incubation method. Based on morphology, colony and cultural properties, physiological and biochemical characteristics, living-cell absorption spectra, internal photosynthetic membrane, and phylogenetics of its 16S rRNA gene sequence, S_(9-1) was preliminarily identified as belonging to the genus Rhodopseudomonas, a group of photosynthetic bacteria (PSB). The effects of PSE concentration, pH, and temperature on biodegradation were examined. The degradation rate was found to decrease with increasing PSE concentration. Optimal growth pH and temperature were found to be 7.0 and 30°C, respectively. The strain was able to degrade 47.51% of PSE at a concentration of 100 mg ml~(-1) after 7 days of incubation at 30°C and could tolerate 800 mg ml~(-1) PSE. S_(9-1) was also able to completely co-metabolically transform 100 mg ml~(-1) PSE at 30°C, pH 7.0, and 7500 lux in 15 days. As the concentration of PSE increased, the degradation process took longer to complete. The fragment encoding acetolactate synthase (ALS) gene from S_(9-1) was cloned and sequenced. Comparison of deduced amino acid sequences was implemented, and the conserved sites were analyzed. To our knowledge, this is the first report of PSB in PSE biodegradation. These results highlight the potential of this bacterium as a detoxifying agent for use with PSE-contaminated soil and wastewater.
机译:的细菌菌株S_(9-1)能够降解磺酰脲类除草剂吡嘧磺隆(PSE)的从被污染的土壤通过富集培养法分离。基于形态,菌落和文化财产,生理生化特征,生活细胞吸收光谱,内部光合膜,其16S rRNA基因序列,S_(9-1)初步鉴定为属于埃希红假单胞菌,一个系统发育的组光合细菌(PSB)的。研究了PSE浓度,pH和温度对生物降解的影响。发现降解率随着PSE浓度的增加而降低。发现最佳生长pH和温度分别为7.0和30℃。在30℃温育7天后,该菌株能够以100mg ml〜(-1)的浓度降解47.51%的PSE,并且可以耐受800mg ml〜(-1)pse。 S_(9-1)也能够完全在30℃,pH为7.0,和7500勒克斯在15天内共代谢转化100毫克毫升〜(-1)PSE。由于PSE浓度的增加,降解过程需要较长的时间才能完成。该片段编码的乙酰乳酸合酶(ALS)从S_基因(9-1)进行了克隆和测序。推导的氨基酸序列的比较被执行,和保守位点进行了分析。据我们所知,这是PSB在PSE生物降解的第一份报告。这些结果凸显这种细菌的潜力与PSE污染土壤和污水使用解毒剂。

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