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Biodegradation of nicotine by a newly isolated Agrobacterium sp. strain S33

机译:新分离的农杆菌属菌对尼古丁的生物降解。菌株S33

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To isolate and characterize bacteria capable of degrading nicotine from the rhizospheric soil of a tobacco plant and to use them to degrade the nicotine in tobacco solid waste. A bacterium, strain S33, was newly isolated from the rhizospheric soil of a tobacco plant, and identified as Agrobacterium sp. based on morphology, physiological tests, Biolog MicroLog3 4p"20 system and 16S rRNA gene sequence. Using nicotine as the sole source of carbon and nitrogen in the medium, it grew optimally with 1p"0 g lp# of nicotine at 30pC and pH 7p"0, and nicotine was completely degraded within 6 h. The resting cells prepared from the glucose-ammonium medium or LB medium could not degrade nicotine within 10 h, while those prepared from the nicotine medium could completely degrade 3 g lp# of nicotine in 1p"5 h at a maximal rate of 1p"23 g nicotine hp# gp# dry cell. Using the medium containing nicotine, glucose and ammonium simultaneously to cultivate strain S33, the resting cells could degrade 98p"87% of nicotine in tobacco solid waste with the concentration as 30 mg nicotine gp# dry weight tobacco solid waste within 7 h at a maximal rate of 0p"46 g nicotine hp# gp# dry cell. This is the first report that Agrobacterium sp. has the ability to degrade nicotine. Agrobacterium sp. S33 could use nicotine as the sole source of carbon and nitrogen. The use of resting cells of the strain S33 prepared from the nicotine-glucose-ammonium medium was an effective method to degrade nicotine and detoxify tobacco solid waste. Nicotine in tobacco wastes is both toxic and harmful to human health and the environment. This study showed that Agrobacterium sp. S33 may be suitable for the disposal of tobacco wastes and reducing the nicotine content in tobacco leaves.
机译:从细菌植物的根际土壤中分离和表征能够降解尼古丁的细菌,并使用它们降解烟草固体废物中的尼古丁。从烟草植物的根际土壤中新分离出一种细菌,菌株S33,并鉴定为农杆菌。根据形态学,生理学测试,Biolog MicroLog3 4p“ 20系统和16S rRNA基因序列。使用尼古丁作为培养基中碳和氮的唯一来源,在1p” 0 g lp#尼古丁在30pC和pH 7p下最佳生长“ 0,尼古丁在6小时内完全降解。用葡萄糖-铵培养基或LB培养基制备的静止细胞在10 h内不能降解尼古丁,而用尼古丁培养基制备的静止细胞可以在3 h lp#尼古丁中完全降解。 1p“ 5 h,最大速率为1p” 23 g尼古丁hp#gp#干细胞。同时使用包含尼古丁,葡萄糖和铵盐的培养基培养菌株S33,静息细胞可降解烟草固体中98p“ 87%的尼古丁浓度为30 mg尼古丁gp#干重烟草固体废物的废物,在7小时内以最大速率为0p“ 46 g尼古丁hp#gp#干细胞的速度进行。这是第一篇有关农杆菌具有降解尼古丁能力的报告。农杆菌S33可使用尼古丁作为碳和氮的唯一来源。使用由尼古丁-葡萄糖-铵介质制备的菌株S33的静止细胞是降解尼古丁和使烟草固体废物解毒的有效方法。烟草废料中的尼古丁既有毒,又对人体健康和环境有害。这项研究表明,农杆菌属。 S33可能适合处理烟草废物并减少烟叶中尼古丁的含量。

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