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利用红球菌的类囊肿休眠细胞降解盐酸屈他维林

Drotaverine hydrochloride degradation using cyst-like dormant cells of Rhodococcus ruber.

作者信息

Ivshina Irena B, Mukhutdinova Anna N, Tyumina Helena A, Vikhareva Helena V, Suzina Nataliya E, El'-Registan Galina I, Mulyukin Andrey L

机构信息

Institute of Ecology and Genetics of Microorganisms, Russian Academy of Sciences, 13 Golev Street, 614081, Perm, Russia,

出版信息

Curr Microbiol. 2015 Mar;70(3):307-14. doi: 10.1007/s00284-014-0718-1. Epub 2014 Nov 2.

Abstract

This work has a focus on adaptive capabilities of the actinobacterium Rhodococcus ruber IEGM 326 to cope with drotaverine hydrochloride (DH), a known pharmaceutical pollutant. Cultivation of R. ruber in a nitrogen-limited medium with incubation at the ambient temperature resulted in the formation of cyst-like dormant cells (CLDCs). They maintained viability for 2-7 months, possessed the undetectable respiratory activity and elevated resistance to heating, and had a specific morphology. CLDCs are regarded to ensure long-term survival in various habitats and may be used as storage formulations. R. ruber IEGM 326 was tolerant to DH (MIC, 200 mg/l) and displayed different abilities to degrade this compound, depending on inoculum, temperature, and the presence of glucose as co-oxidized substrate. Thus, the loss of DH (20 mg/l) over 48 h at the optimal temperature (27 ± 2 °C) was 5-8 % in the absence of glucose after inoculating with vegetative cells. The addition of glucose (5 g/l) increased DH degradation up to 46 %. Noteworthy, CLDCs as inoculum were advantageous over vegetative cells to degrade DH at the non-optimal temperature (35 ± 2 °C) at reduced bulk respiratory activity. The obtained results are promising to improve the biodegrading capabilities of other Rhodococcus strains.

摘要

这项工作聚焦于红球菌属红球菌IEGM 326应对盐酸屈他维林(DH)的适应能力,DH是一种已知的药物污染物。在氮限制培养基中于环境温度下培养红球菌,导致形成了囊状休眠细胞(CLDCs)。它们可保持活力2至7个月,具有无法检测到的呼吸活性且对加热的抗性增强,并且具有特定形态。CLDCs被认为可确保在各种生境中长期存活,并且可用作储存制剂。红球菌IEGM 326对DH具有耐受性(最低抑菌浓度,200毫克/升),并且根据接种物、温度以及作为共氧化底物的葡萄糖的存在情况,表现出不同的降解该化合物的能力。因此,在最佳温度(27±2℃)下,接种营养细胞后,在无葡萄糖的情况下,48小时内20毫克/升的DH损失率为5 - 8%。添加葡萄糖(5克/升)可使DH降解率提高至46%。值得注意的是,在非最佳温度(35±2℃)下,以CLDCs作为接种物相比于营养细胞,在整体呼吸活性降低的情况下,对DH的降解更具优势。所获得的结果有望提高其他红球菌菌株的生物降解能力。

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