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iChip 提高了从河口沉积物中培养耐 TBT 和 TBT 降解菌的成功率。

iChip increases the success of cultivation of TBT-resistant and TBT-degrading bacteria from estuarine sediment.

机构信息

Liverpool John Moores University, Byrom Street, Liverpool, L3 3AF, UK.

出版信息

World J Microbiol Biotechnol. 2022 Aug 11;38(10):180. doi: 10.1007/s11274-022-03297-2.

Abstract

Standard methods of microbial cultivation only enable the isolation of a fraction of the total environmental bacteria. Numerous techniques have been developed to increase the success of isolation and cultivation in the laboratory, some of which derive from diffusion chambers. In a diffusion chamber, environmental bacteria in agar medium are put back in the environment to grow as close to their natural conditions as possible, only separated from the environment by semi-permeable membranes. In this study, the iChip, a device that possesses hundreds of mini diffusion chambers, was used to isolate tributyltin (TBT) resistant and degrading bacteria. IChip was shown to be efficient at increasing the number of cultivable bacteria compared to standard methods. TBT-resistant strains belonging to Oceanisphaera sp., Pseudomonas sp., Bacillus sp. and Shewanella sp. were identified from Liverpool Dock sediment. Among the isolates in the present study, only members of Pseudomonas sp. were able to use TBT as a sole carbon source. It is the first time that members of the genus Oceanisphaera have been shown to be TBT-resistant. Although iChip has been used in the search for molecules of biomedical interest here we demonstrate its promising application in bioremediation.

摘要

标准的微生物培养方法只能分离出环境细菌的一部分。为了提高实验室分离和培养的成功率,已经开发了许多技术,其中一些技术源自扩散室。在扩散室中,将琼脂培养基中的环境细菌放回环境中,尽可能接近其自然条件生长,仅用半透膜将其与环境隔开。在这项研究中,使用 iChip(一种拥有数百个微型扩散室的设备)来分离三丁基锡(TBT)抗性和降解细菌。与标准方法相比,iChip 被证明能够有效地增加可培养细菌的数量。从利物浦码头沉积物中鉴定出属于 Oceanisphaera sp.、Pseudomonas sp.、Bacillus sp. 和 Shewanella sp. 的 TBT 抗性菌株。在所研究的分离物中,只有 Pseudomonas sp. 的成员能够将 TBT 用作唯一的碳源。这是首次证明 Oceanisphaera 属的成员具有 TBT 抗性。虽然 iChip 已用于寻找生物医学感兴趣的分子,但在这里我们证明了它在生物修复中的应用具有广阔的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c96b/9365728/da45b13f32aa/11274_2022_3297_Fig1_HTML.jpg

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