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一种新型耐氟细菌分离株的特性及其氟生物修复能力

Characterization of a novel Fluoride resistant bacterial isolate and its capability of Fluoride bioremediation.

作者信息

Thirumala M, Sai Krishna E, Sindhu Priya P, Vishnuvardhan Reddy S

机构信息

Microbial Ecology Laboratory, Department of Biochemistry, UCS, Mahatma Gandhi University, Anneparthy, Yellareddygudem (PO), Nalgonda-508254, Telangana, India.

Microbztech Labs Pvt. Ltd., Cherlapally, Nalgonda-508001, Telangana, India.

出版信息

AIMS Microbiol. 2022 Nov 23;8(4):470-483. doi: 10.3934/microbiol.2022031. eCollection 2022.

Abstract

A Gram positive rod shaped bacterium designated as isolate H1 with Fluoride resistance up to 4 g/L sodium fluoride (NaF) in LB (Luria-Bertani) agar was isolated from a ground water sample of Narketpally area, Nalgonda district, Telangana, India. The colonies of isolate H1 were off white in color. Growth patterns of isolate H1 were observed at two different concentrations, 100 and 250 ppm, of NaF and also without NaF in the medium. In cases where NaF was present in the media, the lag phases of the growth curves were extended when compared to the absence of NaF. Optimum pH required for the organism's growth was 8. Isolate H1 required a temperature of 37 °C with 150 rpm and 2% NaCl for its optimal growth in the medium without NaF. Meanwhile, isolate H1 could thrive in a diverse pH range, i.e., pH 5-10, and at an NaCl concentration of up to 11% in the medium with NaF. Based on morphological, biochemical and molecular characterization, isolate H1 was identified as belonging to the genus . It showed 98.47% 16S rDNA gene sequence similarity with NH71_1. Isolate H1 showed high fluoride removals of 22.5% and 38.2% with 100 and 250 mg/L of NaF in the LB broth when incubated at pH 8 and a temperature of 37 °C with 150 rpm for 3 day. Hence, this organism could be a promising isolate to apply for defluoridation of ground water in fluoride contaminthe ated areas.

摘要

从印度特伦甘纳邦纳尔贡达区纳尔克特帕利地区的一个地下水样本中分离出一株革兰氏阳性杆状细菌,命名为分离株H1,在LB(Luria-Bertani)琼脂中对氟化钠(NaF)的耐受浓度高达4 g/L。分离株H1的菌落呈灰白色。在培养基中分别含有100 ppm和250 ppm两种不同浓度的NaF以及不含NaF的情况下,观察了分离株H1的生长模式。当培养基中存在NaF时,与不含NaF相比,生长曲线的延迟期延长。该菌株生长所需的最适pH为8。在不含NaF的培养基中,分离株H1在温度为37°C、转速为150 rpm且含有2% NaCl的条件下生长最佳。同时,分离株H1能够在pH值为5 - 10的不同范围内生长,在含有NaF的培养基中,NaCl浓度高达11%时也能生长。基于形态学、生化和分子特征,分离株H1被鉴定为属于 属。它与NH71_1的16S rDNA基因序列相似性为98.47%。当在pH为8、温度为37°C、转速为150 rpm的条件下于LB肉汤中培养3天时,分离株H1对100 mg/L和250 mg/L的NaF的氟去除率分别高达22.5%和38.2%。因此,这种微生物有望应用于氟污染地区地下水的除氟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/600e/9834081/48c5e67ba197/microbiol-08-04-031-g001.jpg

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