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从埃及土壤中分离到一种新型吡虫啉降解分枝杆菌 MK6 菌株及其特性研究。

Isolation and Characterization of a Novel Imidacloprid-Degrading Mycobacterium sp. Strain MK6 from an Egyptian Soil.

机构信息

†Department of Soil and Water, Faculty of Agriculture, Alexandria University, Alexandria 21545, Egypt.

出版信息

J Agric Food Chem. 2015 May 20;63(19):4721-7. doi: 10.1021/acs.jafc.5b00754. Epub 2015 May 12.

Abstract

Thus far, only a small number and types of bacteria with limited ability in degrading imidacloprid have been reported. Also, genes regulating imidacloprid (IMDA) degradation have yet to be discovered. To study this in more detail, an enrichment technique was used to isolate consortia and pure cultures of IMDA-degrading bacteria. Through this approach, we successfully isolated a novel bacterium capable of completely degrading IMDA as a sole nitrogen source. The bacterium was subsequently identified as Mycobacterium sp. strain MK6 by sequence analysis of its 16S rRNA gene (Genbank accession number KR052814 ). BLASTn searches indicated that 16S rRNA gene from Mycobacterium sp. strain MK6 was 99% identical to several Mycobacterium spp. Mycobacterium sp. strain MK6 transformed 99.7% added IMDA (150 μg mL(-1)) in <2 weeks (t1/2 = 1.6 days) to 6-chloronicotinic acid (6-CNA) as its major metabolite. Although the isolated strain and mixed bacterial consortia were able to degrade IMDA, they failed to grow further on 6-CNA, indicating a lack of IMDA mineralization to carbon dioxide. Small amounts of the desnitro-olefin and desnitro-degradates of IMDA were observed during the incubation but did not accumulate in culture medium.

摘要

迄今为止,仅报道了少数几种具有有限降解吡虫啉能力的细菌。此外,调节吡虫啉(IMDA)降解的基因尚未被发现。为了更详细地研究这一点,采用了一种富集技术来分离 IMDA 降解细菌的共生体和纯培养物。通过这种方法,我们成功地分离到了一种新型的能够完全降解 IMDA 作为唯一氮源的细菌。该细菌随后通过 16S rRNA 基因(Genbank 登录号 KR052814)的序列分析被鉴定为分枝杆菌 MK6 菌株。BLASTn 搜索表明,分枝杆菌 MK6 菌株的 16S rRNA 基因与几种分枝杆菌属的 16S rRNA 基因高度同源。分枝杆菌 MK6 菌株在不到 2 周(t1/2 = 1.6 天)的时间内将添加的 99.7%的 IMDA(150 μg mL(-1))转化为 6-氯烟酸(6-CNA)作为其主要代谢物。尽管分离出的菌株和混合细菌共生体能够降解 IMDA,但它们不能在 6-CNA 上进一步生长,表明 IMDA 没有矿化为二氧化碳。在孵育过程中观察到 IMDA 的脱硝基烯烃和脱硝基降解物的少量存在,但在培养基中没有积累。

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