Isolation and identification of cellulose-degrading endophytic bacteria from Tomoceridae (springtails)

D. Wei, Xiulian Miao, Yue Tian, Jing Du, Meng Wang
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Abstract

Springtails are considered as an important candidate bioindicator to assess soil quality spiked with trace metals, but little is known of their endophytic bacteria. In this study, a kind of Tomoceridae springtail was used, and a total of 45 effective sequences were obtained through the process of endophytic bacteria isolation, culture, polymerase chain reaction (PCR) amplification and sequencing. After NCBI-BLAST, the results showed that there were 20 bacterial colonies belonging to the genus Staphylococcus, 12 belonging to the genus Bacillus, 7 belonging to the genus Paenibacillus, 1 belonging to the genus Exiguobacterium and 5 belonging to Acinetobacter lwoffii. Furthermore, five bacterial strains from these five genera (named TomoRZH14, TomoRZH26, TomoRZH30, TomoRZH37, TomoRZH40) were selected for cellulose degradation analysis. The results showed that TomoRZH26 (Bacillus sp.) seemed to have a stronger cellulose degradation ability than those of the other four strains, while the three main components cellulase endo-β-glucanase, exo-β-glucanase and βglucosidase in TomoRZH26 showed significantly higher enzymatic activity than in the other strains. Viscosity analysis also showed that the TomoRZH26 bacterium degraded relatively quickly in cellulase fermentation medium. In general, in this study, we preliminarily revealed several endophytic bacteria of Tomoceridae springtails and found that they had potentially strong cellulose degradation activity, which may be one of the important reasons behind springtail adaptation to this kind of soil ecological environment.
弹尾虫科纤维素降解内生细菌的分离与鉴定
弹跳虫被认为是评估土壤质量的重要候选生物指标,但对其内生细菌知之甚少。本研究以一种春尾绒尾虫为研究对象,通过内生细菌的分离、培养、聚合酶链反应(PCR)扩增和测序等过程,共获得45条有效序列。NCBI-BLAST分析结果显示,葡萄球菌属菌落20个,芽孢杆菌属菌落12个,芽孢杆菌属菌落7个,出革杆菌属菌落1个,伊氏不动杆菌属菌落5个。并从这5个属中选取5株菌株(命名为TomoRZH14、TomoRZH26、TomoRZH30、TomoRZH37、TomoRZH40)进行纤维素降解分析。结果表明,TomoRZH26 (Bacillus sp.)对纤维素的降解能力强于其他4株菌株,其纤维素酶内切-β-葡聚糖酶、外切-β-葡聚糖酶和β葡萄糖苷酶3个主要组分的酶活性均显著高于其他菌株。黏度分析还表明,TomoRZH26菌在纤维素酶发酵培养基中降解速度较快。总的来说,在本研究中,我们初步发现了几种弹尾Tomoceridae的内生细菌,发现它们具有潜在的较强的纤维素降解活性,这可能是弹尾适应这种土壤生态环境的重要原因之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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21
审稿时长
3.8 months
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