Environmental Biotechnology Lab, The University of Hong Kong, Hong Kong, China.
Water Res. 2013 Sep 1;47(13):4207-16. doi: 10.1016/j.watres.2013.04.021. Epub 2013 May 3.
An innovative and cost-effective method, i.e., batch stress incubation with tetracycline in combination with Cloning-Sanger sequencing and Illumina high-throughput sequencing was developed to identify tetracycline resistant bacteria (TRB) in activated sludge (AS) treating saline sewage. This method overcomes the drawbacks of culture-based approach (unrepresentative and biased results) and utilizes both the advantages of Cloning-Sanger sequencing and Illumina high-throughput sequencing, that is, long length read for correct taxonomic assignment at lower ranks and enough sequencing depth for accurate quantification of TRB communities with medium to low abundances, respectively. High precision (relative deviation ≤ 16.1%) was obtained for all taxon ranks with relative abundances over 0.01%. In the AS sample, TRB consisted of 13 genera with Haliea, Microbacterium and Paracoccus as dominate genera and 6 new TRB genera, i.e., Haliea, Rheinheimera, Alishewanella, Idiomarina, Pseudorhodobacter and Algoriphagus. The increase of tetG and tetA abundance might be associated with the significant increase of Pseudomonas (tetG and tetA host) in the AS after tetracycline stress incubation. tetS abundance also showed an obvious increase after 20 mg/L tetracycline treatment. This method provided a new tool to screen other antibiotic resistant bacteria, bacteria resistant to heavy metals or disinfectants in AS samples.
一种创新且经济高效的方法,即四环素分批胁迫孵育与克隆-桑格测序和 Illumina 高通量测序相结合,被开发用于鉴定处理含盐污水的活性污泥 (AS) 中的四环素抗性细菌 (TRB)。该方法克服了基于培养的方法的缺点(代表性和偏见结果),并利用了克隆-桑格测序和 Illumina 高通量测序的优势,即长读长用于正确的分类分配在较低等级和足够的测序深度用于准确量化中低丰度的 TRB 群落,分别。对于相对丰度超过 0.01%的所有分类等级,都获得了高精度(相对偏差≤16.1%)。在 AS 样品中,TRB 由 13 个属组成,其中优势属为 Haliea、Microbacterium 和 Paracoccus,还有 6 个新的 TRB 属,即 Haliea、Rheinheimera、Alishewanella、Idiomarina、Pseudorhodobacter 和 Algoriphagus。在四环素胁迫孵育后,AS 中假单胞菌(tetG 和 tetA 宿主)的显著增加可能与 tetG 和 tetA 丰度的增加有关。在 20mg/L 四环素处理后,tetS 的丰度也明显增加。该方法为筛选 AS 样品中的其他抗生素抗性细菌、耐重金属或消毒剂的细菌提供了一种新工具。