Laboratory of Environmental Microbiology and Ecology (LEnME), Department of Life Science, National Institute of Technology, Rourkela, Odisha, India.
J Appl Microbiol. 2021 Apr;130(4):1217-1231. doi: 10.1111/jam.14867. Epub 2020 Oct 6.
This study aims to establish the role of quorum sensing (QS) system on the regulation of naphthalene ring cleaving gene ndo (encoding naphthalene dioxygenase) in biofilm forming marine bacterium Pseudomonas aeruginosa N6P6 for naphthalene degradation.
Total cell count of P. aeruginosa N6P6 during biofilm mode of growth was slightly higher (7·3 × 10 CFU per ml) than its planktonic mid-exponential phase culture (4·7 × 10 CFU per ml). Naphthalene degradation in 20h by biofilm (48-h old) and planktonic culture was 99·4 ± 0·002% and 77 ± 3·25%, respectively. Pseudomonas aeruginosa N6P6 was able to degrade 64·3 ± 4·7% naphthalene in sterile soil microcosm in 24 h. The bacterium showed the presence of 136 bp ndo gene which was upregulated in a dose-dependent manner in presence of naphthalene. QS inhibitor (QSI) tannic acid downregulated the expression of ndo gene, naphthalene 1, 2-dioxygenase (N12O) enzyme activity and naphthalene degradation (by biofilm culture).
P. aeruginosa N6P6 shows chemotaxis towards naphthalene and adapts well in terrestrial environment for naphthalene degradation.
This study provides the information that the QS plays crucial role in biofilm formation in P. aeruginosa N6P6 and QS regulatory genes subsequently control the ndo gene for enzymatic degradation of naphthalene.
本研究旨在确定群体感应(QS)系统在调控海洋假单胞菌 N6P6 中萘环裂解基因 ndo(编码萘二氧酶)以降解萘中的作用。
与浮游中对数中期培养物(4.7×10 个 CFU/ml)相比,生物膜生长模式下的 N6P6 总细胞计数略高(7.3×10 个 CFU/ml)。生物膜(48 小时龄)和浮游培养物在 20 小时内对萘的降解率分别为 99.4±0.002%和 77±3.25%。在无菌土壤微宇宙中,N6P6 能够在 24 小时内降解 64.3±4.7%的萘。该细菌显示出存在 136bp 的 ndo 基因,该基因在萘存在的情况下呈剂量依赖性上调。群体感应抑制剂(QSI)单宁酸下调 ndo 基因的表达、萘 1,2-二氧酶(N12O)酶活性和萘降解(通过生物膜培养)。
N6P6 假单胞菌对萘具有趋化性,并能很好地适应陆地环境进行萘降解。
本研究提供了信息,即 QS 在 N6P6 假单胞菌生物膜形成中起关键作用,随后 QS 调节基因控制 ndo 基因进行萘的酶降解。