Department of Resources and Environment, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai, 200240, China.
Curr Microbiol. 2020 Aug;77(8):1848-1857. doi: 10.1007/s00284-020-01942-3. Epub 2020 Mar 13.
Kosakonia radicincitans GXGL-4A, a free-living nitrogen-fixing (NF) bacterial strain isolated from maize (Zea mays L.) roots was found to have ability to degrade aromatic hydrocarbons. In this study, we describe the main morphological characteristics of bacterium, aromatic hydrocarbon-degrading capability, and the complete genome of K. radicincitans GXGL-4A. The genome is consisted of only one 5,687,681 bp linear chromosome with a G + C content of 53.96%. The strain has two genetically distinct nitrogenase systems, one based on molybdenum (Mo) similar to nitrogenase isolated from a wide range of nitrogen-fixing organisms, and the other contains iron (Fe). The differences in transcriptional level of several important nitrogen fixation (nif) genes between LB (nitrogen-rich, NR) and A15 nitrogen-free (nitrogen-limited, NL) culture conditions were detected using Real-time Quantitative Reverse Transcription PCR (qRT-PCR). The bacterial cells of GXGL-4A can grow well in LB liquid medium containing 1% toluene, ethylbenzene or xylene, suggesting a good resistance to the tested aromatic hydrocarbons. The results of GC-MS analysis showed that K. radicincitans GXGL-4A has a good capability to degrade toluene, ethylbenzene, and xylene (TEX). Completion of the genome sequencing will no doubt contribute to the deep exploration and comprehensive utilization of this NF bacterium in sustainable agriculture and bioremediation of aromatic pollutants.
从玉米(Zea mays L.)根部分离出的自由生活固氮(NF)细菌菌株 Kosakonia radicincitans GXGL-4A 被发现具有降解芳烃的能力。在本研究中,我们描述了细菌的主要形态特征、芳烃降解能力以及 K. radicincitans GXGL-4A 的完整基因组。基因组仅由一条 5,687,681 bp 的线性染色体组成,G+C 含量为 53.96%。该菌株具有两种不同的遗传氮酶系统,一种基于钼(Mo),类似于从广泛的固氮生物中分离出的氮酶,另一种含有铁(Fe)。使用实时定量反转录 PCR(qRT-PCR)检测了 LB(富氮,NR)和 A15 无氮(氮限制,NL)培养条件下几个重要氮固定(nif)基因的转录水平差异。结果表明,GXGL-4A 的细菌细胞可以在含有 1%甲苯、乙苯或二甲苯的 LB 液体培养基中良好生长,表明对测试芳烃具有良好的抗性。GC-MS 分析结果表明,K. radicincitans GXGL-4A 具有良好的降解甲苯、乙苯和二甲苯(TEX)的能力。基因组测序的完成无疑将有助于深入探索和综合利用这种 NF 细菌在可持续农业和芳烃污染物的生物修复中的作用。