Wang Yujing, Xiao Ming, Geng Xiaolu, Liu Jiaying, Chen Jun
College of Life and Environment Sciences, Shanghai Normal University, Shanghai, 200234, People's Republic of China.
Appl Microbiol Biotechnol. 2007 Dec;77(3):733-9. doi: 10.1007/s00253-007-1187-2. Epub 2007 Oct 16.
Phenol and other monocyclic aromatic compounds (MACs) are highly water-soluble and volatile pollutants that plants are unable to completely degrade. Endophytic bacteria with MAC-degrading ability will facilitate phytoremediation, beneficial to plant survival in contaminated soil. Endophytic bacteria, strains FX1-FX3, and rhizosphere bacteria, strains FX0, FX4, and FX5, were isolated from the root tissue of a corn plant (Zea mays) and the corn rhizosphere near a chemical plant, respectively. The strains FX1-FX5 were able to grow on phenol and reduce phenol concentration, but the strain FX0 was unable to. The strains FX1, FX3, and FX4 were classified as Pseudomonas fluorescens and FX0, FX2, and FX5 as Burkholderia cepacia. The plasmids isolated from the strains FX1-FX5 were found to possess similar traits and to be loaded with a gene encoding the catechol 2, 3-dioxygenase (C23O), a key enzyme in the phenol degradation pathway. Alignment and phylogenetic analysis inferred that in situ horizontal transfer of the C23O gene might have occurred. The horizontal transfer of the C23O gene between endophytic and rhizosphere bacteria was proved by using conjugal matings experiment, in which the transconjugants were found to acquire the plasmid with the C23O gene, able to grow on phenol and degrade phenol.
苯酚和其他单环芳香族化合物(MACs)是高度水溶性和挥发性的污染物,植物无法将其完全降解。具有MAC降解能力的内生细菌将促进植物修复,有利于植物在污染土壤中存活。内生细菌菌株FX1 - FX3和根际细菌菌株FX0、FX4和FX5分别从化工厂附近的玉米植株(玉米)根组织和玉米根际中分离得到。菌株FX1 - FX5能够在苯酚上生长并降低苯酚浓度,但菌株FX0不能。菌株FX1、FX3和FX4被归类为荧光假单胞菌,FX0、FX2和FX5被归类为洋葱伯克霍尔德菌。从菌株FX1 - FX5中分离出的质粒具有相似的特性,并携带一个编码儿茶酚2,3 - 双加氧酶(C23O)的基因,该酶是苯酚降解途径中的关键酶。比对和系统发育分析推断C23O基因可能发生了原位水平转移。通过接合交配实验证明了C23O基因在内生细菌和根际细菌之间的水平转移,在该实验中发现接合子获得了带有C23O基因的质粒,能够在苯酚上生长并降解苯酚。