Al-Jeraisy Chair for DNA Research, College of Science, King Saud University, Riyadh, Saudi Arabia.
Lett Appl Microbiol. 2010 Jul;51(1):54-60. doi: 10.1111/j.1472-765X.2010.02854.x. Epub 2010 Apr 20.
Isolation, characterization and assessment of butachlor-degrading potential of bacterial strain JS-1 in soil.
Butachlor-degrading bacteria were isolated using enrichment culture technique. The morphological, biochemical and genetic characteristics based on 16S rDNA sequence homology and phylogenetic analysis confirmed the isolate as Stenotrophomonas acidaminiphila strain JS-1. The strain JS-1 exhibited substantial growth in M9 mineral salt medium supplemented with 3.2 mmol l(-1) butachlor, as a sole source of carbon and energy. The HPLC analysis revealed almost complete disappearance of butachlor within 20 days in soil at a rate constant of 0.17 day(-1) and half-life (t((1/2))) of 4.0 days, following the first-order rate kinetics. The strain JS-1 in stationary phase of culture also produced 21.0 microg ml(-1) of growth hormone indole acetic acid (IAA) in the presence of 500 microg ml(-1) of tryptophan. The IAA production was stimulated at lower concentrations of butachlor, whereas higher concentrations above 0.8 mmol l(-1) were found inhibitory.
The isolate JS-1 characterized as Stenotrophomonas acidaminiphila was capable of utilizing butachlor as sole source of carbon and energy. Besides being an efficient butachlor degrader, it substantially produces IAA.
The bacterial strain JS-1 has a potential for butachlor remediation with a distinctive auxiliary attribute of plant growth stimulation.
从土壤中分离、鉴定并评估能降解丁草胺的细菌菌株 JS-1 的特性。
采用富集培养技术分离出丁草胺降解菌。基于 16S rDNA 序列同源性和系统发育分析的形态学、生化和遗传学特征,证实该分离物为寡养单胞菌属 Stenotrophomonas acidaminiphila 菌株 JS-1。该菌株 JS-1 在补充有 3.2mmol l(-1)丁草胺的 M9 无机盐培养基中表现出显著的生长,可将其作为唯一的碳源和能源。HPLC 分析表明,在土壤中,丁草胺以一级动力学速率迅速消失,在 20 天内的速率常数为 0.17 天(-1),半衰期(t((1/2)))为 4.0 天。在培养的静止期,JS-1 菌株在 500μg ml(-1)色氨酸存在的情况下也能产生 21.0μg ml(-1)的生长激素吲哚乙酸(IAA)。在较低浓度的丁草胺存在下,IAA 的产生会受到刺激,而浓度高于 0.8mmol l(-1)时则会受到抑制。
该分离物 JS-1 被鉴定为 Stenotrophomonas acidaminiphila,能够将丁草胺作为唯一的碳源和能源加以利用。它不仅是一种高效的丁草胺降解菌,还能大量产生 IAA。
JS-1 细菌菌株具有修复丁草胺的潜力,并且具有独特的辅助植物生长刺激特性。