College of Plant Protection, Jilin Agricultural University, Changchun 130118, China.
Institute of Plant Protection, Jilin Academy of Agricultural Sciences (Northeast Agricultural Research Center of China), Gongzhuling 136100, China.
J Appl Microbiol. 2024 Sep 2;135(9). doi: 10.1093/jambio/lxae215.
To construct an efficient bacterial complex to degrade nicosulfuron and clarify its degradative characteristics, promote the growth of maize (Zea mays), and provide a theoretical foundation for the efficient remediation of soil contaminated with nicosulfuron.
Biocompatibility was determined by the filter paper sheet method by mixing Serratia marcescens A1 and Bacillus cereus A2 in a 1:1 ratio, yielding A12. The optimum culture conditions for the bacterial composite were obtained based on a three-factor, three-level analysis using response surface methodology, with 29.25 g l-1 for maltodextrin, 10.04 g l-1 for yeast extract, and 19.93 g l-1 for NaCl, which resulted in 92.42% degradation at 4 d. The degradation characteristics of A12 were clarified as follows: temperature 30°C, pH 7, initial concentration of nicosulfuron 20 mg l-1, and 4% inoculum. The ability to promote growth was determined by measuring the ratio of the lysosphere diameter (D) to the colony diameter (d), and the ability of the complex A12 to promote growth was higher than that of the two single strains.
Nicosulfuron degradation in sterilized and unsterilized soils reached 85.4% and 91.2% within 28 d, respectively. The ability of the strains to colonize the soil was determined by extraction of total soil DNA, primer design, and gel electrophoresis. The bioremediation effect of A12 was confirmed by the maximum recovery of fresh weight (124.35%) of nicosulfuron-sensitive crop plants and the significant recovery of soil enzyme activities, as measured by the physiological indices in the sensitive plants.
构建高效细菌复合体系降解烟嘧磺隆,并阐明其降解特性,促进玉米生长,为高效修复烟嘧磺隆污染土壤提供理论依据。
采用滤纸法混合粘质沙雷氏菌 A1 和蜡样芽胞杆菌 A2,以 1:1 的比例混合,得到 A12,确定其生物相容性。采用响应面法三因素三水平分析,得到细菌复合体系的最佳培养条件,为 29.25 g/L 麦芽糊精、10.04 g/L 酵母提取物和 19.93 g/L NaCl,4 d 时降解率达到 92.42%。阐明 A12 的降解特性为:温度 30°C、pH 7、初始烟嘧磺隆浓度 20 mg/L、接种量 4%。通过测量溶菌圈直径(D)与菌落直径(d)的比值来确定促进生长的能力,复合菌 A12 的促生能力高于两种单菌株。
在灭菌和未灭菌土壤中,烟嘧磺隆分别在 28 d 内降解了 85.4%和 91.2%。通过提取土壤总 DNA、设计引物和凝胶电泳来确定菌株在土壤中的定殖能力。通过对烟嘧磺隆敏感作物植物的鲜重(124.35%)的最大恢复和土壤酶活性的显著恢复来验证 A12 的生物修复效果,通过敏感植物的生理指标进行测量。