School of Life Science and Technology, State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing, 210009, Jiangsu Province, PR China.
School of Life Science and Technology, State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing, 210009, Jiangsu Province, PR China.
Environ Pollut. 2024 Oct 15;359:124554. doi: 10.1016/j.envpol.2024.124554. Epub 2024 Jul 14.
The proceeding study aimed to isolate glyphosate-degrading bacteria from soil and determine optimal degradation conditions through single-factor experiments and response surface methodology. The detoxifying efficacy of the isolate on glyphosate was assessed using earthworm model. The results indicate that Pseudomonas putida HE exhibited the highest glyphosate degradation rate. Optimal conditions for glyphosate degradation were observed at an inoculation percentage of approximately 5%, a pH of 7, and a temperature of 30 °C. Glyphosate induced notable neurotoxicity and reproductive toxicity in earthworms, evidenced by reduced activity of the neurotoxicity-associated enzyme AChE. Additionally, an increase in the activities of catalase, superoxide dismutase, and lactate dehydrogenase was observed. H&E staining revealed structural disruptions in the earthworm clitellum, with notable atrophy in the structure of spermathecae. Furthermore, glyphosate activation of earthworm immune systems led to increased expression of immune-related genes, specifically coelomic cytolytic factor and lysozyme. Notably, the introduction of strain HE mitigated the glyphosate toxicity to the earthworms mentioned above. P. putida HE was able to increase soil enzyme activities that were reduced due to glyphosate. The isolate P. putida HE, emerged as an effective and cost-efficient remedy for glyphosate degradation and toxicity reduction in natural settings, showcasing potential applications in real ecological settings.
本研究旨在从土壤中分离出能够降解草甘膦的细菌,并通过单因素实验和响应面法确定最佳降解条件。采用蚯蚓模型评估分离株对草甘膦的解毒效果。结果表明,恶臭假单胞菌 HE 表现出最高的草甘膦降解率。草甘膦降解的最佳条件为接种率约为 5%、pH 值为 7 和温度为 30°C。草甘膦对蚯蚓表现出明显的神经毒性和生殖毒性,表现为与神经毒性相关的酶 AChE 活性降低。此外,还观察到过氧化氢酶、超氧化物歧化酶和乳酸脱氢酶活性的增加。H&E 染色显示蚯蚓生殖带结构破坏,受精囊结构明显萎缩。此外,草甘膦激活了蚯蚓的免疫系统,导致免疫相关基因(细胞溶解因子和溶菌酶)的表达增加。值得注意的是,引入 HE 菌株减轻了上述草甘膦对蚯蚓的毒性。恶臭假单胞菌 HE 能够增加因草甘膦而降低的土壤酶活性。恶臭假单胞菌 HE 作为一种有效且经济高效的天然环境中草甘膦降解和毒性降低的补救措施,展示了在实际生态环境中的潜在应用。