五氯丁唑降解细菌的分离、特征和降解效率测试:脱氧核糖核酸(Deinococcus arenae

Huang Qiuyu, Juanjuan Chen, Yao Mi, Lingna Zhang, Li Wen, Huang Yi
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引用次数: 0

摘要

研究目的本研究旨在分离并鉴定一种能够降解农药 paclobutrazol 的细菌。该菌株取自富含安克鲁唑的土壤,并利用气相色谱法(GC)对其降解能力进行了评估。方法:从受到过量喷洒 paclobutrazol 的 Ophiopogon japonicus 的土壤溶液中分离出一株菌株。初步分离采用了稀释和平板法,然后通过条纹平板技术进行分离和纯化。BLAST 分析显示,该菌株与 Deinococcus arenae SA1 的相似度最高,去除多余序列后,同源性达到 100%。随后,利用气相色谱法评估了该细菌对氟虫腈的降解效率。结果显示使用外标法进行定量,得出的标准曲线方程为 y=0.0977x-0.412,相关系数(R²)为 0.99842。不同时间段的测试表明,在降解安克鲁唑三天后,Deinococcus arenae 的降解率为 2.49%。五天后,降解率上升到 17.58%,七天后达到 38.66%,九天后达到 42.20%,十一天后达到 43.87%。结论Deinococcus arenae 菌株对百菌清有显著的降解作用。这一发现表明,开发降解 paclobutrazol 的微生物制剂具有潜力,可促进农业的可持续发展。
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Isolation, Characterization, and Degradation Efficiency Testing of a Paclobutrazol-degrading Bacterium: Deinococcus arenae
Objective: This study aimed to isolate and characterize a bacterium capable of degrading the pesticide paclobutrazol. The strain was obtained from soil enriched with paclobutrazol, and its degradation ability was assessed using gas chromatography (GC). Methods: A single strain was isolated from the soil solution of Ophiopogon japonicus, a plant exposed to excessive paclobutrazol spraying. Initial isolation utilized dilution and plating methods, followed by separation and purification through the streak plate technique. BLAST analysis revealed the strain's highest similarity to Deinococcus arenae SA1, with 100% homology after removing excess sequences. Subsequently, the degradation efficiency of this bacterium on paclobutrazol was evaluated by gas chromatography. Results: Quantification using the external standard method yielded a standard curve equation of y=0.0977x-0.412, with a correlation coefficient (R²) of 0.99842. Testing at different time showed that the Deinococcus arenae achieved a degradation rate of 2.49% after three days of degrading paclobutrazol. After five days, the degradation rate increased to 17.58%, reaching 38.66% after seven days, 42.20% after nine days, and 43.87% after eleven days. Conclusion: The Deinococcus arenae strain exhibited a significant degradation effect on paclobutrazol. This finding suggests potential for developing microbial agents to degrade paclobutrazol, promoting sustainable practices in agriculture.
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