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Studies revealing bioremediation potential of the strain Burkholderia sp. GB-01 for abamectin contaminated soils

机译:研究显示该菌株Burkholderia sp。的生物修复潜力。 GB-01用于阿维菌素污染的土壤

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Burkholderia sp. GB-01 strain was used to study different factors affecting its growth for inoculum production and then evaluated for abamectin degradation in soil for optimization under various conditions. The efficiency of abamectin degradation in soil by strain GB-01 was seen to be dependent on soil pH, temperature, initial abamectin concentration, and inoculum size along with inoculation frequency. Induction studies showed that abamectin depletion was faster when degrading cells were induced by pre-exposure to abamectin. Experiments performed with varying concentrations (2–160 mg Kg−1) of abamectin-spiked soils showed that strain GB-01 could effectively degrade abamectin over the range of 2–40 mg Kg−1. The doses used were higher than the recommended dose for an agricultural application of abamectin, taking in account the over-use or spill situations. A cell density of approximately 108 viable cells g−1 dry weight of soil was found to be suitable for bioremediation over a temperature range of 30–35°C and soil pH 7.5–8.5. This is the first report on bacterial degradation of abamectin in soil by a Burkholderia species, and our results indicated that this bacterium may be useful for efficient removal of abamectin from contaminated soils.
机译:伯克霍尔德氏菌GB-01菌株用于研究影响其生长以生产接种物的各种因素,然后评估土壤中阿维菌素的降解情况,以便在各种条件下进行优化。观察到GB-01菌株在土壤中对阿维菌素的降解效率取决于土壤的pH,温度,初始阿维菌素浓度,接种量以及接种频率。诱导研究表明,通过预先暴露于阿维菌素诱导降解细胞时,阿维菌素的耗竭更快。在不同浓度(2-160 mg Kg -1 )加阿维菌素的土壤上进行的实验表明,菌株GB-01在2-40 mg Kg -1范围内可以有效降解阿维菌素。考虑到过度使用或溢出情况,使用的剂量高于农业用阿维菌素的推荐剂量。发现土壤密度约为10 8 活细胞g -1 干重的土壤适合在30–35°C的温度范围和土壤pH值下进行生物修复。 7.5–8.5。这是关于伯克霍尔德菌对土壤中阿维菌素的细菌降解的首次报道,我们的结果表明,这种细菌可能对有效地从污染土壤中去除阿维菌素有用。

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