从橡胶种植区分离的共培养菌株对天然橡胶(聚顺式1-4异戊二烯)的矿化作用

Manasasri Muralidharan, V. Krishnaswamy
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引用次数: 7

摘要

目的:从橡胶园土壤中分离天然橡胶降解细菌共培养物,并对其进行16s r RNA测序鉴定。方法:采用富集培养技术从污染部位分离细菌共培养。采用平板法和无机盐培养基液体法筛选细菌对天然橡胶的矿化能力。通过分光光度法和傅里叶变换红外(FTIR)研究证实了降解作用。研究了不同浓度共培养对天然橡胶的降解效果,并对其进行了理化分析(pH、温度、碳源和氮源)优化。结果:分离得到的细菌为cohnii芽孢杆菌和najangsanbrevundimonas。通过分光光度法和红外光谱法的研究,证实了共培养能充分利用天然橡胶。从目前的研究中,评估了天然橡胶矿化高达50%,其中最佳浓度为10%。结论:从目前的研究结果可以看出,我们分离到的cohnii芽孢杆菌和naejangsanbrevundimonas具有矿化天然橡胶的能力,因此这种分离的共培养物可以用于环境中废弃天然橡胶制品的去除。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mineralisation of natural rubber (poly cis 1-4 isoprene) by co-cultured bacterial strains isolated from rubber plantation area
Objective: To isolate Natural Rubber degrading Bacterial co-cultures from rubber plantation soil and to characterize and identify the organisms by 16s r RNA sequencing. Methods: Cocultures of the bacteria were isolated from the contaminated site by enrichment culture technique. Plate assay method and liquid assay method by using Mineral Salt Medium was followed for screening of bacteria for its capacity to mineralize Natural rubber. Degradation was confirmed by Spectrophotmetric and Fourier Transform Infra-Red (FTIR) studies.Natural rubber degraded by the cocultures were studied at different concentrations and the physico-chemical analysis were optimized (pH, temperature, carbon and nitrogen sources) Results: Isolated organism was identified as Bacillus cohnii and Brevundimonas naejangsanensis . The co-cultures were able to utilize the Natural rubber which was confirmed by Spectrophotometric and FTIR studies. From the current study it was evaluated that Natural rubber was mineralized up to 50 % where optimum concentration was 10 %. Conclusion: From current investigation, it can be concluded that our isolated bacterial cocultures Bacillus cohnii and Brevundimonas naejangsanensis have the capacity to mineralize Natural rubber and hence such isolated cocultures can be used in removal of from waste Natural rubber products in the environment.
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