Chandra Ram, Kumar Vineet, Tripathi Sonam
Department of Environmental Microbiology, School for Environmental Sciences, Babasaheb Bhimrao Ambedkar University (A Central University), Lucknow, Uttar Pradesh 226025 India.
3 Biotech. 2018 Apr;8(4):187. doi: 10.1007/s13205-018-1205-3. Epub 2018 Mar 16.
The extracted sugarcane molasses-melanoidins showed the presence of Mn (8.20), Cr (2.97), Zn (16.61), Cu (2.55), Fe (373.95), Pb (2.59), and Ni (4.18 mg L) along with mixture of other organic compounds which have endocrine-disrupting chemicals (EDCs) properties. A consortium of aerobic bacteria comprising (KU321273), (KU726954), (KU726955), and (KU726957) showed the optimum decolourisation of molasses-melanoidins up to 81% through co-metabolism in the presence of glucose (1.0%) and peptone (0.2%) as a carbon and nitrogen source, respectively. The absorption spectrum scanning by UV-visible spectrophotometer between 200 and 700 nm revealed reductions of absorption spectrum of organic compounds present in bacterial degraded sample of melanoidins in range of 200-450 nm compared to control. The degradation and decolourisation of melanoidins by bacterial consortium was noted by induction of manganese peroxidase and laccase activities in sample supernatant. Furthermore, the TLC and HPLC analysis of bacterial decolourised melanoidins also showed degradation and reduction of absorption peak at (295 nm), respectively. Furthermore, FT-IR and GC-MS analysis also showed the change of functional group and disappearance of ion peaks. This indicated the degradation and depolymerisation of melanoidins and cleavage of C=C, C=O and C≡N conjugated bonds which resulted in reduction of colour. The metabolic analysis also showed the disappearance of some organic compounds and generation of new metabolites. Furthermore, the seed germination test using L. showed toxicity reduction in decolourized effluent.
提取的甘蔗废蜜类黑素中含有锰(8.20)、铬(2.97)、锌(16.61)、铜(2.55)、铁(373.95)、铅(2.59)和镍(4.18毫克/升),以及其他具有内分泌干扰化学物质(EDCs)特性的有机化合物混合物。由(KU321273)、(KU726954)、(KU726955)和(KU726957)组成的好氧细菌 consortium 在分别以葡萄糖(1.0%)和蛋白胨(0.2%)作为碳源和氮源的情况下,通过共代谢对废蜜类黑素的脱色效果最佳,可达81%。用紫外可见分光光度计在200至700纳米之间进行的吸收光谱扫描显示,与对照相比,细菌降解的类黑素样品中存在的有机化合物在200至450纳米范围内的吸收光谱降低。通过样品上清液中锰过氧化物酶和漆酶活性的诱导,注意到细菌 consortium 对类黑素的降解和脱色。此外,细菌脱色的类黑素的薄层色谱(TLC)和高效液相色谱(HPLC)分析也分别显示了吸收峰的降解和降低。此外,傅里叶变换红外光谱(FT-IR)和气相色谱-质谱联用(GC-MS)分析也显示了官能团的变化和离子峰的消失。这表明类黑素的降解和解聚以及碳-碳双键、碳-氧双键和碳-氮三键共轭键的断裂,从而导致颜色的降低。代谢分析还显示一些有机化合物消失并产生了新的代谢产物。此外,使用 L. 进行的种子发芽试验表明,脱色废水的毒性降低。