城市垃圾场固体废物生物降解微生物的分子和生化特性研究

Pub Date : 2023-06-06 DOI:10.22571/2526-4338629
N. Afshan, M. Ghouri, A. Hayat, S. G. Nadeem
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引用次数: 0

摘要

由于存在纤维素、淀粉、蛋白质和脂类,固体废物垃圾场的污染是全球巨大的健康问题之一,这些废物是培养生物降解潜在微生物的理想营养废物。本研究旨在确定废物生物降解的生产微生物。从卡拉奇垃圾场的不同地区收集了10个样本。通过形态学和生化试验对分离菌株进行鉴定和鉴定。对分离得到的微生物进行了定性筛选,以确定其在生产工业关键生物酶方面的作用。对潜在产酶微生物进行90 d的废物降解试验。观察了垃圾分解后的气味、颜色和失重的变化。在减重方面,曲霉(SSI14)和芽孢杆菌(SSI6)的降解能力最强。选择硫酸锌、氯化镉、硫酸铜和硫酸铁4种金属进行金属耐受性试验和分离菌株的最低抑菌浓度(MIC)。目前的研究表明,锌的致死率高于铜和铁。采用聚合酶链反应对分离的微生物进行分子鉴定。采用聚合酶链反应(PCR)对菌株进行鉴定,并用琼脂糖凝胶电泳对产物进行鉴定。研究结果可作为开发用于固体废物生物降解和管理的微生物装置的基线数据。
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Molecular and biochemical characterization of solid waste biodegrading microbes isolated from municipal waste dump site
Solid waste dump site-based pollution is one of the colossal health concerns globally due to presence of cellulose, starch, protein, and lipids, which is a perfect nutrient waste for the development of biodegrading potential microbes. The current study aimed to determine the productive microorganisms for waste biodegradation. Ten samples were collected from different areas of Karachi waste dump sites. The identification and characterization of isolates were done by morphological and biochemical tests. The isolated microbes were qualitatively screened for the action of making industrially key bio-enzymes. The potential enzymes producing microbes were subjected to waste degradation test for 90 days. Changes of odor, color and weight loss of decomposing garbage were noted. The highest degradation ability in term of weight loss was shown by Aspergillus (SSI14) and Bacillus (SSI6). Four metals (zinc sulphate, cadmium chloride, copper sulphate and iron sulphate) were chosen for the purpose of metals tolerance test and minimum inhibitory concentration (MIC) of the isolated microbial strains. Current study reported that Zn was found to be more lethal in in comparison to  Cu and Fe. Molecular identification of the isolated microbes was done by polymerase chain reaction. The microbial strains were characterized by the polymerase chain reaction (PCR) followed by confirmation of product by agarose gel electrophoresis. The findings can be served as baseline data to develop microbial apparatus for biodegradation and management of solid waste.
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