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利用非致病性根瘤菌CWP G34B对尼日利亚选定水果皮进行生物降解

Biodegradation of Selected Nigerian Fruit Peels by the use of a Non-pathogenic Rhizobium species CWP G34B.

作者信息

Esther Boboye Bolatito, Ajayi George Olarewaju

机构信息

Department of Microbiology, The Federal University of Technology, P. M. B. 704, Akure, Ondo State, Nigeria.

出版信息

Open Microbiol J. 2012;6:88-93. doi: 10.2174/1874285801206010088. Epub 2012 Nov 2.

DOI:10.2174/1874285801206010088
PMID:23166567
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3497063/
Abstract

This study was carried out to determine the ability of Rhizobium species CWP G34B to degrade the peels of selected Nigerian fruits. The potential of the bacterium to digest some carbon sources (lactose, maltose, sucrose and mannitol) and peels of some Nigerian fruits (pineapple, orange, plantain, banana, pawpaw and mango fruits) was investigated by growing the organism on the substances separately after which DNSA reagent method was used to quantify glucose released into the medium. The results showed that the bacterium was able to degrade all the carbohydrates with the highest and the lowest glucose concentrations of 5.52 mg/ml for lactose and 0.50 mg/ml for mannitol. The carbohydrate-catabolic-enzyme (CCE) activity ranged from 0.169 mg/ml to 1.346 mg/ml glucose per mg/ml protein. Mannitol exhibited the highest CCE activity while the lowest activity was observed in the presence of sucrose. The amount of extracellular protein synthesized was highest (9.803 mg/ml) in the presence of maltose and lowest (0.925 mg/ml) in mannitol. The mean polygalacturonase activity was 0.54 unit/ml when the bacterium was grown in pectin in contrast to 0.28 unit/ml when it was grown in mannitol. The bacterium showed ability to breakdown the peels of the Nigerian fruits with the highest capability in banana and pineapple (0.42 and 0.41 mg/ml glucose per mg/ml protein respectively). The fruit-peel-degrading enzyme activity was lowest in orange peel (0.75 unit/ml).

摘要

本研究旨在确定根瘤菌属CWP G34B降解尼日利亚选定水果果皮的能力。通过将该微生物分别在某些碳源(乳糖、麦芽糖、蔗糖和甘露醇)以及某些尼日利亚水果(菠萝、橙子、车前草、香蕉、木瓜和芒果)的果皮上培养,然后使用DNSA试剂法对释放到培养基中的葡萄糖进行定量,研究了该细菌消化这些物质的潜力。结果表明,该细菌能够降解所有碳水化合物,乳糖释放的葡萄糖浓度最高,为5.52 mg/ml,甘露醇释放的葡萄糖浓度最低,为0.50 mg/ml。碳水化合物分解代谢酶(CCE)活性范围为每毫克蛋白质0.169 mg/ml至1.346 mg/ml葡萄糖。甘露醇表现出最高的CCE活性,而在蔗糖存在下观察到最低活性。在麦芽糖存在下合成的细胞外蛋白量最高(9.803 mg/ml),在甘露醇中最低(0.925 mg/ml)。当该细菌在果胶中生长时,平均聚半乳糖醛酸酶活性为0.54单位/ml,而在甘露醇中生长时为0.28单位/ml。该细菌显示出分解尼日利亚水果果皮的能力,在香蕉和菠萝中能力最强(分别为每毫克蛋白质0.42和0.41 mg/ml葡萄糖)。果皮降解酶活性在橙子皮中最低(0.75单位/ml)。

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