首页> 外文期刊>International Biodeterioration & Biodegradation >Tannic acid degradation by bacterial strains Serratia spp. and Pantoea sp. isolated from olive mill waste mixtures
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Tannic acid degradation by bacterial strains Serratia spp. and Pantoea sp. isolated from olive mill waste mixtures

机译:单宁酸被细菌菌株沙雷氏菌(Serratia spp)降解。和Pantoea sp。从橄榄磨坊废料混合物中分离

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A mixture made of Olive Mill Waste (OMW) and hygroscopic organic additives was stored in indoor and outdoor stack piles. A significant decrease in organic matter and polyphenols was detected in indoor stack pile (51.5% and 75% of initial contents, respectively). Three bacterial strains isolated from OMW indoor stack pile were able to grow in the presence of tannic acid as sole carbon and energy source, and were named 2AT1, 2AT2, and 2AT3. 16S rRNA gene sequencing assigned isolates 2AT1 and 2AT3 to the genus Serratia, and strain 2AT2 to the genus Pantoea. The highest tannase activity was pointed out in the Pantoea sp. strain 2AT2, and growth tests showed a maximum degradation rates of tannic acid within 6 h and a complete depletion in 24 h for all isolates. Glucose and gallic acid were detected in the bacterial cultures as breakdown products of tannic acid added to the mineral culture-medium as the sole carbon and energy source. This was the first evidence of bacterial strains able to degrade tannic acid isolated from OMW.
机译:由Olive Mill Waste(OMW)和吸湿性有机添加剂制成的混合物存储在室内和室外堆垛中。在室内烟囱中检测到有机物和多酚的大量减少(分别占初始含量的51.5%和75%)。从OMW室内烟囱中分离出的三种细菌菌株能够在单宁酸作为唯一碳源和能源的情况下生长,分别命名为2AT1、2AT2和2AT3。 16S rRNA基因测序将分离株2AT1和2AT3分配给沙雷氏菌(Serratia),将菌株2AT2分配给 Pantoea 。 Pantoea sp。中指出了最高的鞣酸酶活性。菌株2AT2和生长测试显示,所有分离株的单宁酸在6 h内具有最大降解速率,并在24 h内完全耗尽。在细菌培养物中检测到葡萄糖和没食子酸,作为单宁酸的分解产物添加到矿物培养基中作为唯一的碳和能源。这是细菌菌株能够降解分离自OMW的单宁酸的第一个证据。

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