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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Cellulose degradation by one mesophilic strain Caulobacter sp. FMC1 under both aerobic and anaerobic conditions
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Cellulose degradation by one mesophilic strain Caulobacter sp. FMC1 under both aerobic and anaerobic conditions

机译:一种中温菌株Caulobacter sp。降解纤维素。 FMC1在有氧和无氧条件下

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摘要

Caulobacteria are presumed to be responsible for considerable mineralization of organic material in aquatic environments. In this study, a facultative, mesophilic and cellulolytic bacterium Caulobacter sp. FMC1 was isolated from sediments which were taken from a shallow freshwater lake and then enriched with amendment of submerged macrophyte for three months. This strain seemed to evolve a capacity to adapt redox-fluctuating environments, and could degrade cellulose both aerobically and anaerobically. Cellulose degradation percentages under aerobic and anaerobic conditions were approximately 27% and 10% after a 240-h incubation in liquid mediums containing 0.5% cellulose, respectively. Either cellulose or cellobiose alone was able to induce activities of endoglucanase, exoglucanase, and β-1,4-glucosidase. Interestingly, ethanol was produced as the main fermentative product under anaerobic incubation on cellulose. These results could improve our understanding about cellulose-degrading process in aquatic environments, and were also useful in optimizing cellulose bioconversion process for bioethanol production.
机译:据推测,杆状细菌是水生环境中有机物质大量矿化的原因。在这项研究中,兼性,中温和纤维素分解细菌Caulobacter sp。从浅水淡水湖沉积物中分离出FMC1,然后用淹没的大型水生植物改良剂富集三个月。该菌株似乎发展出适应氧化还原波动环境的能力,并且可能在需氧和厌氧条件下降解纤维素。在需氧和厌氧条件下,在含有0.5%纤维素的液体培养基中孵育240小时后,纤维素的降解百分比分别约为27%和10%。单独的纤维素或纤维二糖都能诱导内切葡聚糖酶,外切葡聚糖酶和β-1,4-葡萄糖苷酶的活性。有趣的是,在纤维素上厌氧孵育后,乙醇是主要的发酵产物。这些结果可以增进我们对水生环境中纤维素降解过程的了解,并且对于优化纤维素生物转化过程以生产生物乙醇也很有用。

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