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首页> 外文期刊>Journal of applied microbiology >The destruction by microwave radiation of bacterial endospores andamplification of the released DNA
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The destruction by microwave radiation of bacterial endospores andamplification of the released DNA

机译:微波辐射破坏细菌内生孢子并扩增释放的DNA

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摘要

Endospores from Bacillus megaterium NCIMB 7581, B. stearothermophilus NCIMB 8922, Clostridium sporogenes NCIMB 8053 and Thermoanaerobacterium thermosaccharolyticum NCIMB 9385 were subjected to varying regimes of microwave radiation under controlled conditions. The effects of this form of thermal excitation were studied in terms of morphological changes (light and electron microscopy) and also release of constituents (DNA and calcium ions) from the core of the spore. Spores which are highly resistant to conventional heating such as autoclaving were fragmented by microwaves, albeit only at a greater intensity than was required for spores of mesophilic species. Spores of B, sphaericus NCTC 9602 and of a mutant, which contains 30% of the dipicolinic acid (DPA) of the parent, showed identical profiles of disruption with respect to time and temperature. It is unlikely therefore that DPA plays any role in the thermal excitation of the core. The DNA liberated by microwaving spores was amplifiable by polymerase chain reaction; the rapid identification of spores in the food and pharmaceutical industries is thus possible using this approach.
机译:在受控条件下,将来自巨大芽孢杆菌NCIMB 7581,嗜热脂肪芽孢杆菌NCIMB 8922,产孢梭状芽胞杆菌NCIMB 8053和热解热厌氧杆菌NCIMB 9385的内生孢子置于不同的微波辐射范围内。从形态变化(光和电子显微镜)以及从孢子核心释放成分(DNA和钙离子)方面研究了这种形式的热激发的影响。通过微波破碎对常规加热例如高压灭菌具有高抵抗力的孢子,尽管其强度仅比嗜温菌种的孢子所需的强度高。 B,球形芽孢杆菌NCTC 9602和突变体的孢子表现出相同的破裂时间和温度分布,其中突变体含有30%的亲本二吡啶甲酸(DPA)。因此,DPA不太可能在磁芯的热激励中发挥任何作用。微波孢子释放的DNA可通过聚合酶链反应扩增。因此,使用这种方法可以快速识别食品和制药行业中的孢子。

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