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Cloning and Sequencing of the Histidine Decarboxylase Genes of Gram-Negative, Histamine-Producing Bacteria and Their Application in Detection and Identification of These Organisms in Fish

机译:革兰氏阴性产组胺细菌的组氨酸脱羧酶基因的克隆,序列分析及其在鱼类中检测和鉴定这些生物的应用

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摘要

The use of molecular tools for early and rapid detection of gram-negative histamine-producing bacteria is important for preventing the accumulation of histamine in fish products. To date, no molecular detection or identification system for gram-negative histamine-producing bacteria has been developed. A molecular method that allows the rapid detection of gram-negative histamine producers by PCR and simultaneous differentiation by single-strand conformation polymorphism (SSCP) analysis using the amplification product of the histidine decarboxylase genes (hdc) was developed. A collection of 37 strains of histamine-producing bacteria (8 reference strains from culture collections and 29 isolates from fish) and 470 strains of non-histamine-producing bacteria isolated from fish were tested. Histamine production of bacteria was determined by paper chromatography and confirmed by high-performance liquid chromatography. Among 37 strains of histamine-producing bacteria, all histidine-decarboxylating gram-negative bacteria produced a PCR product, except for a strain of Citrobacter braakii. In contrast, none of the non-histamine-producing strains (470 strains) produced an amplification product. Specificity of the amplification was further confirmed by sequencing the 0.7-kbp amplification product. A phylogenetic tree of the isolates constructed using newly determined sequences of partial hdc was similar to the phylogenetic tree generated from 16S ribosomal DNA sequences. Histamine accumulation occurred when PCR amplification of hdc was positive in all of fish samples tested and the presence of powerful histamine producers was confirmed by subsequent SSCP identification. The potential application of the PCR-SSCP method as a rapid monitoring tool is discussed.
机译:使用分子工具早期和快速检测革兰氏阴性组胺产生细菌对于防止鱼产品中组胺的积累很重要。迄今为止,尚未开发出用于革兰氏阴性组胺产生细菌的分子检测或鉴定系统。开发了一种分子方法,该方法允许通过PCR快速检测革兰氏阴性组胺生产者,并使用组氨酸脱羧酶基因(hdc)的扩增产物通过单链构象多态性(SSCP)分析同时进行分化。测试了37种产生组胺的细菌的菌株(来自培养物收集的8种参考菌株和鱼类的29种分离株)和470种从鱼类中分离出的非组胺的细菌。通过纸色谱法确定细菌的组胺产生,并通过高效液相色谱法确认。在37个产生组胺的细菌菌株中,除布拉奇柠檬杆菌菌株外,所有组氨酸脱羧革兰氏阴性细菌均产生PCR产物。相反,非组胺产生菌株(470个菌株)均未产生扩增产物。通过对0.7kbp扩增产物进行测序,进一步证实了扩增的特异性。使用新确定的部分hdc序列构建的分离株的系统树类似于从16S核糖体DNA序列生成的系统树。当所有鱼样品中hdc的PCR扩增均为阳性时,会发生组胺积累,随后通过SSCP鉴定证实了强大的组胺生产者的存在。讨论了PCR-SSCP方法作为快速监测工具的潜在应用。

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