首页> 外文期刊>BMC Genomics >Microarray genomotyping of key experimental strains of Neisseria gonorrhoeae reveals gene complement diversity and five new neisserial genes associated with Minimal Mobile Elements.
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Microarray genomotyping of key experimental strains of Neisseria gonorrhoeae reveals gene complement diversity and five new neisserial genes associated with Minimal Mobile Elements.

机译:淋病奈瑟氏球菌关键实验菌株的微阵列基因分型显示基因补体多样性和五个与最小移动元件相关的新奈瑟球菌基因。

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Background There are four widely used experimental strains of N. gonorrhoeae, one of which has been sequenced and used as the basis for the construction of a multi-strain, mutli-species pan-neisserial microarray. Although the N. gonorrhoeae population structure is thought to be less diverse than N. meningitidis, there are some recognized gene-complement differences between strains, including the 59 genes of the Gonococcal Genetic Island. In this study we have investigated the three experimental strains that have not been sequenced to determine the extent and nature of their similarities and differences. Results Using the Pan-Neisseria microarray, three commonly used gonococcal laboratory experimental strains were investigated (F62, MS11, & FA19). Genes absent from these strains, but present in strain FA1090, were assessed as is possible with typical microarrays. Due to the design of this microarray, additional genes were also identified. Differences were associated with Minimal Mobile Elements (MMEs) or known divergences. Genomotyping indicates the presence of genes previously only described in meningococci and shows the presence of the complete Gonococcal Genetic Island in N. gonorrhoeae strain FA19. Five new neisserial genes were identified through microarray genomotyping and subsequent sequencing of two divergent MMEs in N. gonorrhoeae strain MS11 and four MMEs in N. gonorrhoeae strain FA19. No differences were identified between N. gonorrhoeae strains FA1090 and F62, indicating that these strains are very similar. Conclusion This study shows extensive similarity between the experimental strains, associated with a varying number of strain-specific genes. This provides a framework for those working with these strains to refer to the available gonococcal genome sequence, and is the first detailed comparison of gene complements between gonococcal strains.
机译:背景技术有四种广泛使用的淋病奈瑟氏球菌实验菌株,其中一种已经测序,并用作构建多菌株,多物种泛奈瑟球菌微阵列的基础。尽管人们认为淋病奈瑟菌的种群结构比脑膜炎奈瑟菌少,但菌株之间存在一些公认的基因互补差异,包括淋球菌遗传岛的59个基因。在这项研究中,我们调查了三个尚未测序的实验菌株,以确定它们相似性和差异的程度和性质。结果使用Pan-Neisseria芯片,研究了三种常用的淋球菌实验室实验菌株(F62,MS11和FA19)。对这些菌株不存在但存在于FA1090菌株中的基因进行了评估,可能与典型的微阵列芯片有关。由于该微阵列的设计,还鉴定了其他基因。差异与最小移动元素(MME)或已知差异有关。基因分型表明以前仅在脑膜炎球菌中描述过的基因的存在,并显示了淋病奈瑟氏球菌菌株FA19中完整的淋球菌遗传岛的存在。通过微阵列基因分型并随后对淋病奈瑟氏球菌MS11菌株中的两个不同MME和淋病奈瑟氏球菌FA19中的四个MME进行测序,鉴定了五个新的奈瑟氏球菌基因。在淋病奈瑟氏球菌菌株FA1090和F62之间未鉴定出差异,表明这些菌株非常相似。结论这项研究显示了实验菌株之间的广泛相似性,与不同数量的菌株特异性基因有关。这为使用这些菌株的人提供了参考可用的淋球菌基因组序列的框架,并且是淋球菌菌株之间基因互补的首次详细比较。

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