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首页> 外文期刊>Journal of Clinical Microbiology >Genotypic Diversity of Clinical Actinomyces Species: Phenotype, Source, and Disease Correlation among Genospecies
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Genotypic Diversity of Clinical Actinomyces Species: Phenotype, Source, and Disease Correlation among Genospecies

机译:临床放线菌物种的基因型多样性:基因型之间的表型,来源和疾病的相关性。

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We determined the frequency distribution of Actinomyces spp. recovered in a routine clinical laboratory and investigated the clinical significance of accurate identification to the species level. We identified 92 clinical strains of Actinomyces, including 13 strains in the related Arcanobacterium-Actinobaculum taxon, by 16S rRNA gene sequence analysis and recorded their biotypes, sources, and disease associations. The clinical isolates clustered into 21 genogroups. Twelve genogroups (74 strains) correlated with a known species, and nine genogroups (17 strains) did not. The individual species had source and disease correlates. Actinomyces turicensis was the most frequently isolated species and was associated with genitourinary tract specimens, often with other organisms and rarely with inflammatory cells. Actinomyces radingae was most often associated with serious, chronic soft tissue abscesses of the breast, chest, and back. Actinomyces europaeus was associated with skin abscesses of the neck and genital areas. Actinomyces lingnae, Actinomyces gravenitzii, Actinomyces odontolyticus, and Actinomyces meyeri were isolated from respiratory specimens, while A. odontolyticus-like strains were isolated from diverse sources. Several of the species were commonly coisolated with a particular bacterium: Actinomyces israelii was the only Actinomyces spp. coisolated with Actinobacillus (Haemophilus) actinomycetemcomitans; Actinomyces meyeri was coisolated with Peptostreptococcus micros and was the only species other than A. israelii associated with sulfur granules in histological specimens. Most genogroups had consistent biotypes (as determined with the RapID ANA II system); however, strains were misidentified, and many codes were not in the database. One biotype was common to several genogroups, with all of these isolates being identified as A. meyeri. Despite the recent description of new Actinomyces spp., 19% of the isolates recovered in our routine laboratory belonged to novel genospecies. One novel group with three strains, Actinomyces houstonensis sp. nov., was phenotypically similar to A. meyeri and A. turicensis but was genotypically closest to Actinomyces neuii. A. houstonensis sp. nov. was associated with abscesses. Our data documented consistent site and disease associations for 21 genogroups of Actinomyces spp. that provide greater insights into appropriate treatments. However, we also demonstrated a complexity within the Actinomyces genus that compromises the biochemical identification of Actinomyces that can be performed in most clinical laboratories. It is our hope that this large group of well-defined strains will be used to find a simple and accurate biochemical test for differentiation of the species in routine laboratories.
机译:我们确定了放线菌 spp的频率分布。在常规临床实验室中进行了回收,并调查了准确鉴定到物种水平的临床意义。我们通过16S rRNA基因序列分析鉴定了92株放线菌的临床菌株,其中包括13株相关的Arcanobacterium-Actinobaculum 菌株,并记录了它们的生物型,来源和疾病关联。临床分离株聚集成21个基因组。十二个基因组(74个菌株)与一个已知物种相关,而九个基因组(17个菌株)则不相关。单个物种具有来源和疾病相关性。 actinomyces turicensis 是最常见的物种,与泌尿生殖道标本有关,通常与其他生物有关,很少与炎性细胞有关。 放线菌通常与乳房,胸部和背部的严重,慢性软组织脓肿相关。 europaeus 与颈部和生殖器部位的皮肤脓肿有关。从呼吸道标本中分离出放线放线菌草放线放线菌放线放线放线菌放线放线放线菌。一种。从不同来源分离出类牙质疏松菌。其中一些物种通常与特定细菌共分离:以色列放线菌是唯一的放线菌 spp。与放线杆菌嗜血杆菌放线菌科共隔离; 放线菌链球菌微球菌共隔离,是除 A外唯一的菌种。以色列与组织学标本中的硫颗粒有关。大多数基因组具有一致的生物型(根据RapID ANA II系统确定);但是,菌株被错误地识别,并且数据库中没有许多代码。一种生物型是几种基因组所共有的,所有这些分离株都被鉴定为 A。 meyeri 。尽管最近有新的放线菌属的描述,但在我们常规实验室中回收的分离株中有19%属于新的基因种。一组带有三种菌株的新菌株: Actinomyces houstonensis sp。 11月在表型上与 A类似。 meyeri A。 turicensis ,但在基因型上最接近放线菌。休斯顿拟南芥(A. houstonensis) sp。十一月与脓肿有关。我们的数据记录了放线菌 spp的21个基因组的一致部位和疾病关联。可以为适当的治疗方法提供更深刻的见解。但是,我们还证明了放线菌属中的复杂性,损害了可以在大多数临床实验室中进行的放线菌的生化鉴定。我们希望这组定义明确的菌株将用于在常规实验室中找到一种简单,准确的生化测试方法,以区分物种。

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