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肽聚糖:后基因组分析。

Peptidoglycan: a post-genomic analysis.

机构信息

Unité de Recherche sur les Maladies Infectieuses et Tropicales Emergentes, UMR CNRS 7872 IRD 198, Méditerranée Infection, Aix-Marseille-Université, Marseille, France.

出版信息

BMC Microbiol. 2012 Dec 18;12:294. doi: 10.1186/1471-2180-12-294.

Abstract

BACKGROUND

To derive post-genomic, neutral insight into the peptidoglycan (PG) distribution among organisms, we mined 1,644 genomes listed in the Carbohydrate-Active Enzymes database for the presence of a minimal 3-gene set that is necessary for PG metabolism. This gene set consists of one gene from the glycosyltransferase family GT28, one from family GT51 and at least one gene belonging to one of five glycoside hydrolase families (GH23, GH73, GH102, GH103 and GH104).

RESULTS

None of the 103 Viruses or 101 Archaea examined possessed the minimal 3-gene set, but this set was detected in 1/42 of the Eukarya members (Micromonas sp., coding for GT28, GT51 and GH103) and in 1,260/1,398 (90.1%) of Bacteria, with a 100% positive predictive value for the presence of PG. Pearson correlation test showed that GT51 family genes were significantly associated with PG with a value of 0.963 and a p value less than 10(-3). This result was confirmed by a phylogenetic comparative analysis showing that the GT51-encoding gene was significantly associated with PG with a Pagel's score of 60 and 51 (percentage of error close to 0%). Phylogenetic analysis indicated that the GT51 gene history comprised eight loss and one gain events, and suggested a dynamic on-going process.

CONCLUSIONS

Genome analysis is a neutral approach to explore prospectively the presence of PG in uncultured, sequenced organisms with high predictive values.

摘要

背景

为了从后基因组学角度,以中立的视角来研究肽聚糖(PG)在生物中的分布,我们从碳水化合物活性酶数据库中列出的 1644 个基因组中挖掘出了存在最小 3 基因集的生物,该基因集是 PG 代谢所必需的,它由糖苷转移酶家族 GT28 的一个基因、家族 GT51 的一个基因和至少一个属于糖苷水解酶家族(GH23、GH73、GH102、GH103 和 GH104)的一个基因组成。

结果

在 103 种病毒或 101 种古菌中没有发现最小的 3 基因集,但在 42 个真核生物成员(微单胞菌属,编码 GT28、GT51 和 GH103)和 1398 个细菌中有 1260 个(90.1%)检测到该基因集,且对 PG 存在的阳性预测值为 100%。皮尔逊相关性检验表明,GT51 家族基因与 PG 显著相关,相关系数为 0.963,p 值小于 10(-3)。这一结果通过系统发育比较分析得到了验证,该分析表明,编码 GT51 的基因与 PG 显著相关,Pagel 得分分别为 60 和 51(误差接近 0%)。系统发育分析表明,GT51 基因的历史包括 8 次丢失和 1 次获得事件,并暗示了一个动态的持续过程。

结论

基因组分析是一种探索未培养、测序生物中 PG 存在的中立方法,具有较高的预测值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aae3/3541169/b485599938d1/1471-2180-12-294-1.jpg

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