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Comparative genomics of two newly isolated Dehalococcoides strains and an enrichment using a genus microarray

机译:两个新分离的Dehalococcoides菌株的比较基因组学和使用属芯片的富集

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摘要

Comparative genomics of Dehalococcoides strains and an enrichment were performed using a microarray targeting genes from all available sequenced genomes of the Dehalococcoides genus. The microarray was designed with 4305 probe sets to target 98.6% of the open-reading frames from strains 195, CBDB1, BAV1 and VS. The microarrays were validated and applied to query the genomes of two recently isolated Dehalococcoides strains, ANAS1 and ANAS2, and their enrichment source (ANAS) to understand the genome–physiology relationships. Strains ANAS1 and ANAS2 can both couple the reduction of trichloroethene, cis-dichloroethene (DCE) and 1,1-DCE, but not tetrachloroethene and trans-DCE with growth, whereas only strain ANAS2 couples vinyl chloride reduction to growth. Comparative genomic analysis showed that the genomes of both strains are similar to each other and to strain 195, except for genes that are within the previously defined integrated elements or high-plasticity regions. Combined results of the two isolates closely matched the results obtained using genomic DNA of the ANAS enrichment. The genome similarities, together with the distinct chlorinated ethene usage of strains ANAS1, ANAS2 and 195 demonstrate that closely phylogenetically related strains can be physiologically different. This incongruence between physiology and core genome phylogeny seems to be related to the presence of distinct reductive dehalogenase-encoding genes with assigned chlorinated ethene functions (pceA, tceA in strain 195; tceA in strain ANAS1; vcrA in strain ANAS2). Overall, the microarrays are a valuable high-throughput tool for comparative genomics of unsequenced Dehalococcoides-containing samples to provide insights into their gene content and dechlorination functions.
机译:使用来自来自Dehalococcoides属的所有可用测序基因组的靶向基因的微阵列,对Dehalococcoides菌株进行了比较基因组学分析和富集。设计了具有4305个探针组的微阵列,以靶向菌株195,CBDB1,BAV1和VS的98.6%的开放阅读框。验证了微阵列,并将其用于查询两个最近分离的Dehalococcoides菌株ANAS1和ANAS2的基因组,以及它们的富集来源(ANAS),以了解基因组与生理之间的关系。菌株ANAS1和ANAS2都可以将三氯乙烯,顺式二氯乙烯(DCE)和1,1-DCE的还原与生长耦合,而不能将四氯乙烯和反式DCE与生长耦合,而只有菌株ANAS2可以将氯乙烯还原与生长耦合。比较基因组分析表明,除了先前定义的整合元件或高可塑性区域内的基因外,两个菌株的基因组彼此相似,并且与195菌株相似。两种分离物的组合结果与使用ANAS富集的基因组DNA获得的结果非常匹配。基因组的相似性,以及菌株ANAS1,ANAS2和195的独特氯化乙烯用法证明,亲缘关系密切的菌株在生理上可能是不同的。生理学和核心基因组系统发育之间的这种不一致似乎与存在具有指定的氯化乙烯功能的独特的还原性脱卤化酶编码基因(195型中的pceA,tceA; ANAS1中的tceA; ANAS2中的vcrA)有关。总体而言,微阵列是用于比较未测序的含Dehaloccocoides的样品的基因组学的有价值的高通量工具,可提供有关其基因含量和脱氯功能的见解。

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