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首页> 外文期刊>Applied and Environmental Microbiology >Identification and Targeted Cultivation of Abundant Novel Freshwater Sphingomonads and Analysis of Their Population Substructure
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Identification and Targeted Cultivation of Abundant Novel Freshwater Sphingomonads and Analysis of Their Population Substructure

机译:丰富的新型淡水Sphingomonads的鉴定和定向培养及其种群亚结构分析

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Little is known with respect to bacterial population structures in freshwater environments. Using complementary culture-based, cloning, and high-throughput Illumina sequencing approaches, we investigated microdiverse clusters of bacteria that comprise members with identical or very similar 16S rRNA gene sequences. Two 16S rRNA phylotypes could be recovered by cultivation in low-nutrient-strength liquid media from two lakes of different trophic status. Both phylotypes were found to be physiologically active in situ throughout most of the year, as indicated by the presence of their rRNA sequences in the samples. Analyses of internal transcribed spacer (ITS1) sequences revealed the presence of seven different sequence types among cultured representatives and the cloned rrn fragments. Illumina sequencing yielded 8,576 ITS1 sequences that encompassed 15 major and numerous rare sequence types. The major ITS1 types exhibited distinct temporal patterns, suggesting that the corresponding Sphingomonadaceae lineages occupy different ecological niches. However, since strains of the same ITS1 type showed highly variable substrate utilization patterns, the potential mechanism of niche separation in Sphingomonadaceae cannot be explained by substrate utilization alone and may be related to other traits.
机译:关于淡水环境中的细菌种群结构知之甚少。使用基于互补的文化,克隆和高通量的Illumina测序方法,我们调查了细菌的微多样性簇,这些簇包含具有相同或非常相似的16S rRNA基因序列的成员。通过在两个营养状态不同的湖泊中低营养强度的液体培养基中培养,可以恢复两种16S rRNA系统型。如在样品中存在它们的rRNA序列所表明的那样,在全年的大部分时间里,两种系统型都被发现具有生理活性。内部转录间隔区(ITS1)序列的分析表明,在培养的代表和克隆的rrn片段之间存在七种不同的序列类型。 Illumina测序产生8,576 ITS1序列,涵盖15种主要和众多稀有序列类型。主要的ITS1类型表现出明显的时间格局,表明相应的Sphingomonadaceae谱系占据不同的生态位。然而,由于相同ITS1类型的菌株表现出高度可变的底物利用模式,因此,不能仅靠底物利用来解释鞘氨醇酯菌中生态位分离的潜在机制,并且可能与其他性状有关。

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