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Diversity and expression of cyanobacterial hupS genes in pure cultures and in a nitrogen-limited phototrophic biofilm

机译:蓝细菌hupS基因在纯培养物和限氮光养生物膜中的多样性和表达

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A PCR was developed for conserved regions within the cyanobacterial small subunit uptake hydrogenase (hupS) gene family. These primers were used to PCR amplify partial hupS sequences from 15 cyanobacterial strains. HupS clone libraries were constructed from PCR-amplified genomic DNA and reverse-transcribed mRNA extracted from phototrophic biofilms cultivated under nitrate-limiting conditions. Partial hupS gene sequences derived from cyanobacteria, some of which were not previously known to contain hup genes were used for phylogenetic analysis. Phylogenetic trees constructed with partial hupS genes were congruent with those based on 16S rRNA genes, indicating that hupS sequences can be used to identify cyanobacteria expressing hup. Sequences from heterocystous and nonheterocystous cyanobacteria formed two separate clusters. Analysis of clone library data showed a discrepancy between the presence and the activity of cyanobacterial hupS genes in phototrophic biofilms. The results showed that the hupS gene can be used to characterize the diversity of natural populations of diazotrophic cyanobacteria, and to characterize gene expression patterns of individual species and strains.
机译:针对蓝细菌小亚单位摄取氢化酶(hupS)基因家族内的保守区域开发了一种PCR。这些引物用于PCR扩增15个蓝细菌菌株的部分hupS序列。从PCR扩增的基因组DNA构建HupS克隆文库,并从在硝酸盐限制条件下培养的光养生物膜中提取反转录mRNA。来自蓝细菌的部分hupS基因序列,其中一些以前未知包含hup基因,被用于系统发育分析。用部分hupS基因构建的系统树与基于16S rRNA基因的系统树完全一致,这表明hupS序列可用于鉴定表达hup的蓝细菌。来自异性和非异性蓝细菌的序列形成两个单独的簇。克隆文库数据的分析表明,在光养生物膜中蓝细菌hupS基因的存在与活性之间存在差异。结果表明,hupS基因可用于表征重氮营养蓝细菌自然种群的多样性,并表征单个物种和菌株的基因表达模式。

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