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首页> 外文期刊>Environmental microbiology >Investigations on cyanobacterial diversity in a shallow estuary (Southern Baltic Sea) including genes relevant to salinity resistance and iron starvation acclimation
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Investigations on cyanobacterial diversity in a shallow estuary (Southern Baltic Sea) including genes relevant to salinity resistance and iron starvation acclimation

机译:浅河口(波罗的海南部)蓝藻多样性的调查,包括与耐盐性和铁饥饿适应有关的基因

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The cyanobacterial diversity in the pelagic of a shallow estuary at the Southern Baltic Sea has been investigated by a combination of classical morphological data and a polymerase chain reaction (PCR)-based molecular approach. The aim of the study was to investigate possible changes in the composition of the cyanobacterial community along the salinity and nutrient gradients. For this purpose partial gene sequences of cyanobacterial 16S rDNA and of two functional genes (ggpS- salinity tolerance marker, isiA- iron starvation marker) were amplified and compared with total community DNA. Random distribution of ggpS genotypes along the salinity gradient suggests that synthesis of the osmolyte glucosylglycerol is not restricted to higher salinity sampling sites. Most of the isiA sequences formed a new homogenous cluster in a phylogenetic tree, which indicates that the indigenous cyanobacterial community comprises a group of unknown species. Minimum iron concentrations, which can activate isiA transcription in model cyanobacteria, occurred at a few sampling sites with high phytoplankton biomass and moderate salinity. Nevertheless, isiA expression could be detected at all sampling sites, which indicated restricted iron supply to cyanobacterial phytoplankton in summer.
机译:通过结合经典形态学数据和基于聚合酶链反应(PCR)的分子方法,研究了波罗的海南部浅河口中上层的蓝细菌多样性。该研究的目的是调查盐度和营养梯度下蓝细菌群落组成的可能变化。为了这个目的,蓝细菌16S rDNA和两个功能基因(ggpS-盐度耐受标记,isiA-铁饥饿标记)的部分基因序列被扩增并与总的社区DNA比较。 ggpS基因型沿盐度梯度的随机分布表明,渗透质葡萄糖基甘油的合成不限于较高盐度的采样位点。大部分isiA序列在系统树中形成了一个新的同质簇,这表明本地的蓝细菌群落包括一组未知物种。在浮游植物生物量较高且盐度适中的几个采样点,可以激活模型蓝藻中的isaA转录的最低铁浓度。然而,在所有采样点都可以检测到isiA表达,这表明夏季对蓝藻浮游植物的铁供应受到限制。

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